CN113887995A - Electric power project information display method, device, equipment and computer readable medium - Google Patents

Electric power project information display method, device, equipment and computer readable medium Download PDF

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CN113887995A
CN113887995A CN202111210564.4A CN202111210564A CN113887995A CN 113887995 A CN113887995 A CN 113887995A CN 202111210564 A CN202111210564 A CN 202111210564A CN 113887995 A CN113887995 A CN 113887995A
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clarified
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张震雷
李湘华
盛鹍
尹洪苓
高媛
郑雪健
陈瑞兴
刘聪
徐秀敏
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State Grid Information and Telecommunication Co Ltd
State Grid Hunan Electric Power Co Ltd
Beijing Guodiantong Network Technology Co Ltd
Economic and Technological Research Institute of State Grid Hunan Electric Power Co Ltd
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State Grid Information and Telecommunication Co Ltd
State Grid Hunan Electric Power Co Ltd
Beijing Guodiantong Network Technology Co Ltd
Economic and Technological Research Institute of State Grid Hunan Electric Power Co Ltd
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Abstract

The embodiment of the disclosure discloses a power project information display method, a device, equipment and a computer readable medium. One embodiment of the method comprises: acquiring an information set of electric power items to be input; determining an electric power project investment score value to obtain an electric power project investment score value set; determining the number of electric power items to be clarified; selecting the information of the electric power items to be input, which meets preset selection conditions, as the information of the electric power items to be clarified to obtain an information set of the electric power items to be clarified; determining category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set; the control target device displays the to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icon at a position in the displayed electronic map corresponding to each to-be-clarified power item information in the to-be-clarified power item information set. The embodiment can visually and vividly display the electric power item information.

Description

Electric power project information display method, device, equipment and computer readable medium
Technical Field
The embodiment of the disclosure relates to the technical field of computers, in particular to a method, a device, equipment and a computer readable medium for displaying electric power project information.
Background
The electric power project information is information related to construction of an electric power project. At present, all the information on the electric power project to be invested is often shown only in the form of text information (for example, an electric power project construction plan).
However, when the electric power item information is displayed in the above manner, the following technical problems often exist:
firstly, all the electric power item information is displayed in an indiscriminate text information mode, and the display is not visual and vivid enough and is excessively redundant and complicated;
secondly, when a certain amount of to-be-input electric power item information is selected from the to-be-input electric power item information to be displayed as to-be-clarified electric power item information in which construction necessity needs to be further considered, power supply capacity of the electric power items, social benefits, item input and other factors are not fully considered, so that corresponding electric power items with high construction necessity exist in the finally displayed to-be-clarified electric power item information, and therefore, the to-be-input electric power item information corresponding to the electric power items with high construction necessity is deleted by mistake and the to-be-input electric power item information corresponding to the electric power items with low construction necessity is retained by mistake, so that some electric power items with low construction necessity are difficult to meet the power demand of peripheral areas after being actually built, or the condition of light load of equipment occurs.
Disclosure of Invention
This summary is provided to introduce a selection of concepts in a simplified form that are further described below in the detailed description. This summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter.
Some embodiments of the present disclosure propose power item information presentation methods, apparatuses, devices and computer readable media to solve one or more of the technical problems mentioned in the background section above.
In a first aspect, some embodiments of the present disclosure provide a power item information display method, including: in response to the fact that the plan input value is lower than the declaration input value, acquiring a to-be-input electric power item information set corresponding to the declaration input value, wherein the to-be-input electric power item information in the to-be-input electric power item information set comprises: the power supply area, the number of power supplies and the load balance degree value of the power equipment; determining an electric power item investment score value corresponding to each piece of electric power item information to be invested in the electric power item information set to be invested according to the power supply area, the number of power supply people and the load balance degree value of the electric power equipment included in the electric power item information to be invested, and obtaining an electric power item investment score value set; determining the quantity of the electric power items to be clarified according to the plan investment value and the declaration investment value; selecting to-be-input electric power item information meeting preset selection conditions from the to-be-input electric power item information set as to-be-clarified electric power item information to obtain a to-be-clarified electric power item information set, wherein the preset selection conditions are set according to the electric power item input score value set and the number of the to-be-clarified electric power items; determining category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set; the control target device displays the electric power item information to be clarified, the corresponding category label information and the electric power item icon to be clarified at the position corresponding to each electric power item information to be clarified in the electric power item information set to be clarified in the displayed electronic map.
In a second aspect, some embodiments of the present disclosure provide an electric power item information presentation apparatus, the apparatus comprising: an obtaining unit configured to obtain a set of to-be-input power item information corresponding to a declared input value in response to determining that a planned input value is lower than the declared input value, wherein the to-be-input power item information in the set of to-be-input power item information includes: the power supply area, the number of power supplies and the load balance degree value of the power equipment; the first determining unit is configured to determine a power item investment score value corresponding to each piece of to-be-invested power item information in the to-be-invested power item information set according to a power supply area, the number of power supply people and a load balance degree value of power equipment, wherein the power supply area, the number of power supply people and the load balance degree value are included in the to-be-invested power item information, and a power item investment score value set is obtained; a second determination unit configured to determine the number of electric power items to be clarified according to the planned investment value and the declared investment value; the selection unit is configured to select power item information to be input, which meets preset selection conditions, from the power item information set to be input, as power item information to be clarified, so as to obtain a power item information set to be clarified, wherein the preset selection conditions are set according to the power item input score value set and the number of the power items to be clarified; the third determining unit is configured to determine category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set; a control unit configured to control the target device to display the to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icon at a position in the displayed electronic map corresponding to each of the to-be-clarified power item information sets.
In a third aspect, some embodiments of the present disclosure provide an electronic device, comprising: one or more processors; a storage device having one or more programs stored thereon, which when executed by one or more processors, cause the one or more processors to implement the method described in any of the implementations of the first aspect.
In a fourth aspect, some embodiments of the present disclosure provide a computer readable medium on which a computer program is stored, wherein the program, when executed by a processor, implements the method described in any of the implementations of the first aspect.
The above embodiments of the present disclosure have the following advantages: through the electric power item information display method of some embodiments of the disclosure, the electric power item information can be selectively displayed in a visual and vivid manner, so that decision-making personnel can conveniently remove the electric power item information with low construction necessity from the displayed electric power item information. Specifically, the reasons for the related power information being not visually intuitive and being too redundant are: all the power item information is displayed in a text message mode without selection. Based on this, the electric power project information display method of some embodiments of the present disclosure first obtains an information set of the electric power project to be invested corresponding to the declared investment value in response to determining that the planned investment value is lower than the declared investment value. Therefore, the to-be-invested power item information sets can be acquired at a specific time to execute the subsequent steps, and the consumption of computing resources and network resources caused by frequently acquiring the power item information sets can be avoided. And then, according to the power supply area, the number of power supply people and the load balance degree value of the power equipment, which are included in the information of the power items to be input, determining the input score value of the power item corresponding to each information of the power items to be input in the information set of the power items to be input, and obtaining the input score value set of the power items. Thus, the construction necessity of the electric power project corresponding to the to-be-launched electric power project information can be represented by the electric power project launch score value, and the construction necessity of the electric power project becomes higher as the electric power project launch score value becomes higher. And then, determining the quantity of the electric power items to be clarified according to the plan investment value and the declaration investment value. Therefore, the quantity of the information of the power project to be invested, which needs to be visually displayed for the decision-making personnel to further evaluate the construction necessity, can be determined. And then, selecting the to-be-input electric power item information meeting the preset selection condition from the to-be-input electric power item information set as to-be-clarified electric power item information. And then, determining the category label information corresponding to each electric power item information to be clarified in the electric power item information set to be clarified to obtain a category label information set. And finally, the control target device displays the electric power item information to be clarified, the corresponding category label information and the electric power item icon to be clarified at the position corresponding to each electric power item information to be clarified in the electric power item information set to be clarified in the displayed electronic map. Therefore, each piece of to-be-input power item information in the to-be-input power item information set does not need to be displayed in the form of text information, and the to-be-input power item information in the to-be-input power item information set can be selectively and visually displayed in the electronic map. Therefore, decision-making personnel can make a decision which is more in accordance with the actual situation according to the displayed related information of the electric power project to be clarified, and the information of the electric power project to be clarified with low construction necessity is removed.
Drawings
The above and other features, advantages and aspects of various embodiments of the present disclosure will become more apparent by referring to the following detailed description when taken in conjunction with the accompanying drawings. Throughout the drawings, the same or similar reference numbers refer to the same or similar elements. It should be understood that the drawings are schematic and that elements and elements are not necessarily drawn to scale.
Fig. 1 is a schematic diagram of an application scenario of a power item information presentation method of some embodiments of the present disclosure;
FIG. 2 is a flow diagram of some embodiments of a power item information presentation method according to the present disclosure;
FIG. 3 is a flow diagram of further embodiments of a power item information presentation method according to the present disclosure;
FIG. 4 is a schematic block diagram of some embodiments of a power item information presentation device according to the present disclosure;
FIG. 5 is a schematic structural diagram of an electronic device suitable for use in implementing some embodiments of the present disclosure.
Detailed Description
Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While certain embodiments of the present disclosure are shown in the drawings, it is to be understood that the disclosure may be embodied in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided for a more thorough and complete understanding of the present disclosure. It should be understood that the drawings and embodiments of the disclosure are for illustration purposes only and are not intended to limit the scope of the disclosure.
It should be noted that, for convenience of description, only the portions related to the related invention are shown in the drawings. The embodiments and features of the embodiments in the present disclosure may be combined with each other without conflict.
It should be noted that the terms "first", "second", and the like in the present disclosure are only used for distinguishing different devices, modules or units, and are not used for limiting the order or interdependence relationship of the functions performed by the devices, modules or units.
It is noted that references to "a", "an", and "the" modifications in this disclosure are intended to be illustrative rather than limiting, and that those skilled in the art will recognize that "one or more" may be used unless the context clearly dictates otherwise.
The names of messages or information exchanged between devices in the embodiments of the present disclosure are for illustrative purposes only, and are not intended to limit the scope of the messages or information.
The present disclosure will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
Fig. 1 is a schematic diagram of an application scenario of a power item information presentation method according to some embodiments of the present disclosure.
In the application scenario of fig. 1, first, in response to determining that the planned investment value 102 is lower than the declared investment value 103, the computing device 101 may obtain a to-be-invested power item information set 104 corresponding to the declared investment value 103, where the to-be-invested power item information in the to-be-invested power item information set 104 includes: power supply area, the number of power supplies and the load balance degree value of the power equipment. Next, the computing device 101 may determine, according to the power supply area, the number of power supply people, and the load balancing level of the power device included in the information of the power items to be dropped, a power item drop score value corresponding to each information of the power items to be dropped in the information set 104 of the power items to be dropped, to obtain a set 105 of the power item drop score values. Still further, the computing device 101 may determine the quantity 106 of power items to be clarified based on the projected investment value 102 and the declared investment value 103. Then, the computing device 101 may select, from the to-be-input electric power item information set 104, to-be-input electric power item information that satisfies a preset selection condition set according to the electric power item input score value set 105 and the number 106 of electric power items to be clarified, as to-be-clarified electric power item information, to obtain an electric power item information set 107 to be clarified. Then, the computing device 101 may determine category label information corresponding to each to-be-clarified electric power item information in the to-be-clarified electric power item information set 107, to obtain a category label information set 108. Finally, the computing device 101 may control the target device 109 to present the above-described to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icon at a position in the displayed electronic map corresponding to each to-be-clarified power item information in the above-described to-be-clarified power item information set 107.
The computing device 101 may be hardware or software. When the computing device is hardware, it may be implemented as a distributed cluster composed of multiple servers or terminal devices, or may be implemented as a single server or a single terminal device. When the computing device is embodied as software, it may be installed in the hardware devices enumerated above. It may be implemented, for example, as multiple software or software modules to provide distributed services, or as a single software or software module. And is not particularly limited herein.
It should be understood that the number of computing devices in FIG. 1 is merely illustrative. There may be any number of computing devices, as implementation needs dictate.
With continued reference to fig. 2, a flow 200 of some embodiments of a power item information presentation method according to the present disclosure is shown. The electric power project information display method comprises the following steps:
step 201, in response to determining that the planned input value is lower than the declared input value, acquiring an information set of the electric power project to be input corresponding to the declared input value.
In some embodiments, an executing body (e.g., the computing device 101 shown in fig. 1) of the power item information presentation method may acquire, by way of a wired connection or a wireless connection, a set of to-be-put-into-power item information corresponding to a declared investment value (e.g., a declared investment amount) in response to determining that the planned investment value (e.g., a planned investment amount) is lower than the declared investment value (e.g., a declared investment amount).
The to-be-invested power item information in the to-be-invested power item information set may include: power supply area, the number of power supplies and the load balance degree value of the power equipment. The power supply area, the number of power supplies and the load balance degree value of the power equipment can be estimated power supply area, the number of power supplies and the load balance degree value of the power equipment of the power item to be input represented by the information of the power item to be input. The above-mentioned power equipment load balancing degree value may be expressed by a percentage. The to-be-input electric power item information set corresponding to the declared input value may be an electric power item information set to be input, in which the sum of input values (for example, investment amount) required for the to-be-input electric power items represented by the included electric power item information to be input is equal to the declared input value.
As an example, the projected investment value may be 50 ten thousand dollars. The reported investment value may be 70 ten thousand yuan. It may be determined that the projected investment value is less than the declared investment value. The information set of the power items to be input may be { [2 ten thousand square kilometers, 10 ten thousand persons, 80% ], [5 ten thousand square kilometers, 60 ten thousand persons, 91% ], [10 ten thousand square kilometers, 5 ten thousand persons, 20% ], [3 ten thousand square kilometers, 12 ten thousand persons, 60% ] }.
Step 202, determining an electric power item investment score value corresponding to each to-be-invested electric power item information in the to-be-invested electric power item information set according to the power supply area, the number of power supply people and the load balance degree value of the electric power equipment included in the to-be-invested electric power item information to obtain an electric power item investment score value set.
In some embodiments, the execution subject may determine, according to the power supply area, the number of power supply persons, and the load balancing level of the power equipment included in the information about the power item to be invested, a power item investment score value corresponding to each information about the power item to be invested in the information set of the power item to be invested by the following formula:
Figure BDA0003308682230000071
wherein Score represents the above-mentioned power item investment Score value. Area indicates a power supply Area included in the above-described to-be-input power item information. Load represents the Load balance degree value of the electric power equipment included in the information of the electric power project to be input. Popu represents the number of power supply persons included in the above-described to-be-input power item information.
Optionally, the power supply area, the number of power supplies and the load balance degree value of the power equipment included in each piece of to-be-input power item information in the to-be-input power item information set may be input into a pre-trained neural network model to obtain an output power item input score value. The Neural Network model may be a CNN (Convolutional Neural Network) model, an RNN (Recurrent Neural Network) model, a DNN (Deep Neural Network) model, or the like.
And step 203, determining the quantity of the electric power items to be clarified according to the plan investment value and the declaration investment value.
In some embodiments, the execution subject may determine the amount of the power item to be clarified according to the planned investment value and the declared investment value by the following formula:
Figure BDA0003308682230000081
wherein M represents the number of power items to be clarified. X represents the planned input value. Y represents the above-mentioned declaration investment value. N represents the number of pieces of to-be-input electric power item information in the to-be-input electric power item information set.
Figure BDA0003308682230000082
Indicating rounding up.
In some optional implementations of some embodiments, the determining, by the execution subject, the number of power items to be clarified according to the planned investment value and the declared investment value may include:
the method comprises the following steps of firstly, determining the ratio of the declared investment value to the number of the to-be-invested electric power item information in the to-be-invested electric power item information set as an average investment value of electric power items.
And secondly, determining the quantity of the electric power items to be clarified according to the plan investment value, the declaration investment value and the average investment value of the electric power items by the following formula:
Figure BDA0003308682230000083
wherein M represents the number of power items to be clarified. X represents the planned input value. Y represents the above-mentioned declaration investment value. x represents the average input value of the power items.
Figure BDA0003308682230000084
Indicating rounding up.
And 204, selecting the to-be-input electric power item information meeting preset selection conditions from the to-be-input electric power item information set as to-be-clarified electric power item information to obtain the to-be-clarified electric power item information set.
In some embodiments, the execution subject may select, from the to-be-input electric power item information set, to-be-input electric power item information that satisfies a preset selection condition as to-be-clarified electric power item information, to obtain an to-be-clarified electric power item information set.
And the preset selection condition is set according to the electric power project investment score value set and the number of the electric power projects to be clarified. The preset selection condition may be that the electric power item investment score value corresponding to the to-be-invested electric power item information is one of the smallest front target number of electric power item investment score values in the electric power item investment score value set. The target number may be equal to the number of power items to be clarified. The electric power item information to be clarified may be electric power item information corresponding to an electric power item for which construction necessity needs to be further considered.
Step 205, determining category label information corresponding to each to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set.
In some embodiments, the execution subject may determine, according to a power equipment load balancing degree value included in the to-be-clarified power item information, category label information corresponding to each to-be-clarified power item information in the to-be-clarified power item information set, to obtain a category label information set. When the load balance degree value of the power equipment included in the power item information to be clarified is between [0, 35% ], it may be determined that the category label information corresponding to the power item information to be clarified is "low load". When the load balance degree value of the power equipment included in the power item information to be clarified is between (35% and 75% >), the category label information corresponding to the power item information to be clarified may be determined to be "medium load".
In some optional implementations of some embodiments, the to-be-invested power item information in the to-be-invested power item information set may further include power equipment state information. The power equipment state information can be used for representing the problem of peripheral power equipment which can be solved after the construction of the power project corresponding to the power project information to be input is completed. The power equipment state information may be "light load", "heavy load", old load ", and the like. The "light load" may indicate that the construction of the electric power item corresponding to the electric power item information to be put into can solve the light load problem of the peripheral electric power equipment. The "heavy load" may mean that the construction of the electric power item corresponding to the electric power item information to be put into can solve the problem of the heavy load of the peripheral electric power equipment. The "old" may indicate that the construction of the electric power item corresponding to the electric power item information to be put into can solve the old problem of the peripheral electric power equipment.
The execution main body may determine, in response to determining that the power equipment state information included in the to-be-clarified power item information satisfies a first preset condition, category tag information corresponding to the to-be-clarified power item information as first category tag information. The first preset condition may be that the power equipment state information is "light load". The content of the first category tag information may be the same as the content of the power equipment status information included in the power item information to be clarified.
Optionally, the executing main body determines category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set, and the executing main body may further include the following steps:
in the first step, in response to the fact that the power equipment state information included in the to-be-clarified power item information meets a second preset condition, category label information corresponding to the to-be-clarified power item information is determined to be second category label information. The second preset condition may be that the power equipment status information is "heavy load". The content of the tag information of the second category may be the same as the content of the power equipment status information included in the power item information to be clarified.
And secondly, in response to the fact that the power equipment state information included in the power item information to be clarified meets a third preset condition, determining the category label information corresponding to the power item information to be clarified as third category label information. The third preset condition may be that the power equipment status information is "old". The content of the third category tag information may be the same as the content of the power equipment status information included in the to-be-clarified power item information.
In step 206, the control target device displays the to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icon at a position corresponding to each to-be-clarified power item information in the to-be-clarified power item information set in the displayed electronic map.
In some embodiments, the execution subject may control the target device to present the power item information to be clarified and the corresponding category label information and the power item icon to be clarified at a position in the displayed electronic map corresponding to each power item information to be clarified in the set of power item information to be clarified. The coordinate information of the power item represented by each piece of to-be-clarified power item information in the to-be-clarified power item information set in the electronic map may be stored in the database in advance. The to-be-clarified electric power item information, the category label information and the to-be-clarified electric power item icon can be displayed in the electronic map according to the coordinate information corresponding to each to-be-clarified electric power item information in the to-be-clarified electric power item information set. The power item icon to be clarified may be any preset map label icon.
In some optional implementations of some embodiments, the execution subject may further control, in response to receiving a selection request for any one of the to-be-clarified power item icons displayed in the electronic map, the target device to display, in the displayed electronic map, historical power item information and a historical power item icon related to the to-be-clarified power item information corresponding to the to-be-clarified power item icon. The selection request can comprise power item information to be clarified and coordinate information. The coordinate information included in the selection request may be a display position of the to-be-clarified power item icon in the electronic map, which corresponds to the to-be-clarified power item information included in the selection request. The selection request may be issued by the target terminal upon detection of a selection operation on any of the to-be-clarified power item icons displayed in the electronic map. All the historical power item information may be stored in the database in advance. The historical power item information can include power supply area, number of power supplies, load balancing degree value of the power equipment and coordinate information. A distance between the coordinate information included in each piece of historical power item information and the coordinate information included in the selection request may be calculated, and the historical power item information having the distance smaller than a preset threshold may be used as the historical power item information related to the power item information to be clarified corresponding to the power item icon to be clarified. The historical power item icon may be any map label icon different from the power item icon to be clarified, which is preset.
Optionally, the execution main body may further control, in response to receiving a deletion request for any to-be-clarified power item icon displayed in the electronic map, the target device to hide the to-be-clarified power item icon in the displayed electronic map, and delete to-be-input power item information corresponding to the to-be-clarified power item icon from the to-be-input power item information set. The deletion request may include the power item information to be clarified and the coordinate information. The coordinate information included in the deletion request may be a display position of a to-be-clarified power item icon corresponding to the to-be-clarified power item information included in the deletion request in the electronic map. The deletion request may be issued by the target terminal upon detection of a deletion operation on any of the to-be-clarified power item icons displayed in the electronic map. The to-be-thrown power item information that is the same as the to-be-clarified power item information included in the deletion request may be deleted from the to-be-thrown power item information set.
Therefore, the content displayed in the electronic map and the information set of the power items to be put into service can be updated according to the received deletion request when the information of each power item to be clarified, the category label information and the icon of the power item to be clarified are displayed. Thus, the to-be-input electric power item information corresponding to the electric power item having low construction necessity is deleted.
The above embodiments of the present disclosure have the following advantages: through the electric power item information display method of some embodiments of the disclosure, the electric power item information can be selectively displayed in a visual and vivid manner, so that decision-making personnel can conveniently remove the electric power item information with low construction necessity from the displayed electric power item information. Specifically, the reasons for the related power information being not visually intuitive and being too redundant are: all the power item information is displayed in a text message mode without selection. Based on this, the electric power project information display method of some embodiments of the present disclosure first obtains an information set of the electric power project to be invested corresponding to the declared investment value in response to determining that the planned investment value is lower than the declared investment value. Therefore, the to-be-invested power item information sets can be acquired at a specific time to execute the subsequent steps, and the consumption of computing resources and network resources caused by frequently acquiring the power item information sets can be avoided. And then, according to the power supply area, the number of power supply people and the load balance degree value of the power equipment, which are included in the information of the power items to be input, determining the input score value of the power item corresponding to each information of the power items to be input in the information set of the power items to be input, and obtaining the input score value set of the power items. Thus, the construction necessity of the electric power project corresponding to the to-be-launched electric power project information can be represented by the electric power project launch score value, and the construction necessity of the electric power project becomes higher as the electric power project launch score value becomes higher. And then, determining the quantity of the electric power items to be clarified according to the plan investment value and the declaration investment value. Therefore, the quantity of the information of the power project to be invested, which needs to be visually displayed for the decision-making personnel to further evaluate the construction necessity, can be determined. And then, selecting the to-be-input electric power item information meeting the preset selection condition from the to-be-input electric power item information set as to-be-clarified electric power item information. And then, determining the category label information corresponding to each electric power item information to be clarified in the electric power item information set to be clarified to obtain a category label information set. And finally, the control target device displays the electric power item information to be clarified, the corresponding category label information and the electric power item icon to be clarified at the position corresponding to each electric power item information to be clarified in the electric power item information set to be clarified in the displayed electronic map. Therefore, each piece of to-be-input power item information in the to-be-input power item information set does not need to be displayed in the form of text information, and the to-be-input power item information in the to-be-input power item information set can be selectively and visually displayed in the electronic map. Therefore, decision-making personnel can make a decision which is more in accordance with the actual situation according to the displayed related information of the electric power project to be clarified, and the information of the electric power project to be clarified with low construction necessity is removed.
With further reference to FIG. 3, a flow 300 of further embodiments of a power item information presentation method is illustrated. The process 300 of the electric power project information display method includes the following steps:
step 301, in response to determining that the planned input value is lower than the declared input value, acquiring an information set of the electric power project to be input corresponding to the declared input value.
In some embodiments, an executive (e.g., a computing device 101 shown in fig. 1) of the power item information exposure method may, in response to determining that the planned investment value is below the declared investment value, obtain a set of to-be-invested power item information corresponding to the declared investment value. The to-be-invested power item information in the to-be-invested power item information set may include: the power supply area, the number of power supplies, the load balance degree value of the power equipment, the number of core power equipment and the line loss rate. The power supply area, the number of power supplies, the load balance degree value of the power equipment, the number of core power equipment and the line loss rate can be estimated power supply area, the number of power supplies, the load balance degree value of the power equipment, the number of core power equipment and the line loss rate of the power item to be input represented by the information of the power item to be input. The load balancing degree value and the line loss rate of the power equipment can be expressed by percentage. The to-be-input electric power item information set corresponding to the declared input value may be an electric power item information set to be input, in which a sum of input values (for example, investment amount) required for the to-be-input electric power items represented by the to-be-input electric power item information sets is equal to the declared input value.
As an example, the projected investment value may be 50 ten thousand dollars. The reported investment value may be 70 ten thousand yuan. The projected investment value is less than the declared investment value.
The information set of the power items to be input may be { [2 ten thousand square kilometers, 10 ten thousand persons, 80%, 39 stations, 5.55% ], [5 ten thousand square kilometers, 60 ten thousand persons, 91%, 50 stations, 5.21% ], [10 ten thousand square kilometers, 5 ten thousand persons, 20%, 20 stations, 4.96% ], [3 ten thousand square kilometers, 12 ten thousand persons, 60%, 38 stations, 5.37% ] }.
Step 302, determining parameter values corresponding to the power supply area, the number of power supplies, the load balancing degree value of the power equipment, the number of core power equipment and the line loss rate included in each piece of to-be-input power item information in the to-be-input power item information set to generate a to-be-input power item parameter set, so as to obtain the to-be-input power item parameter set.
In some embodiments, the set of parameters of power items to be invested in the set of parameter sets of power items to be invested may include: the power supply area parameter value, the power supply number parameter value, the power equipment load balance degree parameter value, the core power equipment number parameter value and the line loss rate parameter value.
The execution body may determine a power supply area parameter value corresponding to the power supply area to be input as 1 when the power supply area included in the to-be-input power item information is within the first area section. And when the power supply area included in the to-be-input power item information is within the second area section, determining a power supply area parameter value corresponding to the power supply area to be 3. And when the power supply area included in the to-be-input power item information is within the third area section, determining a power supply area parameter value corresponding to the power supply area to be 2. The first area interval may be [0, 5 kilo-square kilometers ]. The second area interval may be (5 ten thousand square kilometers, 20 ten thousand square kilometers.) the third area interval may be (20 ten thousand square kilometers, + ∞ ].
When the number of persons to be supplied included in the information on the power item to be input is within the first person section, the value of the parameter of the number of persons to be supplied corresponding to the number of persons to be supplied may be determined to be 1. And when the number of the power supply persons included in the information of the power project to be input is within the second person number interval, determining the parameter value of the number of the power supply persons corresponding to the number of the power supply persons as 2. And when the number of the power supply persons included in the information of the power project to be input is in the third person number section, determining the parameter value of the number of the power supply persons corresponding to the number of the power supply persons as 3. The first person interval may be [0, 20 ten thousand persons ]. The second interval may be (20 ten thousand, 100 ten thousand), and the third interval may be (100 ten thousand, + ∞).
When the load balancing degree value of the electrical equipment included in the information of the electrical item to be input is within the first load interval, the parameter value of the load balancing degree of the electrical equipment corresponding to the load balancing degree value of the electrical equipment may be determined as 2. And when the load balancing degree value of the electric power equipment included in the information of the electric power item to be input is in a second load interval, determining that the load balancing degree parameter value of the electric power equipment corresponding to the load balancing degree value of the electric power equipment is 3. And when the load balancing degree value of the electric power equipment included in the information of the electric power item to be input is in the third load interval, determining the load balancing degree parameter value of the electric power equipment corresponding to the load balancing degree value of the electric power equipment as 1. The first load interval may be [0, 35% ]. The second load interval may be (35%, 75% ], and the third load interval may be (75%, 100% ]).
When the number of core power devices included in the to-be-input power item information is within the first device number interval, the parameter value of the number of core power devices corresponding to the number of core power devices may be determined as 1. And when the number of the core power devices included in the to-be-input power item information is within the second device number interval, determining the parameter value of the number of the core power devices corresponding to the number of the core power devices as 2. And when the number of the core power devices included in the to-be-input power item information is within the third device number interval, determining the parameter value of the number of the core power devices corresponding to the number of the core power devices as 3. The first device number interval may be [0, 20 ]. The second equipment number section may be (20 pieces, 50 pieces) ]. the third equipment number section may be (50 pieces, + ∞ ].
When the line loss rate included in the to-be-input power item information is within the first line loss rate section, the line loss rate parameter value corresponding to the line loss rate may be determined to be 3. And when the line loss rate included in the to-be-input power item information is within the second line loss rate section, determining a line loss rate parameter value corresponding to the line loss rate as 2. And when the line loss rate included in the to-be-input power item information is within the third line loss rate section, determining a line loss rate parameter value corresponding to the line loss rate as 1. The first loss rate interval may be [0, 4% ]. The second line loss interval may be (4%, 5%), and the third line loss interval may be (5%, + ∞).
As an example, the set of power item parameter sets to be invested, { [2 ten thousand square kilometers, 10 ten thousand people, 80%, 39, 5.55% ], [5 ten thousand square kilometers, 60 ten thousand people, 91%, 50, 5.21% ], [10 ten thousand square kilometers, 5 ten thousand people, 20%, 20, 4.96% ], [3 ten thousand square kilometers, 12 ten thousand people, 60%, 38, 5.37% ] } may be set of power item parameter sets to be invested, { [1, 1, 1, 2, 1, 2, 1], [3, 1, 2, 1, 2], [1, 1, 3, 2, 1] }.
Step 303, determining a power item investment score value corresponding to each to-be-invested power item information in the to-be-invested power item information set according to the to-be-invested power item parameter group set, and obtaining a power item investment score value set.
In some embodiments, the execution subject may determine, according to the set of to-be-invested power item parameter sets, a power item investment score value corresponding to each piece of to-be-invested power item information in the set of to-be-invested power item information by using the following formula:
Figure BDA0003308682230000161
wherein Score represents the above-mentioned power item investment Score value. The popu represents the power supply included in the to-be-input power item parameter group corresponding to the to-be-input power item information. A parameter value of a number of people. area indicates a power supply area parameter value included in the to-be-input power item parameter group corresponding to the to-be-input power item information. num represents a parameter value of the number of core power devices included in the parameter group of the power item to be put into corresponding to the power item information to be put into. The load represents a load balance degree parameter value of the electric power equipment included in the to-be-input electric power item parameter group corresponding to the to-be-input electric power item information. l _ loss represents a line loss rate parameter value included in the to-be-input electric power item parameter group corresponding to the to-be-input electric power item information. Density represents a preset population density threshold.
As an example, the preset population density threshold intensity may be 2.5 ten thousand people per square kilometer.
The above formula and the related contents are taken as an invention point of the embodiment of the present disclosure, and the technical problems mentioned in the background art are solved, namely, some electric power projects with low constructive necessity are difficult to meet the electricity demand of the surrounding areas after being actually built, or the condition of light load of the equipment occurs. The factors that lead to the above technical problems tend to be as follows: when a certain amount of to-be-input electric power project information is selected from the to-be-input electric power project information to be displayed as to-be-clarified electric power project information in which construction necessity needs to be further considered, power supply capacity of electric power projects, social benefits, project input and other factors are not fully considered, so that corresponding electric power projects with high construction necessity exist in the finally displayed to-be-clarified electric power project information, and therefore, the to-be-input electric power project information corresponding to the electric power projects with high construction necessity is possibly deleted by mistake and the to-be-input electric power project information corresponding to the electric power projects with low construction necessity is reserved by mistake. If the factors are solved, the situation that the power utilization requirements of peripheral areas are difficult to meet after the power project is actually built or the equipment is lightly loaded can be avoided. In order to achieve the effect, according to the present disclosure, firstly, the power supply area and the number of power supplies are introduced to represent the power supply capacity of the power item corresponding to the information of the power item to be input. The larger the power supply area or the larger the number of power supplies, the stronger the power supply capacity of the power item corresponding to the power item information to be put into operation, and the higher the necessity of construction of the power item. Then, the number of the core power equipment and the load balance degree value of the power equipment are introduced to represent the project investment of the power project corresponding to the information of the power project to be invested. The more the number of the core power devices is, or the higher the value of the load balancing degree of the power devices is, the more items to be invested in the power items corresponding to the power item information can be indicated. If the project investment of the electric power project is too small, it can be laterally indicated that the construction of the electric power project is short, and the electric power project with a large construction project investment and a long construction period can be preferentially used. Then, the line loss rate is introduced to represent the power loss degree of the power item corresponding to the information of the power item to be input. The higher the line loss rate, the higher the ratio of the power loss to the amount of power supply, the higher the irrational design of the power project, and the lower the necessity of construction. The ratio of the power supply area to the number of people supplying power can indicate the power supply population density, and when the power supply population density is low, the larger the power supply area is, the stronger the service capacity of the power project is, and the higher the construction necessity is. When the power supply population density is high, the service capacity of the power project is stronger and the construction necessity is higher as the number of the power supply population is larger. Therefore, the construction necessity of the power project can be accurately evaluated according to the calculated power project investment score value of the formula. Therefore, the information of the electric power items to be invested with low construction necessity can be conveniently selected from the information set of the electric power items to be invested for display. Furthermore, the situation that the power utilization requirements of peripheral areas are difficult to meet after the power project is actually built or the equipment is lightly loaded can be avoided.
And step 304, determining the quantity of the electric power items to be clarified according to the plan investment value and the declaration investment value.
Step 305, selecting the to-be-input electric power item information meeting preset selection conditions from the to-be-input electric power item information set as to-be-clarified electric power item information, and obtaining the to-be-clarified electric power item information set.
Step 306, determining category label information corresponding to each electric power item information to be clarified in the electric power item information set to be clarified to obtain a category label information set.
Step 307, the control target device displays the to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icon at a position corresponding to each to-be-clarified power item information in the to-be-clarified power item information set in the displayed electronic map.
In some embodiments, the specific implementation manner and technical effects of steps 304-307 can refer to steps 203-206 in the embodiments corresponding to fig. 2, which are not described herein again.
As can be seen from fig. 3, compared with the description of some embodiments corresponding to fig. 2, the flow 300 of the power item information displaying method in some embodiments corresponding to fig. 3 first introduces a power supply area and a number of power supplies to characterize the power supply capacity of the power item corresponding to the power item information to be input. The larger the power supply area or the larger the number of power supplies, the stronger the power supply capacity of the power item corresponding to the power item information to be put into operation, and the higher the necessity of construction of the power item. Then, the number of the core power equipment and the load balance degree value of the power equipment are introduced to represent the project investment of the power project corresponding to the information of the power project to be invested. The more the number of the core power devices is, or the higher the value of the load balancing degree of the power devices is, the more items to be invested in the power items corresponding to the power item information can be indicated. If the project investment of the electric power project is too small, it can be laterally indicated that the construction of the electric power project is short, and the electric power project with a large construction project investment and a long construction period can be preferentially used. Then, the line loss rate is introduced to represent the power loss degree of the power item corresponding to the information of the power item to be input. The higher the line loss rate, the higher the ratio of the power loss to the amount of power supply, the higher the irrational design of the power project, and the lower the necessity of construction. The ratio of the power supply area to the number of people supplying power can indicate the power supply population density, and when the power supply population density is low, the larger the power supply area is, the stronger the service capacity of the power project is, and the higher the construction necessity is. When the power supply population density is high, the service capacity of the power project is stronger and the construction necessity is higher as the number of the power supply population is larger. Therefore, the construction necessity of the power project can be accurately evaluated according to the calculated power project investment score value of the formula. Therefore, the information of the electric power items to be invested with low construction necessity can be conveniently selected from the information set of the electric power items to be invested for display. Furthermore, the situation that the power utilization requirements of peripheral areas are difficult to meet after the power project is actually built or the equipment is lightly loaded can be avoided.
With further reference to fig. 4, as an implementation of the methods shown in the above figures, the present disclosure provides some embodiments of an electric power item information presentation apparatus, which correspond to those shown in fig. 2, and which may be applied in various electronic devices.
As shown in fig. 4, the power item information presentation device 400 of some embodiments includes: an acquisition unit 401, a first determination unit 402, a second determination unit 403, a selection unit 404, a third determination unit 405, and a control unit 406. Wherein, the obtaining unit 401 is configured to, in response to determining that the planned investment value is lower than the declared investment value, obtain a set of to-be-invested power item information corresponding to the declared investment value, where the to-be-invested power item information in the set of to-be-invested power item information includes: the power supply area, the number of power supplies and the load balance degree value of the power equipment; the first determining unit 402 is configured to determine a power item investment score value corresponding to each piece of to-be-invested power item information in the to-be-invested power item information set according to a power supply area, a number of power supply people and a load balance degree value of power equipment, which are included in the to-be-invested power item information, so as to obtain a power item investment score value set; the second determining unit 403 is configured to determine the number of power items to be clarified according to the planned investment value and the declared investment value; the selecting unit 404 is configured to select, from the set of to-be-input electric power item information, to-be-input electric power item information that satisfies a preset selecting condition set according to the set of electric power item input score values and the number of electric power items to be clarified, as to-be-clarified electric power item information, to obtain a set of to-be-clarified electric power item information; the third determining unit 405 is configured to determine category label information corresponding to each to-be-clarified electric power item information in the to-be-clarified electric power item information set, resulting in a category label information set; the control unit 406 is configured to control the target device to present the above-mentioned to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icon at a position in the displayed electronic map corresponding to each to-be-clarified power item information in the above-mentioned to-be-clarified power item information set.
It will be understood that the elements described in the apparatus 400 correspond to various steps in the method described with reference to fig. 2. Thus, the operations, features and resulting advantages described above with respect to the method are also applicable to the apparatus 400 and the units included therein, and will not be described herein again.
Referring now to FIG. 5, a block diagram of an electronic device 500 suitable for use in implementing some embodiments of the present disclosure is shown. The electronic device shown in fig. 5 is only an example, and should not bring any limitation to the functions and the scope of use of the embodiments of the present disclosure.
As shown in fig. 5, electronic device 500 may include a processing means (e.g., central processing unit, graphics processor, etc.) 501 that may perform various appropriate actions and processes in accordance with a program stored in a Read Only Memory (ROM)502 or a program loaded from a storage means 508 into a Random Access Memory (RAM) 503. In the RAM503, various programs and data necessary for the operation of the electronic apparatus 500 are also stored. The processing device 501, the ROM 502, and the RAM503 are connected to each other through a bus 504. An input/output (I/O) interface 505 is also connected to bus 504.
Generally, the following devices may be connected to the I/O interface 505: input devices 506 including, for example, a touch screen, touch pad, keyboard, mouse, camera, microphone, accelerometer, gyroscope, etc.; output devices 507 including, for example, a Liquid Crystal Display (LCD), speakers, vibrators, and the like; and a communication device 509. The communication means 509 may allow the electronic device 500 to communicate with other devices wirelessly or by wire to exchange data. While fig. 5 illustrates an electronic device 500 having various means, it is to be understood that not all illustrated means are required to be implemented or provided. More or fewer devices may alternatively be implemented or provided. Each block shown in fig. 5 may represent one device or may represent multiple devices as desired.
In particular, according to some embodiments of the present disclosure, the processes described above with reference to the flow diagrams may be implemented as computer software programs. For example, some embodiments of the present disclosure include a computer program product comprising a computer program embodied on a computer readable medium, the computer program comprising program code for performing the method illustrated in the flow chart. In some such embodiments, the computer program may be downloaded and installed from a network via the communication means 509, or installed from the storage means 508, or installed from the ROM 502. The computer program, when executed by the processing device 501, performs the above-described functions defined in the methods of some embodiments of the present disclosure.
It should be noted that the computer readable medium described in some embodiments of the present disclosure may be a computer readable signal medium or a computer readable storage medium or any combination of the two. A computer readable storage medium may be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the foregoing. More specific examples of the computer readable storage medium may include, but are not limited to: an electrical connection having one or more wires, a portable computer diskette, a hard disk, a Random Access Memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing. In some embodiments of the disclosure, a computer readable storage medium may be any tangible medium that can contain, or store a program for use by or in connection with an instruction execution system, apparatus, or device. In some embodiments of the present disclosure, however, a computer readable signal medium may include a propagated data signal with computer readable program code embodied therein, for example, in baseband or as part of a carrier wave. Such a propagated data signal may take many forms, including, but not limited to, electro-magnetic, optical, or any suitable combination thereof. A computer readable signal medium may also be any computer readable medium that is not a computer readable storage medium and that can communicate, propagate, or transport a program for use by or in connection with an instruction execution system, apparatus, or device. Program code embodied on a computer readable medium may be transmitted using any appropriate medium, including but not limited to: electrical wires, optical cables, RF (radio frequency), etc., or any suitable combination of the foregoing.
In some embodiments, the clients, servers may communicate using any currently known or future developed network Protocol, such as HTTP (HyperText Transfer Protocol), and may interconnect with any form or medium of digital data communication (e.g., a communications network). Examples of communication networks include a local area network ("LAN"), a wide area network ("WAN"), the Internet (e.g., the Internet), and peer-to-peer networks (e.g., ad hoc peer-to-peer networks), as well as any currently known or future developed network.
The computer readable medium may be embodied in the electronic device; or may exist separately without being assembled into the electronic device. The computer readable medium carries one or more programs which, when executed by the electronic device, cause the electronic device to: in response to the fact that the plan input value is lower than the declaration input value, acquiring a to-be-input electric power item information set corresponding to the declaration input value, wherein the to-be-input electric power item information in the to-be-input electric power item information set comprises: the power supply area, the number of power supplies and the load balance degree value of the power equipment; determining an electric power item investment score value corresponding to each piece of electric power item information to be invested in the electric power item information set to be invested according to the power supply area, the number of power supply people and the load balance degree value of the electric power equipment included in the electric power item information to be invested, and obtaining an electric power item investment score value set; determining the quantity of the electric power items to be clarified according to the plan investment value and the declaration investment value; selecting to-be-input electric power item information meeting preset selection conditions from the to-be-input electric power item information set as to-be-clarified electric power item information to obtain a to-be-clarified electric power item information set, wherein the preset selection conditions are set according to the electric power item input score value set and the number of the to-be-clarified electric power items; determining category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set; the control target device displays the electric power item information to be clarified, the corresponding category label information and the electric power item icon to be clarified at the position corresponding to each electric power item information to be clarified in the electric power item information set to be clarified in the displayed electronic map.
Computer program code for carrying out operations for embodiments of the present disclosure may be written in any combination of one or more programming languages, including an object oriented programming language such as Java, Smalltalk, C + +, and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code may execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer and partly on a remote computer or entirely on the remote computer or server. In the case of a remote computer, the remote computer may be connected to the user's computer through any type of network, including a Local Area Network (LAN) or a Wide Area Network (WAN), or the connection may be made to an external computer (for example, through the Internet using an Internet service provider).
The flowchart and block diagrams in the figures illustrate the architecture, functionality, and operation of possible implementations of systems, methods and computer program products according to various embodiments of the present disclosure. In this regard, each block in the flowchart or block diagrams may represent a module, segment, or portion of code, which comprises one or more executable instructions for implementing the specified logical function(s). It should also be noted that, in some alternative implementations, the functions noted in the block may occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved. It will also be noted that each block of the block diagrams and/or flowchart illustration, and combinations of blocks in the block diagrams and/or flowchart illustration, can be implemented by special purpose hardware-based systems which perform the specified functions or acts, or combinations of special purpose hardware and computer instructions.
The units described in some embodiments of the present disclosure may be implemented by software, and may also be implemented by hardware. The described units may also be provided in a processor, and may be described as: a processor includes an acquisition unit, a first determination unit, a second determination unit, a selection unit, a third determination unit, and a control unit. Here, the names of these units do not constitute a limitation on the unit itself in some cases, and for example, the acquisition unit may also be described as a "unit that acquires a set of information on electric power items to be put into".
The functions described herein above may be performed, at least in part, by one or more hardware logic components. For example, without limitation, exemplary types of hardware logic components that may be used include: field Programmable Gate Arrays (FPGAs), Application Specific Integrated Circuits (ASICs), Application Specific Standard Products (ASSPs), systems on a chip (SOCs), Complex Programmable Logic Devices (CPLDs), and the like.

Claims (10)

1. A power item information display method comprises the following steps:
in response to the fact that the plan input value is lower than the declaration input value, acquiring a to-be-input electric power item information set corresponding to the declaration input value, wherein the to-be-input electric power item information in the to-be-input electric power item information set comprises: the power supply area, the number of power supplies and the load balance degree value of the power equipment;
determining an electric power item investment score value corresponding to each piece of electric power item information to be invested in the electric power item information set to be invested according to a power supply area, the number of power supply people and a load balance degree value of the electric power equipment, which are included in the electric power item information to be invested, so as to obtain an electric power item investment score value set;
determining the quantity of the electric power projects to be clarified according to the plan investment value and the declaration investment value;
selecting to-be-input electric power item information meeting preset selection conditions from the to-be-input electric power item information set as to-be-clarified electric power item information to obtain a to-be-clarified electric power item information set, wherein the preset selection conditions are set according to the electric power item input score value set and the number of the to-be-clarified electric power items;
determining category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set;
the control target device displays the to-be-clarified power item information and the corresponding category label information and to-be-clarified power item icons at a position in the displayed electronic map corresponding to each to-be-clarified power item information in the to-be-clarified power item information set.
2. The method of claim 1, wherein the method further comprises:
in response to receiving a selection request for any power item to be clarified icon displayed in the electronic map, controlling the target device to show historical power item information and historical power item icons related to power item information to be clarified corresponding to the power item to be clarified icon in the displayed electronic map.
3. The method according to one of claims 1-2, wherein the method further comprises:
in response to receiving a deletion request for any power item to be clarified icon shown in the electronic map, controlling the target device to hide the power item to be clarified icon in the displayed electronic map, and deleting power item to be input information corresponding to the power item to be clarified icon from the set of power item to be input information.
4. The method of claim 1, wherein the power item to be placed information of the set of power item to be placed information further comprises: the number of core power equipment and the line loss rate; and
the determining the electric power item investment score value corresponding to each piece of electric power item information to be invested in the set of electric power item information to be invested to obtain a set of electric power item investment score values includes:
determining parameter values corresponding to a power supply area, the number of power supplies, a load balance degree value of power equipment, the number of core power equipment and a line loss rate, which are included in each piece of to-be-input power item information in the to-be-input power item information set, so as to generate a to-be-input power item parameter set, and obtaining the to-be-input power item parameter set, wherein the to-be-input power item parameter set in the to-be-input power item parameter set comprises: the power supply area parameter value, the power supply number parameter value, the power equipment load balance degree parameter value, the core power equipment number parameter value and the line loss rate parameter value;
and determining a power item investment score value corresponding to each piece of to-be-invested power item information in the to-be-invested power item information set according to the to-be-invested power item parameter group set to obtain a power item investment score value set.
5. The method of claim 1, wherein said determining a number of power items to clarify from said planned investment value and said declared investment value comprises:
determining the ratio of the declared investment value to the number of the to-be-invested power item information in the to-be-invested power item information set as a power item average investment value;
and determining the quantity of the electric power projects to be clarified according to the plan investment value, the declaration investment value and the average investment value of the electric power projects.
6. The method of claim 1, wherein the power item to be placed information of the set of power item to be placed information further comprises: power equipment state information; and
the determining of the category label information corresponding to each piece of to-be-clarified electric power item information in the to-be-clarified electric power item information set to obtain a category label information set includes:
in response to the fact that the power equipment state information included in the to-be-clarified power item information meets a first preset condition, determining category label information corresponding to the to-be-clarified power item information as first category label information.
7. The method according to claim 1, wherein the determining of the category label information corresponding to each to-be-clarified power item information in the to-be-clarified power item information set to obtain a category label information set further comprises:
in response to the fact that the power equipment state information included in the to-be-clarified power item information meets a second preset condition, determining category label information corresponding to the to-be-clarified power item information as second category label information;
in response to determining that the power equipment state information included in the to-be-clarified power item information meets a third preset condition, determining category label information corresponding to the to-be-clarified power item information as third category label information.
8. An electric power item information display device, comprising:
an obtaining unit configured to obtain a set of to-be-input power item information corresponding to a declared input value in response to determining that a planned input value is lower than the declared input value, wherein the to-be-input power item information in the set of to-be-input power item information includes: the power supply area, the number of power supplies and the load balance degree value of the power equipment;
the first determining unit is configured to determine a power item investment score value corresponding to each piece of to-be-invested power item information in the to-be-invested power item information set according to a power supply area, the number of power supply people and a power equipment load balance degree value included in the to-be-invested power item information to obtain a power item investment score value set;
a second determination unit configured to determine the number of power items to be clarified according to the planned investment value and the declared investment value;
the selection unit is configured to select power item information to be input, which meets preset selection conditions and is set according to the power item input score value set and the number of the power items to be clarified, from the power item information to be input as power item information to be clarified, so as to obtain a power item information set to be clarified;
a third determining unit configured to determine category label information corresponding to each to-be-clarified electric power item information in the to-be-clarified electric power item information set, so as to obtain a category label information set;
a control unit configured to control a target device to present the to-be-clarified power item information and corresponding category label information and to-be-clarified power item icons at a position in the displayed electronic map corresponding to each to-be-clarified power item information in the set of to-be-clarified power item information.
9. An electronic device, comprising:
one or more processors;
a storage device having one or more programs stored thereon,
when executed by the one or more processors, cause the one or more processors to implement the method of any one of claims 1-7.
10. A computer-readable medium, on which a computer program is stored, wherein the program, when executed by a processor, implements the method of any one of claims 1-7.
CN202111210564.4A 2021-10-18 2021-10-18 Electric power project information display method, device, equipment and computer readable medium Pending CN113887995A (en)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
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Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116757443A (en) * 2023-08-11 2023-09-15 北京国电通网络技术有限公司 Novel power line loss rate prediction method and device for power distribution network, electronic equipment and medium

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116757443A (en) * 2023-08-11 2023-09-15 北京国电通网络技术有限公司 Novel power line loss rate prediction method and device for power distribution network, electronic equipment and medium
CN116757443B (en) * 2023-08-11 2023-10-27 北京国电通网络技术有限公司 Novel power line loss rate prediction method and device for power distribution network, electronic equipment and medium

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