CN116596281A - Lightweight three-dimensional property management system - Google Patents

Lightweight three-dimensional property management system Download PDF

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CN116596281A
CN116596281A CN202310869640.5A CN202310869640A CN116596281A CN 116596281 A CN116596281 A CN 116596281A CN 202310869640 A CN202310869640 A CN 202310869640A CN 116596281 A CN116596281 A CN 116596281A
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CN116596281B (en
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薛广涛
张璞玉
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China Power Construction Property Management Co ltd
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Abstract

The application discloses a lightweight three-dimensional property management system, which relates to the technical field of property management systems and comprises a user interface module, a display module and a display module, wherein the user interface module is used for displaying a visualized property three-dimensional model; the task management module is used for distributing and issuing task events to the execution end according to the distribution rule; the security management module comprises a monitoring module and a sensor module; the owner feedback module is used for generating owner feedback information and sending the owner feedback information to the task management module; and the database module is used for storing and retrieving data of other modules. The system improves the property management function and user experience, and the performance of the system is improved due to the light weight of the 3D model; abnormal information can be automatically detected and tasks can be allocated, so that the possibility of human errors is reduced, the response time to events is shortened, and the overall safety is improved.

Description

Lightweight three-dimensional property management system
Technical Field
The application relates to the technical field of property management systems, in particular to a lightweight three-dimensional property management system.
Background
Over the past few years, there has been an increasing demand for comprehensive, active, efficient property management. Unprecedented developments in urban areas, large housing projects, and smart cities have created a number of challenges for property management. These challenges include effectively maintaining numerous properties, ensuring safety and security, and responding to resident feedback and complaints in a timely manner. The traditional property management system is not only time-consuming, but also prone to error due to limited capacity and manual operation.
Disclosure of Invention
This section is intended to outline some aspects of embodiments of the application and to briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section as well as in the description of the application and in the title of the application, which may not be used to limit the scope of the application.
The present application has been made in view of the above-mentioned and/or existing problems occurring in light-weight three-dimensional property management systems.
Therefore, the problem to be solved by the present application is how to provide a lightweight three-dimensional property management system.
In order to solve the technical problems, the application provides the following technical scheme: the light three-dimensional property management system comprises a user interface module, a user interface module and a control module, wherein the user interface module is used for displaying a visual property three-dimensional model, and can receive input information of a user in a business owner feedback module and communicate with other modules to display related information; the task management module is used for distributing and distributing task events to the execution end according to distribution rules, and is communicated with the user interface module to receive or send user input information and user output information and is communicated with the database module to retrieve and store data related to the task events; the security management module is used for providing a comprehensive security management system and comprises a monitoring module and a sensor module; the owner feedback module is used for generating owner feedback information and sending the owner feedback information to the task management module; the database module is used for storing and retrieving data of other modules; the monitoring module and the sensor module acquire abnormal information in the monitoring process, or the owner feedback module acquires the problem of user feedback, the task management module is automatically reported to generate a task event, the task management module conducts preliminary rating on the task event and confirms or adjusts the rating by the monitoring end within the waiting time corresponding to the preliminary rating, and if the monitoring end does not confirm or adjust the rating within the waiting time corresponding to the preliminary rating, the preliminary rating is regarded as final rating, and task allocation is conducted directly according to allocation rules.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the allocation rule comprises that task events are divided into first-level events, second-level events, third-level events and fourth-level events, an execution end is divided into first-level managers, second-level managers, third-level managers and fourth-level managers, the first-level events are events which have no potential injury and low time sensitivity, and the events are allocated and issued to the first-level managers and are required to be solved in a first limited time; a secondary event is an event that is more serious than the primary event, but does not constitute a direct threat, which event is distributed to secondary managers and requires them to be resolved within a second defined time; tertiary events are events with significant potential hazards that require immediate attention, which are distributed to tertiary managers and require resolution within a third defined time; the four-level event refers to an event which is seriously threatened to life or property and needs urgent intervention, the event is distributed to four-level managers and is required to immediately respond and be solved as soon as possible, and the first-level event, the second-level event, the third-level event and the fourth-level event are divided according to the urgent degree of the event from low to high.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the waiting time corresponding to the preliminary rating comprises that the waiting time corresponding to the primary event is T 1 The waiting time corresponding to the second-level event is T 2 The waiting time corresponding to the three-level event is T 3 The waiting time corresponding to the four-level event is T 4 And T is 1 >T 2 >T 3 >T 4
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: if the preliminary rating of the task event is a first-level event and the waiting time exceeds 1/2 of the original time, the system sends alarm information to the monitoring end, if the monitoring end does not reply within the residual waiting time, the system distributes the task to be issued and sends an email abstract or notice to the monitoring end for recording and following the follow-up matters; if the preliminary rating of the task event is a secondary event or a tertiary event and the waiting time exceeds 1/2 of the original time, the task management module shares the event to any manager higher than the task event by one level and gives the manager permission to determine or change the rating of the task event, after the manager determines or changes the rating of the task event, the manager performs task allocation according to the rating and sends an email abstract or notification to a monitoring end for recording and following the follow-up event, and if the monitoring end or the manager does not reply in the residual waiting time, the manager distributes the task according to the preliminary rating and sends the email abstract or notification to the monitoring end for recording and following the follow-up event; if the preliminary rating of the task event is a four-level event and the waiting time exceeds 1/3 of the original time, the task management module sends out a conference call invitation to all four-level managers, the four-level managers participating in the conference agree on deciding the rating of the task event, then task allocation is carried out according to the rating, if the monitoring end does not reply in the remaining waiting time or the conference gives out a decision of determining or changing the rating of the task event in the remaining waiting time, the task is issued according to the preliminary rating allocation, and an email abstract or notification is sent to the monitoring end and all four-level managers for recording and follow-up of the follow-up matters, and the monitoring end is generally operated by a system administrator.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the step of building the property three-dimensional model comprises the steps of acquiring data in real time through sensors and cameras arranged at different positions in a cell and transmitting the data to a task management module; the task management module performs integrity check on the collected data, and when judging that the data from any sensor or camera is lost or incomplete, sends a request to the sensor or camera to resend the data until the complete data is collected; after determining that all the data are complete data, the task management module processes the data to convert the data into a format compatible with three-dimensional modeling, and performs three-dimensional modeling to form an initial model; performing light weight treatment on the initial model to form a property three-dimensional model; the property three-dimensional model is updated as new data is received from the various sensors and cameras.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: when data is collected, each data contains a device ID, a timestamp, and a data type.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the task management module performs integrity check on the collected data, and comprises the following steps of temporarily storing the collected data in a buffer area in the task management module, and sequencing according to the device ID and the time stamp; confirming the integrity of the data through record level checking and field level checking; then checking the consistency of the data by comparing the data with predefined formats or rules; marking the data value which is out of range or has a difference from the normal mode as abnormal information data; when any data is found to be incomplete or abnormal information data, the task management module sends a request to the corresponding equipment to retransmit the data, and if the retransmitted data is received and verified, the data is combined with the main data set; when any device cannot retransmit the data or the retransmitted data is still incomplete or abnormal, an alarm is sent to a system monitoring end for manual intervention or further investigation.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the record level check is that the system enables each device to generate data in a set time period according to the setting, and if the data quantity is wrong, the data is considered to be incomplete; the field level check refers to checking each record so that all fields contain valid data, and if there is a missing value or null value in a field, the data is considered to be incomplete.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the abnormal information acquired by the monitoring module comprises safety abnormal information, property loss abnormal information and public safety abnormal information, wherein the safety abnormal information comprises personnel which do not belong to a community and are monitored at night, the property loss abnormal information comprises scene information of intentional destruction, fire or structural damage which is visible through monitoring, and the public safety abnormal information comprises crowd congestion scene information of unattended objects, slipping events or specific areas.
As a preferable scheme of the light three-dimensional property management system, the application comprises the following steps: the abnormal information acquired by the sensor module comprises environment abnormal information, structure abnormal information and utility abnormal information, wherein the environment abnormal information comprises abnormal information changes of temperature, humidity, air quality or light, and the structure abnormal information comprises abnormal information vibration or noise.
The application has the beneficial effects that: the functions and user experience of property management are improved, and the performance of the system is improved due to the light weight of the 3D model; abnormal information can be automatically detected and tasks can be allocated, so that the possibility of human errors is reduced, the response time to events is shortened, and the overall safety is improved.
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In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are needed in the description of the embodiments will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present application, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art. Wherein:
FIG. 1 is a schematic diagram of a lightweight three-dimensional property management system;
FIG. 2 is a flow chart of a lightweight three-dimensional property management system for building a three-dimensional property model;
FIG. 3 is a flow chart of an integrity check of data for a lightweight three-dimensional property management system.
Detailed Description
In order that the above-recited objects, features and advantages of the present application will become more readily apparent, a more particular description of the application will be rendered by reference to specific embodiments thereof which are illustrated in the appended drawings.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application, but the present application may be practiced in other ways other than those described herein, and persons skilled in the art will readily appreciate that the present application is not limited to the specific embodiments disclosed below.
Further, reference herein to "one embodiment" or "an embodiment" means that a particular feature, structure, or characteristic can be included in at least one implementation of the application. The appearances of the phrase "in one embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments.
Example 1
Referring to fig. 1 to 3, in a first embodiment of the present application, a lightweight three-dimensional property management system is provided, where the lightweight three-dimensional property management system includes a user interface module, a task management module, a security management module, a business owner feedback module, and a database module.
Specifically, the user interface module is used for displaying a visual property three-dimensional model to a user, and the module can receive input information of the user in the owner feedback module and communicate with other modules to display related information, wherein the user interface module is a main gateway for the user to interact with the system. It provides an interactive three-dimensional model of the property, allowing users to view detailed information, manage tasks and receive alerts, providing a highly intuitive and user-friendly experience.
The task management module is used for distributing and distributing task events to the execution end according to the distribution rule, and is communicated with the user interface module to receive or send user input information and user output information and is communicated with the database module to retrieve and store data related to the task events.
The security management module is used for providing a comprehensive security management system and comprises a monitoring module and a sensor module. And the owner feedback module is used for generating owner feedback information and sending the owner feedback information to the task management module. And the database module is used for storing and retrieving data of other modules.
The building of the property three-dimensional model comprises the following steps:
firstly, collecting data in real time through sensors and cameras arranged at different positions in a cell, and transmitting the data to a task management module;
secondly, the task management module performs integrity check on the collected data, and when judging that the data from any sensor or camera is lost or incomplete, the task management module sends a request to the sensor or camera to resend the data until the complete data is collected;
then, after determining that all the data are complete data, the task management module processes the data to convert the data into a format compatible with three-dimensional modeling, and performs three-dimensional modeling to form an initial model;
then carrying out light weight treatment on the initial model to form a property three-dimensional model;
finally, the property three-dimensional model is updated as new data is received from the various sensors and cameras.
Preferably, each data packet contains a device ID, a time stamp, and data type data, where the data type data refers to data such as structural features, security, location information, etc., when the data collection is performed.
In one embodiment, the task management module performs an integrity check on the collected data comprising the steps of: temporarily storing the collected data in a buffer area in a task management module, and sorting according to the device ID and the time stamp;
confirming the integrity of the data through record level check and field level check, wherein the record level check refers to the data generated by each device in a set time period according to the setting, and if the number of the data is wrong, the data is considered to be incomplete; the field level check refers to checking each record so that all fields contain valid data, and if a missing value or a null value exists in the field, the data is considered to be incomplete;
then checking the consistency of the data by comparing the data with predefined formats or rules;
marking the data value which is out of range or has a difference from the normal mode as abnormal information data; when any data is incomplete or abnormal information data is obtained, the task management module sends a request to corresponding equipment to retransmit the data, and if the retransmitted data is received and verified, the data is combined with the main data set; when any device cannot retransmit the data or the retransmitted data is still incomplete or abnormal, an alarm is sent to a system monitoring end for manual intervention or further investigation.
The task allocation rule includes: the task event is divided into a first-level event, a second-level event, a third-level event and a fourth-level event, the execution end is divided into a first-level manager, a second-level manager, a third-level manager and a fourth-level manager, the first-level manager generally corresponds to general property practitioners, the second-level manager generally corresponds to a middle-level manager level, the third-level manager generally corresponds to a high-level manager level, and the fourth-level manager generally corresponds to a manager and more than a manager level.
The primary event refers to an event that has no potential damage and low time sensitivity, and the event is distributed to a primary manager and is required to be solved within a first limited time, in this embodiment, 3 days, where the primary event generally corresponds to a routine task or small complaint, such as a neighbor dispute, a noise complaint, a small maintenance problem, and the like. They require attention but do not constitute a direct threat.
A secondary event is one that is more serious than the primary event, but does not constitute a direct threat, and is distributed to secondary managers and is required to be resolved within a second defined time, in this embodiment 1 day, which generally corresponds to HVAC system failure, security problems (e.g., minor intrusion), moderate structural damage, or repeated complaints of owners, etc., that affect living conditions, requiring immediate attention.
Tertiary events are events that have significant potential hazards and require immediate attention, which are distributed to tertiary managers and are required to be resolved within a third defined time, in this embodiment 12 hours, which typically corresponds to serious security breaches, significant structural damage, or large scale disruption of utilities, which pose a direct threat to resident security, or possibly significant property loss.
A level four event is an event that constitutes a serious threat to life or property, requiring urgent intervention, which is distributed to a level four manager and requires them to react immediately and resolve as soon as possible, the level two event generally corresponding to a fire, natural disaster or serious security threat. They need to react immediately and coordinate with the emergency services department.
It should be noted that the first limiting time, the second limiting time and the third limiting time are set according to practical situations, and are not fixed values, for example, cells with more execution ends and fewer users, and each limiting time can be set to be shorter.
Specifically, the task event generation includes that the monitoring module and the sensor module acquire abnormal information in the monitoring process, or the owner feedback module acquires the problem of user feedback or acquires the owner feedback problem in the owner feedback module, the monitoring module, the sensor module and the owner feedback module automatically report the task event to the task management module to generate the task event, the task management module carries out preliminary rating, the monitoring end confirms or adjusts the rating within the waiting time corresponding to the preliminary rating, and if the monitoring end does not confirm or adjust the rating within the waiting time corresponding to the preliminary rating, the preliminary rating is regarded as final rating, and the task allocation is directly carried out. It should be noted that, the monitoring end may list the possible events in the cell in advance, and all the events are input into the task management module and are divided into the events of the corresponding level, so as to form the division basis of the task events.
The waiting time corresponding to the preliminary rating includes: the waiting time corresponding to the first-level event is T 1 The waiting time corresponding to the second-level event is T 2 The waiting time corresponding to the three-level event is T 3 Latency corresponding to a level four eventIs T 4 And T is 1 >T 2 >T 3 >T 4 In the present embodiment, T 1 、T 2 、T 3 、T 4 6 hours, 1 hour, 30 minutes and 5 minutes, respectively.
If the preliminary rating of the task event is a first-level event and the waiting time exceeds 1/2 of the original time, the system sends alarm information to the monitoring end, if the monitoring end does not reply within the residual waiting time, the system distributes the task to be issued and sends an email abstract or notice to the monitoring end for recording and following the follow-up matters.
If the preliminary rating of the task event is a secondary event or a tertiary event and the waiting time exceeds 1/2 of the original time, the task management module shares the event to any manager higher than the task event by one level and gives the manager permission to determine or change the rating of the task event, after the manager determines or changes the rating of the task event, the manager performs task allocation according to the rating and sends an email abstract or notification to the monitoring end for recording and follow-up of the task event, and if the monitoring end or the manager does not reply in the residual waiting time, the manager distributes the task according to the preliminary rating and sends the email abstract or notification to the monitoring end for recording and follow-up of the follow-up event.
If the preliminary rating of the task event is a four-level event and the waiting time exceeds 1/3 of the original time, the task management module sends out conference call invitations to all four-level managers, the four-level managers participating in the conference agree on deciding the rating of the task event, then task allocation is carried out according to the rating, if the monitoring end does not reply in the remaining waiting time or the conference gives out decision of determining or changing the rating of the task event in the remaining waiting time, the task is issued according to the preliminary rating allocation, and an email abstract or notification is sent to the monitoring end and all four-level managers for recording and follow-up of subsequent matters.
The abnormal information acquired by the monitoring module comprises safety abnormal information, property loss abnormal information and public safety abnormal information, wherein the safety abnormal information comprises personnel which do not belong to a community and are monitored at night, the property loss abnormal information comprises scene information of intentional destruction, fire or structural damage which is visible through monitoring, and the public safety abnormal information comprises crowd congestion scene information of unattended objects, slipping events or specific areas. The abnormal information acquired by the sensor module comprises environment abnormal information, structure abnormal information and utility abnormal information, wherein the environment abnormal information comprises abnormal information changes of temperature, humidity, air quality or light, and the structure abnormal information comprises abnormal information vibration or noise.
Example 2
For the second embodiment of the present application, in order to verify the advantageous effects of the present application, a lightweight three-dimensional property management system and a conventional property management program are compared and demonstrated.
Table 1 lightweight three-dimensional property management system and traditional property management program comparison table
As can be seen from Table 1, the lightweight three-dimensional property management system provides an interactive and more visual user interface, and the task management module improves the efficiency by distributing the issuing tasks according to predefined rules. In addition, it automatically handles the owner's feedback, speeding up the response time.
The method comprises the steps of taking a traditional property management program as a comparison group, generating different data, such as data records of various sensors and respective information possibly fed back by owners, from equipment data simulation software, intercepting a plurality of segments of property monitoring videos, wherein the monitoring videos should cover various scenes possibly occurring in life as far as possible, and inputting the scenes into a property management scene simulator; the data are processed by the lightweight three-dimensional property management system and the traditional property management program according to the my application respectively to obtain task event identification time, task event distribution time and task event processing time, and invited personnel as households to score the lightweight three-dimensional property management system and the traditional property management program, and experimental results are shown in table 2.
Table 2 experimental data table
The light three-dimensional property management system provides a three-dimensional property model, so that a user can view property information and allocation rules of task events in real time and intuitively, and better user experience is provided. For the processing time of the task event, the task is distributed and managed in the lightweight three-dimensional property management system, and the execution end can obtain real-time task feedback, so that the task processing time is short.
It will be appreciated by those skilled in the art that embodiments of the present application may be provided as a method, system, or computer program product. Accordingly, the present application may take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment combining software and hardware aspects. Furthermore, the present application may take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, and the like) having computer-usable program code embodied therein. The scheme in the embodiment of the application can be realized by adopting various computer languages, such as object-oriented programming language Java, an transliteration script language JavaScript and the like.
The present application is described with reference to flowchart illustrations and/or block diagrams of methods, apparatus (systems) and computer program products according to embodiments of the application. It will be understood that each flow and/or block of the flowchart illustrations and/or block diagrams, and combinations of flows and/or blocks in the flowchart illustrations and/or block diagrams, can be implemented by computer program instructions. These computer program instructions may be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, create means for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instruction means which implement the function specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
While preferred embodiments of the present application have been described, additional variations and modifications in those embodiments may occur to those skilled in the art once they learn of the basic inventive concepts. It is therefore intended that the following claims be interpreted as including the preferred embodiments and all such alterations and modifications as fall within the scope of the application.
It will be apparent to those skilled in the art that various modifications and variations can be made to the present application without departing from the spirit or scope of the application. Thus, it is intended that the present application also include such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.
It should be noted that the above embodiments are only for illustrating the technical solution of the present application and not for limiting the same, and although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solution of the present application may be modified or substituted without departing from the spirit and scope of the technical solution of the present application, which is intended to be covered in the scope of the claims of the present application.

Claims (10)

1. A lightweight three-dimensional property management system is characterized in that: comprising the steps of (a) a step of,
the user interface module is used for displaying the visualized property three-dimensional model, and can receive input information of a user in the owner feedback module and communicate with other modules to display related information;
the task management module is used for distributing and distributing task events to the execution end according to distribution rules, and is communicated with the user interface module to receive or send user input information and user output information and is communicated with the database module to retrieve and store data related to the task events;
the security management module is used for providing a comprehensive security management system and comprises a monitoring module and a sensor module;
the owner feedback module is used for generating owner feedback information and sending the owner feedback information to the task management module;
the database module is used for storing and retrieving data of other modules;
the monitoring module and the sensor module acquire abnormal information in the monitoring process, or the owner feedback module acquires the problem of user feedback, the task management module is automatically reported to generate a task event, the task management module conducts preliminary rating on the task event and confirms or adjusts the rating by the monitoring end within the waiting time corresponding to the preliminary rating, and if the monitoring end does not confirm or adjust the rating within the waiting time corresponding to the preliminary rating, the preliminary rating is regarded as final rating, and task allocation is conducted directly according to allocation rules.
2. The lightweight three-dimensional property management system of claim 1, wherein: the allocation rule comprises the steps of dividing a task event into a first-level event, a second-level event, a third-level event and a fourth-level event, and dividing an execution end into a first-level manager, a second-level manager, a third-level manager and a fourth-level manager;
the first-level event is distributed and issued to a first-level manager and is required to be solved within a first limited time;
the secondary event is distributed and issued to a secondary manager and is required to be solved within a second limited time;
the third-level event distribution is issued to a third-level manager and is required to be solved within a third limited time;
the fourth-level event distribution is issued to a fourth-level manager and is required to immediately react and be solved as soon as possible;
the first-level event, the second-level event, the third-level event and the fourth-level event are divided from low to high according to the emergency degree of the event.
3. The lightweight three-dimensional property management system of claim 2, wherein: the waiting time corresponding to the preliminary rating comprises that the waiting time corresponding to the primary event is T 1 The waiting time corresponding to the second-level event is T 2 The waiting time corresponding to the three-level event is T 3 The waiting time corresponding to the four-level event is T 4 And T is 1 >T 2 >T 3 >T 4。
4. The lightweight three-dimensional property management system of claim 2, wherein: if the preliminary rating of the task event is a first-level event and the waiting time exceeds 1/2 of the original time, the system sends alarm information to the monitoring end, if the monitoring end does not reply within the residual waiting time, the system distributes the task to be issued and sends an email abstract or notice to the monitoring end for recording and following the follow-up matters;
if the preliminary rating of the task event is a secondary event or a tertiary event and the waiting time exceeds 1/2 of the original time, the task management module shares the event to any manager higher than the task event by one level and gives the manager permission to determine or change the rating of the task event, after the manager determines or changes the rating of the task event, the manager performs task allocation according to the rating and sends an email abstract or notification to a monitoring end for recording and following the follow-up event, and if the monitoring end or the manager does not reply in the residual waiting time, the manager distributes the task according to the preliminary rating and sends the email abstract or notification to the monitoring end for recording and following the follow-up event;
if the preliminary rating of the task event is a four-level event and the waiting time exceeds 1/3 of the original time, the task management module sends out conference call invitations to all four-level managers, the four-level managers participating in the conference agree on deciding the rating of the task event, then task allocation is carried out according to the rating, if the monitoring end does not reply in the remaining waiting time or the conference gives out decision of determining or changing the rating of the task event in the remaining waiting time, the task is issued according to the preliminary rating allocation, and an email abstract or notification is sent to the monitoring end and all four-level managers for recording and follow-up of subsequent matters.
5. The lightweight three-dimensional property management system of any one of claims 1-4, wherein: the step of building the property three-dimensional model includes,
collecting data in real time through sensors and cameras arranged at different positions in a cell, and transmitting the data to the task management module;
the task management module performs integrity check on the collected data, and when judging that the data from any sensor or camera is lost or incomplete, sends a request to the sensor or camera to resend the data until the complete data is collected;
after the task management module determines that all the data are complete data, the data are processed to be converted into a format compatible with three-dimensional modeling, and the three-dimensional modeling is performed to form an initial model;
performing light weight treatment on the initial model to form a property three-dimensional model;
the property three-dimensional model is updated as new data is received from the various sensors and cameras.
6. The lightweight three-dimensional property management system of claim 5, wherein: when data is collected, each data contains a device ID, a timestamp, and a data type.
7. The lightweight three-dimensional property management system of claim 6, wherein: the task management module performs an integrity check on the collected data comprising the steps of,
temporarily storing the collected data in a buffer area in the task management module, and sorting according to the device ID and the time stamp;
confirming the integrity of the data through record level checking and field level checking;
then checking the consistency of the data by comparing the data with predefined formats or rules;
marking the data value which is out of range or has a difference from the normal mode as abnormal information data;
when any data is found to be incomplete or abnormal information data, the task management module sends a request to the corresponding device to retransmit the data, and if the retransmitted data is received and verified, the data is combined with the main data set;
when any device cannot retransmit the data or the retransmitted data is still incomplete or abnormal, an alarm is sent to the system monitoring end.
8. The lightweight three-dimensional property management system of claim 7, wherein: the record level check is that the system enables each device to generate data in a set time period according to the setting, and if the data quantity is wrong, the data is considered to be incomplete;
the field level check refers to checking each record so that all fields contain valid data, and if there is a missing value or null value in a field, the data is considered to be incomplete.
9. The lightweight three-dimensional property management system of claim 1, wherein: the abnormal information acquired by the monitoring module comprises safety abnormal information, property loss abnormal information and public safety abnormal information, wherein the safety abnormal information comprises personnel which do not belong to a community and are monitored at night, the property loss abnormal information comprises scene information of intentional destruction, fire or structural damage which is visible through monitoring, and the public safety abnormal information comprises crowd congestion scene information of unattended objects, slipping events or specific areas.
10. The lightweight three-dimensional property management system of claim 1, wherein: the abnormal information acquired by the sensor module comprises environment abnormal information, structure abnormal information and utility abnormal information, wherein the environment abnormal information comprises abnormal information changes of temperature, humidity, air quality or light, and the structure abnormal information comprises abnormal information vibration or noise.
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