CN112001762B - Shared electric appliance, control method thereof and computer readable storage medium - Google Patents

Shared electric appliance, control method thereof and computer readable storage medium Download PDF

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Publication number
CN112001762B
CN112001762B CN202010902150.7A CN202010902150A CN112001762B CN 112001762 B CN112001762 B CN 112001762B CN 202010902150 A CN202010902150 A CN 202010902150A CN 112001762 B CN112001762 B CN 112001762B
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shared
time period
set time
electric appliance
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CN112001762A (en
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杜萍
韩怡茹
陈远远
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/0645Rental transactions; Leasing transactions
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/02Marketing; Price estimation or determination; Fundraising
    • G06Q30/0283Price estimation or determination
    • G06Q30/0284Time or distance, e.g. usage of parking meters or taximeters
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/20Coin-freed apparatus for hiring articles; Coin-freed facilities or services for washing or drying articles, e.g. clothes, motor cars

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  • Development Economics (AREA)
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  • Entrepreneurship & Innovation (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Abstract

The invention provides a shared electric appliance, a control method thereof and a computer readable storage medium. The shared electrical appliance applies the control method. The computer readable storage medium, when executed by a processor, is capable of implementing the method described above. The invention avoids adopting fixed peak time period and low valley time period, can avoid users to intensively use shared electric appliances, and reduces the loss of the shared electric appliances.

Description

Shared electric appliance, control method thereof and computer readable storage medium
Technical Field
The present invention relates to the field of control of appliances, and in particular, to a control method of a shared appliance, a shared appliance applying the method, and a computer readable storage medium implementing the method.
Background
Appliances such as air conditioners, washing machines, refrigerators and the like are commonly used large household appliances, and the purchase cost of the large appliances is high. With the development of sharing economy, people begin to consider purchasing and using large household appliances in a sharing manner, wherein washing machines are the most common sharing appliances.
The shared washing or self-service washing is a washing mode for collectible groups such as school students, factory staff and the like, and in general, a plurality of shared washing machines are arranged in places where the collectible groups intensively live, and people use the washing machines as required. However, the shared washing machine is commonly used by collectible groups such as students in schools and staff in factories, and is generally concentrated in a certain time period, so that the excessive use of the washing machine in some time periods is caused, even the situation that the washing machine is not used enough occurs, and the situation that the washing machine is idle occurs in other time periods.
For this reason, some existing shared washing machines are used with different billing rates according to different time periods, for example, a higher billing rate is used during peak time periods of each day, such as 18 to 22 hours, and a lower billing rate is used during valley time periods, such as 8 to 12 hours, to encourage users to use the shared washing machine off-peak. However, the charging mode fixes the peak time period and the valley time period in advance, so that people are often concentrated in the time period with lower charging rate to wash clothes, the originally set valley time period becomes the peak time period, the situation that people intensively use the shared washing machine in the originally set valley time period is caused, and finally, the washing machine is too frequently used in a certain time period, and even the situation that the washing machine is not used enough in the originally set valley time period is caused.
Therefore, when the existing shared electric appliance is used, the peak time period and the valley time period are preset and fixed, and cannot be adjusted according to actual use conditions, so that the problem that the shared electric appliance is too intensively used in certain time periods can be solved.
In addition, the existing shared washing machine has the same washing cost corresponding to each washing mode, namely, the charging rate is the same regardless of the washing mode, and is only related to the weight of clothes to be washed, the water consumption and the like. However, different washing modes often correspond to different washing times, and if the same fee is charged for a washing mode with a longer washing time and a washing mode with a shorter washing time, a problem of unscientific billing occurs. In addition, the different washing modes have different losses to the washing machine, and the existing charging mode can not truly reflect the losses to the washing machine in each washing.
Disclosure of Invention
A first object of the present invention is to provide a control method of a shared appliance that effectively prevents the shared appliance from being intensively used.
A second object of the present invention is to provide a shared appliance implementing the control method of the shared appliance.
A third object of the present invention is to provide a computer-readable storage medium embodying the control method of the above-described shared electrical appliance.
In order to achieve the first object of the present invention, the control method of a shared electric appliance provided by the present invention includes obtaining a target usage frequency of the shared electric appliance in a set time period, obtaining an actual usage frequency of the shared electric appliance in the set time period, and determining a current usage cost of the shared electric appliance by applying a ratio of the actual usage frequency to the target usage frequency.
As can be seen from the above-mentioned scheme, the calculation of the current use cost of the shared electric appliance does not depend on the use time period of the shared electric appliance, but is determined by the actual use number of the shared electric appliance in the time period, that is, in a certain time period, the actual use number of the shared electric appliance is more, the use cost is increased, and if the actual use number is less, the use cost is less. Therefore, the peak time period and the valley time period cannot be preset, the use cost of the shared electric appliance is regulated through the actual use times, the centralized use of the shared electric appliance by a user in the time period with lower use cost can be effectively avoided, the use times of the shared electric appliance in each time period are more balanced, and the problem that the shared electric appliance is damaged due to excessive centralized use is avoided.
In a preferred embodiment, the target number of uses of the shared appliance in at least one set time period is greater than or less than the target number of uses in another set time period, and preferably, the target number of uses of the shared appliance in a preset peak time period is less than the target number of uses in a preset valley time period.
Therefore, the target use times of the sharing appliances in different set time periods are not identical, for example, the target use times corresponding to the preset peak time periods are less, and users can be encouraged to avoid using the sharing appliances in a concentrated mode in the preset peak time periods.
Further, the accumulated use times of the shared electric appliance in a plurality of set time periods in the preset use time period are obtained, and the target use times corresponding to the set time periods are adjusted according to the accumulated use times.
Therefore, the target use times corresponding to each set time period are not fixed, but are dynamically adjusted according to the actual use condition, so that the flexibility of setting the target use times corresponding to each set time period can be improved, and the user can be guided to use the shared electric appliance in a peak-shifting mode more effectively.
In a further aspect, adjusting the target usage times corresponding to each set time period according to the accumulated usage times includes: if the number of the accumulated use times of the shared electric appliance exceeds the target use times corresponding to the set time period in the set time period exceeds a first preset threshold, the target use times corresponding to the set time period is reduced; if the number of the accumulated use times of the shared electric appliance is smaller than the number of the target use times corresponding to the set time period in the set time period exceeds a second preset threshold value, the target use times corresponding to the set time period is increased.
Therefore, according to the actual use times of each set time period in a period of time, the corresponding target use times are dynamically increased or decreased, so that the setting of the target use times is more reasonable, and users can be more effectively encouraged to use the shared electric appliance in a peak-shifting mode.
Further, the method for determining the current use fee of the shared electric appliance by applying the ratio of the actual use times to the target use times comprises the following steps: and acquiring an instruction of a use mode of the shared electric appliance, and calculating the current use cost of the shared electric appliance according to the use mode and the ratio.
Therefore, the current use cost is calculated, the actual use times are considered, the use modes of the shared electric appliance are considered, namely, the reasonable use cost is determined by considering the use time length of different use modes, the loss degree of the shared electric appliance and other factors, and the calculation of the use cost is more reasonable and scientific.
In a further aspect, the obtaining actual usage times of the shared electrical appliance in the set time period includes: and sending a shared electric appliance use instruction to the server, and calculating the actual use times of the shared electric appliance in the current set time period by the server.
Therefore, the remote monitoring of the shared electric appliance can be realized through the calculation of the actual use times of the shared electric appliance by the server, and the server calculates the actual use times of the shared electric appliance, thereby being beneficial to avoiding the influence on the accuracy of the calculation of the use cost caused by the fault or the calculation error of the shared electric appliance.
In a further scheme, the server records that the use times of the shared electric appliance in the set time period are increased once after the shared electric appliance is used once.
Therefore, the accuracy of the calculation of the use cost of the shared electric appliance can be improved by accurately recording and calculating the actual use condition and the actual use times of the shared electric appliance through the server.
Further, the shared appliance use instruction sent to the server includes current time information and/or information of a use mode.
It can be seen that the server can determine which set time period currently belongs to according to the current time, so as to determine the corresponding target use times, and the basic rate of the current use can be determined through the use mode, so that the use cost calculation is more scientific.
In a further scheme, after a shared electric appliance use instruction is sent to the server, if the information of the current use cost is not received within the preset waiting time, the current use is ended.
Therefore, if the information fed back by the server is not received within the preset waiting time, the server or the network is considered to have faults, the current use can be stopped after the faults are prompted, and the phenomenon that the shared electric appliance is used improperly is avoided.
In order to achieve the second object, the present invention provides a shared electrical apparatus including a circuit board, a processor and a memory disposed on the circuit board, the memory storing a computer program, the computer program implementing each step of the control method of the shared electrical apparatus when executed by the processor.
In order to achieve the third object, the present invention provides a computer readable storage medium having a computer program stored thereon, which when executed by a processor, implements the steps of the control method of a shared electrical appliance described above.
Drawings
Fig. 1 is a flowchart of an embodiment of a control method of the shared electrical appliance of the present invention.
Fig. 2 is a flowchart for calculating a use fee in an embodiment of a control method of the shared electric appliance of the present invention.
Fig. 3 is a schematic diagram of the target usage times in each set period of time in the embodiment of the control method of the shared electrical apparatus according to the present invention.
The invention is further described below with reference to the drawings and examples.
Detailed Description
The control method of the shared electric appliance of the present invention is applied to shared electric appliances, for example, shared electric appliances may be shared air conditioners, washing machines, refrigerators, water heaters, etc., and preferably, these shared electric appliances may communicate with a server. The shared electrical appliance is provided with a circuit board, the circuit board is provided with a processor and a memory, the memory stores a computer program, and the processor executes the computer program to realize the control method of the shared electrical appliance.
Control method embodiment of shared electric appliance:
The present embodiment describes a method of using a shared electric appliance using a shared washing machine as a specific example. The shared washing machine applying the embodiment is provided with a wireless communication module, such as a wifi module, a 4G module and the like, and is provided with a liquid crystal display module, and the current working state of the washing machine, such as washing or in an idle state and the like, is displayed through the liquid crystal display module. In addition, the liquid crystal display module can also display the cost of the current use.
The washing machine can communicate with the server through the wireless communication module, for example, the current time and the washing mode selected by the user are sent to the server before each use, the cost of the current use is calculated by the server, the washing machine displays the cost calculated by the server through the liquid crystal display module, and the user determines whether to wash clothes or not.
Referring to fig. 1, when a user performs washing, the user first starts the washing machine and selects a washing mode to be used at the time, for example, a washing mode is selected through a key, a knob or a virtual key displayed on a liquid crystal display module on the washing machine, and thus, the washing machine first performs step S1 to acquire the washing mode selected by the user. In general, a washing machine may provide a variety of washing modes, such as a standard washing mode, a quick washing mode, and the like.
Then, step S2 is performed, and the washing machine transmits the current time and the washing mode selected by the user to the server. For example, the washing machine is provided with a clock module, each time the washing machine receives a selection of a washing mode by a user, the washing machine obtains the current time, and when information is sent to the server, the current time and the information of the washing mode selected by the user are sent to the server together, and the server calculates the cost of the current use.
After receiving the information of the current time and the washing mode, the server calculates the cost of the current use. In this embodiment, the server determines the cost of the current use according to the actual number of times of use of the shared washing machine in the set period of time, and the washing mode selected by the user. Specifically, referring to fig. 2, the server first performs step S11 to determine a basic rate according to a washing mode, in this embodiment, the basic rate is related to only the washing mode, is not related to the actual number of times of use and the current time of the shared washing machine, and each washing mode of the washing machine has a unique basic rate.
Then, step S12 is performed to determine the target number of uses for the current set period of time from the current time. In this embodiment, a plurality of set time periods need to be set in advance, for example, each day is divided into 24 set time periods, and each time period is one hour, that is, each hour is one set time period. Further, the target usage number may be preset, for example, in a time period of 0 to 8 hours per day, the target usage number is 3 in each set time period, and in a time period of 8 to 12 hours, the target usage number is 2 in each set time period.
Preferably, the day may be divided into a peak period, a flat valley period, and a low valley period, for example, 12 to 13 hours, 16 to 22 hours each day, 22 to 8 hours each day, a flat valley period, 8 to 12 hours, 13 to 16 hours each day, and a low valley period. In the peak time period, the target use times corresponding to each set time period are less, in the valley time period, the target use times corresponding to each set time period are more, and in the valley time period, the target use times corresponding to each set time period are the most.
As shown in fig. 3, assuming that the number of uses corresponding to each set period is S in the valley time, it is possible to set that the number of target uses corresponding to each set period is 0.8S in the peak time period and 1.2S in the valley time period.
In step S12, the server may determine which set period of time the server currently belongs to according to the current time, and acquire the corresponding target usage number according to the current set period of time.
Then, step S13 is performed, and the server determines the actual number of uses of the washing machine in the current set period. At the initial moment of each set time period, the server clears the actual use times of the washing machine, namely, records the actual use times once after the washing machine is used once, namely, the actual use times are increased once. Thus, after the server receives the current time sent by the washing machine and the washing mode selected by the user, the actual use times of the washing machine in the set time period are searched. The actual number of uses in this embodiment is how many times a washing machine has been used in a set period of time, that is, what number of uses is currently used.
Finally, step S14 is performed to calculate the cost of the current use using the target number of uses and the actual number of uses within the set time, specifically, the cost of the current use may be calculated using the following formula: pnow =px× (rx/sx), wherein pnow is the cost of the current use, px is the basic rate determined according to the washing pattern selected by the user, rx is the actual number of uses of the washing machine in the current set time period, and sx is the target number of uses of the washing machine in the current set time period. It can be seen that the usage cost is the reference rate multiplied by the ratio of the actual number of uses to the target number of uses in the set period of time.
After calculating the current use fee, the server sends the current use fee to the washing machine through the wireless network, so the washing machine executes step S3 to judge whether the use fee information returned by the server is received, if yes, step S4 is executed, and the received use fee information is displayed on the liquid crystal display module. If no usage fee information returned by the server is received, step S5 is performed to determine whether feedback information is not received beyond a preset waiting time, which may be 2 minutes or 3 minutes in this embodiment. If the feedback information is not received after the preset waiting time is exceeded, the current washing process is finished, the washing machine is not started, and the server does not generate a use record. If the step S5 confirms that the preset waiting time is not exceeded, the step S3 is executed in a returning mode, and the process continues to wait until the information returned by the server is received.
After displaying the current use fee, step S6 is executed to determine whether a washing instruction is received, for example, after displaying the current use fee, the washing machine allows the user to confirm whether to execute the washing operation, and if the user confirms to execute the washing operation, the user pays the fee or clicks the confirmation button. If the instruction for confirming the washing is received, the step S7 is executed, the washing machine starts washing according to the mode selected by the user, otherwise, the process is ended.
In this embodiment, the target usage times corresponding to each set time period are preset, but in order to better avoid centralized washing by the user, the target usage times corresponding to each set time period can be dynamically adjusted. For example, the accumulated use times of the washing machine in a plurality of set time periods in the preset use time period are obtained, and the target use times corresponding to the set time periods are adjusted according to the accumulated use times. Specifically, the preset use duration may be one month, that is, the cumulative use times of the washing machine in a plurality of set time periods of each day in the past month are recorded, and the target use times of each set time period are dynamically adjusted through the cumulative use times. The cumulative usage number of the present embodiment is the sum of the usage numbers of the washing machine in a set period of time, for example, the total usage number of a certain washing machine from 12 to 13 is 3, and the cumulative usage number is 3.
The dynamic adjustment process for the target use times is as follows: if the number of the accumulated use times of the washing machine exceeds the target use times corresponding to the set time period in a certain set time period exceeds a first preset threshold, the target use times corresponding to the set time period is reduced; if the number of the accumulated use times of the washing machine is smaller than the number of the target use times corresponding to the set time period in the set time period exceeds a second preset threshold value, the target use times corresponding to the set time period is increased.
For example, for the set time period 12 to 13, the corresponding target usage number is 3 times, in the past month, the accumulated usage number of the washing machine from 12 to 13 is more than 3 times for 10 days, if the first preset threshold is 5 days, the number of times (3 times) exceeding the target usage number reaches 10 times in the set time period from 12 to 13, and if the first preset threshold is exceeded, the washing operation is performed in the time period in a very concentrated manner, so that the target usage number corresponding to the set time period can be reduced, for example, to 2 times for encouraging the user to use in a peak-shifting manner, and the use cost of the user in the time period can be increased.
For another example, for the set time period 8 to 9, the corresponding target usage number is 2 times, in the past month, the cumulative usage number of the washing machine from 8 to 9 times is less than 2 times for 6 days, if the second preset threshold is 3 days, the number of the target usage numbers (2 times) of the washing machine in the set time period from 8 to 9 is considered to be 6 times, if the second preset threshold is exceeded, the user is indicated to rarely perform the washing operation in the time period, and in order to encourage the user to use the washing machine by staggering peaks, the target usage number corresponding to the set time period can be increased, for example, to 3 times, so that the use cost of the user in the time period is reduced.
Therefore, in this embodiment, no fixed peak time period or flat valley time period is set, and even the target usage frequency corresponding to each set time period can be dynamically adjusted, so as to change the usage cost of each set time period, thereby encouraging the user to use in a peak-shifting manner, and effectively avoiding excessive loss caused by centralized use of the shared electric appliance in a certain time period or insufficient shared electric appliance.
In this embodiment, each set period is one hour, and in practical application, each set period may be equal or unequal, and the set period may be three hours, five hours, or the like.
Shared appliance embodiment:
The shared electric appliance of the embodiment can be an air conditioner, a washing machine, a refrigerator, a water heater and the like, a circuit board is arranged on the shared electric appliance, a processor and a memory are arranged on the circuit board, a computer program capable of running on the processor is stored in the memory, and the processor realizes each step of the control method of the shared electric appliance when executing the computer program.
For example, a computer program may be split into one or more modules, which are stored in memory and executed by a processor to perform the various modules of the invention. One or more of the modules may be a series of computer program instruction segments capable of performing particular functions to describe the execution of the computer program in a processor.
The Processor of the present invention may be a central processing unit (Central Processing Unit, CPU), other general purpose Processor, digital signal Processor (DIGITAL SIGNAL Processor, DSP), application SPECIFIC INTEGRATED Circuit (ASIC), off-the-shelf Programmable gate array (Field-Programmable GATE ARRAY, FPGA) or other Programmable logic device, discrete gate or transistor logic device, discrete hardware components, etc. The general purpose processor may be a microprocessor or the processor may be any conventional processor or the like, the processor being a control center of the appliance, and the various interfaces and lines being used to connect various parts of the entire appliance.
The memory may be used to store computer programs and/or modules, and the processor implements various functions of the appliance by running or executing the computer programs and/or modules stored in the memory and invoking data stored in the memory. The memory may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application program (such as a sound playing function, an image playing function, etc.) required for at least one function, and the like; the storage data area may store data (such as audio data, phonebooks, etc.) created according to the use of the electric appliance, etc. In addition, the memory may include high-speed random access memory, and may also include non-volatile memory, such as a hard disk, memory, plug-in hard disk, smart memory card (SMART MEDIA CARD, SMC), secure Digital (SD) card, flash memory card (FLASH CARD), at least one disk storage device, flash memory device, or other volatile solid-state storage device.
Computer-readable storage medium embodiments:
The computer program stored in the memory of the shared electrical appliance may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a separate product. Based on such understanding, the present invention may implement all or part of the flow of the method of the above embodiment, or may be implemented by a computer program to instruct related hardware, where the computer program may be stored in a computer readable storage medium, and the computer program may implement the steps of the method of controlling a shared electrical apparatus when executed by a processor.
Wherein the computer program comprises computer program code, which may be in the form of source code, object code, executable files or in some intermediate form, etc. The computer readable medium may include: any entity or device capable of carrying computer program code, a recording medium, a U disk, a removable hard disk, a magnetic disk, an optical disk, a computer Memory, a Read-Only Memory (ROM), a random access Memory (RAM, random Access Memory), an electrical carrier signal, a telecommunications signal, a software distribution medium, and so forth. It should be noted that the content of the computer readable medium can be appropriately increased or decreased according to the requirements of the jurisdiction's jurisdiction and the patent practice, for example, in some jurisdictions, the computer readable medium does not include electrical carrier signals and telecommunication signals according to the jurisdiction and the patent practice.
Finally, it should be emphasized that the invention is not limited to the above-described embodiments, such as variations in the setting time for each set time period, or variations in the specific charging formula, which are also intended to be included within the scope of the claims of the invention.

Claims (9)

1. The control method of the shared electric appliance is characterized by comprising the following steps:
Acquiring target use times of the shared electric appliance in a set time period, acquiring actual use times of the shared electric appliance in the set time period, and determining the current use cost of the shared electric appliance by applying the ratio of the actual use times to the target use times;
and acquiring the accumulated use times of the shared electrical appliance in a plurality of set time periods in a preset use time period, adjusting the target use times corresponding to each set time period according to the accumulated use times,
Wherein adjusting the target usage times corresponding to the set time periods according to the accumulated usage times includes:
if the number of the accumulated use times of the shared electric appliance exceeds the target use times corresponding to the set time period and exceeds a first preset threshold value in the set time period, the target use times corresponding to the set time period are reduced;
If the number of the accumulated use times of the shared electric appliance is smaller than the number of the target use times corresponding to the set time period and exceeds a second preset threshold value in the set time period, the number of the target use times corresponding to the set time period is increased;
The step of obtaining the actual use times of the shared electrical appliance in the set time period comprises the following steps: sending a shared electric appliance use instruction to a server, and calculating the actual use times of the shared electric appliance in the current set time period by the server;
and after the shared electric appliance is used once, the server records that the use times of the shared electric appliance in the set time period are increased once.
2. The control method of a shared electrical appliance according to claim 1, wherein:
The target number of uses of the shared appliance in at least one set time period is greater than or less than the target number of uses in another set time period.
3. The control method of a shared electrical appliance according to claim 2, wherein:
The target use times of the shared electrical appliance in the preset peak time period are smaller than the target use times in the preset valley time period.
4. A control method of a shared electrical appliance according to any one of claims 1 to 3, wherein:
The method for determining the current use fee of the shared electric appliance by applying the ratio of the actual use times to the target use times comprises the following steps: and acquiring an instruction of the use mode of the shared electric appliance, and calculating the current use cost of the shared electric appliance according to the use mode and the ratio.
5. The control method of a shared electrical appliance according to claim 1, wherein:
the shared appliance use instruction sent to the server includes current time information.
6. The control method of a shared electrical appliance according to claim 1, wherein:
The shared appliance use instruction sent to the server includes information of a use mode.
7. The control method of a shared electrical appliance according to claim 1, wherein:
After sending a shared electric appliance use instruction to the server, if the information of the current use cost is not received within the preset waiting time, ending the current use.
8. A shared appliance comprising a circuit board on which a processor and a memory are provided, the memory storing a computer program which, when executed by the processor, implements the steps of the method of controlling a shared appliance as claimed in any one of claims 1 to 7.
9. A computer readable storage medium having stored thereon a computer program characterized by: the computer program, when executed by a processor, implements the respective steps of the control method of a shared electrical appliance as claimed in any one of claims 1 to 7.
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