An air conditioner and a control method and device for intercommunication between the air conditioner and a state grid system

By using a control method that allows air conditioners to communicate with the State Grid system, user information is obtained and the operating power of the air conditioners is adjusted using a remote control strategy. This solves the problem of air conditioners not being able to communicate with the State Grid system, achieving energy saving and increased user enthusiasm.

CN119333941BActive Publication Date: 2025-12-19NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202411550812.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2024-04-18
Filing Date
2024-11-01
Publication Date
2025-12-19
Estimated Expiration
2044-11-01

AI Technical Summary

Technical Problem

Existing air conditioners cannot communicate with the State Grid system, making it difficult for the power grid to manage power consumption in a coordinated manner and preventing energy saving without affecting the normal operation of the air conditioners.

Method used

By using a control method that allows air conditioners to communicate with the State Grid system, user location and equipment information are obtained. The State Grid system reviews and assigns power rationing tasks, uses remote control strategies to adjust the operating power of the air conditioners, determines whether the power rationing task has been completed, and issues rewards based on the completion status.

Benefits of technology

It enables data exchange between air conditioners and the State Grid system, limits the power consumption of air conditioners through remote control strategies, and rewards users after they perform power-limiting tasks, thereby improving energy-saving effects and user engagement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a kind of air conditioner and the control method, device and air conditioner of intercommunication of state grid system, applied to electronic equipment, electronic equipment and at least one air conditioner communication connection, air conditioner and state grid system intercommunication, control method includes: obtaining the position information of user, obtains the power limiting task corresponding to position information;Receive the meter number information input by electronic equipment, or automatically obtain meter number information, bind electronic equipment based on meter number information;Obtain the equipment information of air conditioner participating in power limiting task;State grid system audits position information, equipment information and power limiting task, judges whether air conditioner can participate in power limiting task;If yes, then adjust the operating power of air conditioner based on state grid remote control strategy, judge whether air conditioner completes power limiting task.The application connects air conditioner operating data and state grid system data, user obtains reward by executing power limiting task issued by state grid system, which not only achieves the effect of energy saving and power saving, but also greatly improves the enthusiasm of user.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of household appliances, in particular to a control method and device for intercommunication between an air conditioner and a State Grid system and an air conditioner. BACKGROUND

[0002] With the increase of power demand, the State Grid carries out power rationing, and how to save electricity without affecting the normal operation of the air conditioner is a trend. Currently, the State Grid usually carries out electricity settlement and analysis based on a single residential site as a unit, but the existing household appliances such as air conditioners cannot be integrated into the State Grid app, and the air conditioner operation data and the State Grid system data cannot be interconnected, so the State Grid system cannot realize the overall management of power consumption, and it is difficult to achieve the purpose of energy saving and power saving. SUMMARY

[0003] In view of the above problems existing in the prior art, the purpose of the present application is to provide a control method for intercommunication between an air conditioner and a State Grid system, which interconnects the air conditioner operation data in the electronic device and the State Grid system data, and the State Grid system issues a power rationing task, limits the running power of the air conditioner without affecting the actual effect of the air conditioner, and the user obtains corresponding rewards by executing the power rationing task, thereby achieving the effect of energy saving and power saving, and greatly improving the enthusiasm of the user.

[0004] The technical solution adopted by the present application is to provide a control method for intercommunication between an air conditioner and a State Grid system, which is applied to an electronic device, the electronic device and at least one air conditioner are communicatively connected, the air conditioner is interconnected with the State Grid system, and the control method comprises:

[0005] Obtaining the location information of the user to obtain a power rationing task corresponding to the location information;

[0006] Receiving the house number information input by the electronic device, or automatically obtaining the house number information, and binding the electronic device based on the house number information;

[0007] Obtaining the device information of the air conditioner participating in the power rationing task;

[0008] The State Grid system audits the location information, the device information and the power rationing task, and judges whether the air conditioner can participate in the power rationing task;

[0009] If yes, adjusting the running power of the air conditioner based on the power rationing quantity required by the user allocated by the State Grid system and based on the remote control strategy of the State Grid, and judging whether the air conditioner completes the power rationing task;

[0010] The step of adjusting the running power of the air conditioner based on the power rationing quantity required by the user allocated by the State Grid system comprises:

[0011] The state grid system obtains the power reduction task of the position information, and obtains the required total power reduction amount;

[0012] The state grid system obtains the number of user households in the designated area in the position information, allocates the total power reduction amount according to the proportion of the number of user households to obtain the required power reduction amount of the designated area, and obtains the number of users participating in the power reduction task in the designated area;

[0013] According to the required power reduction amount of the area and the number of users participating in the power reduction task, the required power reduction amount of the user is obtained.

[0014] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: through the state grid system audit information, it is judged whether it meets the conditions for participating in the power reduction task, and through the state grid system, the total power reduction amount is allocated according to the number of user households in the designated area to obtain the required power reduction amount of the designated area, and then through the state grid remote control strategy, the running power is adjusted, it is judged whether the air conditioner completes the power reduction task, the air conditioner running data is interchanged with the state grid system, and the state grid system realizes the overall management of the power consumption of the air conditioner.

[0015] In an optional implementation, after the step of obtaining the position information of the user to obtain the power reduction task corresponding to the position information, the method further includes:

[0016] Sending a signing request of a relevant informed agreement to the electronic device;

[0017] Receiving confirmation signing information generated according to the signing request returned by the electronic device;

[0018] According to the confirmation signing information, at least one of the power reduction tasks is selected.

[0019] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: after obtaining the user position information, the user needs to sign the relevant informed agreement, so that the user has a more comprehensive awareness of the activity.

[0020] In an optional implementation, the step of automatically obtaining the household number information includes:

[0021] Receiving the mobile phone number and verification code input by the electronic device;

[0022] Based on the mobile phone number and the verification code, the corresponding household number information returned by the state grid system is received;

[0023] Based on the position information, the corresponding household number information is obtained.

[0024] Compared with the prior art, the technical effects achieved by adopting the technical scheme are that the step of automatically obtaining the household number information includes receiving corresponding household number information returned by the State Grid system based on the mobile phone number and the verification code, and the intercommunication between the air conditioner and the State Grid system is further realized.

[0025] In an optional implementation, the obtaining of the device information of the air conditioner participating in the power limiting task includes at least one of air conditioner network configuration information, current running power, power consumption efficiency, whether to support remote instruction setting, running state, daily use time length, and air conditioner installation household number.

[0026] Compared with the prior art, the technical effects achieved by adopting the technical scheme are that the device information of the air conditioner is obtained, and the State Grid system audits whether the device information of the air conditioner meets the condition of participating in the power limiting task based on the device information of the air conditioner, so as to ensure that the air conditioner participating in the power limiting task can support remote control, is in good running state, and is under the household number information.

[0027] In an optional implementation, the adjusting of the running power of the air conditioner based on the State Grid remote control strategy includes:

[0028] obtaining the running power of the air conditioner;

[0029] obtaining the average running power of the air conditioner within a set time, and obtaining the target power of the air conditioner according to the average running power and the power limiting quantity required by the user configured by the State Grid system;

[0030] judging the size of the running power and the target power;

[0031] if the running power is greater than the target power, an instruction of reducing the running power of the air conditioner is issued.

[0032] Compared with the prior art, the technical effects achieved by adopting the technical scheme are that the running power of the air conditioner is adjusted by judging the size of the running power and the target power of the air conditioner, and the State Grid system limits the running power of the air conditioner without affecting the actual effect of the air conditioner.

[0033] In an optional implementation, the judging of whether the air conditioner completes the power limiting task includes:

[0034] obtaining the required completion time and the completed time of the power limiting task;

[0035] if the running power is less than or equal to the target power within the required completion time, the power limiting task is considered to be completed;

[0036] If the completed time is greater than or equal to the required completion time, and the difference between the running power and the target power is greater than s% of the target power, it is considered that the power limiting task is not completed.

[0037] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: whether the power limiting task is completed is judged by comparing the required completion time and the completed time of the power limiting task, and by comparing the running power and the target power of the air conditioner.

[0038] In an optional embodiment, after the step of adjusting the running power of the air conditioner based on the remote regulation and control strategy of the State Grid and judging whether the air conditioner completes the power limiting task, the method further comprises:

[0039] If the power limiting task is completed, the degree of electricity saved by the air conditioner is obtained, the completion rate of the power limiting task is calculated, and a reward is issued based on the completion rate.

[0040] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the user executes the power limiting task issued by the State Grid system, limits the running efficiency of the air conditioner, not only achieves the purpose of saving electricity, but also has high user participation, and can improve the enthusiasm of the user.

[0041] On the other hand, the application also provides a control device, which implements the control method of the air conditioner and the State Grid system interworking provided in any of the above embodiments, and the control device comprises an acquisition module, a judgment module and an execution module.

[0042] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the control device of the air conditioner and the State Grid system interworking acquires the position information of the user, the house number information and the equipment information of the air conditioner through the acquisition module, judges whether the air conditioner can participate in the power limiting task and whether the air conditioner completes the power limiting task through the judgment module, and adjusts the running power of the air conditioner based on the remote regulation and control strategy of the State Grid through the execution module.

[0043] On the other hand, the application also provides an air conditioner, which comprises a computer readable storage medium storing a computer program and a processor.

[0044] The beneficial effects of this invention include issuing power rationing tasks through the State Grid system, connecting the air conditioner operation data in electronic devices with the State Grid system data, limiting the air conditioner's operating power without affecting its actual performance, and allowing users to receive corresponding rewards by executing the power rationing tasks, thus achieving energy saving and significantly increasing user motivation. Attached Figure Description

[0045] Figure 1 A flowchart illustrating a control method for interconnecting an air conditioner with the State Grid system, provided by an embodiment of the present invention, is shown.

[0046] Figure 2 A flowchart illustrating another control method for interconnecting an air conditioner with the State Grid system, provided by an embodiment of the present invention, is shown.

[0047] Figure 3 It shows Figure 1 A flowchart illustrating step S200;

[0048] Figure 4 It shows Figure 1 A flowchart of step S500;

[0049] Figure 5 It shows Figure 1 Another flowchart of step S500;

[0050] Figure 6 A flowchart illustrating another control method for interconnecting an air conditioner with the State Grid system, provided by an embodiment of the present invention, is shown.

[0051] Figure 7 This is a schematic diagram of the control device according to an embodiment of the present invention;

[0052] Figure 8 This is one of the interface diagrams of the control method according to an embodiment of the present invention;

[0053] Figure 9 This is a second schematic diagram of the interface of the control method according to an embodiment of the present invention;

[0054] Figure 10 This is the third schematic diagram of the interface of the control method according to an embodiment of the present invention;

[0055] Figure 11 This is the fourth schematic diagram of the interface of the control method according to an embodiment of the present invention;

[0056] Figure 12 This is the fifth schematic diagram of the interface of the control method according to an embodiment of the present invention;

[0057] Figure 13 This is the sixth schematic diagram of the interface of the control method according to an embodiment of the present invention;

[0058] Figure 14 Fig. 7 is a schematic diagram of an interface for a control method according to an embodiment of the present application;

[0059] Figure 15 Fig. 8 is a schematic diagram of an interface for a control method according to an embodiment of the present application;

[0060] Figure 16 Fig. 9 is a schematic diagram of an interface for a control method according to an embodiment of the present application;

[0061] Figure 17 Fig. 10 is a schematic diagram of an interface for a control method according to an embodiment of the present application;

[0062] Figure 18 Fig. 11 is a schematic diagram of an interface for a control method according to an embodiment of the present application;

[0063] Figure 19 Fig. 12 is a schematic diagram of an interface for a control method according to an embodiment of the present application;

[0064] Figure 20 Fig. 13 is a schematic diagram of an interface for a control method according to an embodiment of the present application.

[0065] BRIEF DESCRIPTION OF DRAWINGS

[0066] 100 - control device; 110 - obtaining module; 120 - judging module; 130 - executing module. DETAILED DESCRIPTION

[0067] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. The components of the embodiments of the present application described and shown in the accompanying drawings can be arranged and designed in various different configurations.

[0068] Therefore, the detailed description of the embodiments of the present application provided in the accompanying drawings below is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.

[0069] It should be noted that the relational terms herein, such as first and second and the like, are used solely to distinguish one from another entity or action, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without more limitations, an element preceded by "comprises... " does not, without more limitations, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the stated elements.

[0070] It should be noted that the features in the embodiments of the present application can be combined with each other without conflict.

[0071] The present application provides a control method for air conditioner and state grid system interworking, applied to an electronic device, the electronic device and at least one air conditioner are in communication connection, the air conditioner and the state grid system interwork, optionally, the electronic device can be a smart phone, a tablet computer, a PC, a smart wearable device and the like, the air conditioner can communicate data with the electronic device in a wired or wireless mode, and the electronic device can control the air conditioner through wireless communication.

[0072] Referring to the accompanying Figure 1 and the accompanying Figure 17 to the accompanying Figure 20 , the control method comprises:

[0073] S100, acquiring the position information of the user, obtaining the power cut task corresponding to the position information;

[0074] In a preferred embodiment, the step of acquiring the position information of the user comprises:

[0075] Receiving the position information input by the electronic device, or automatically positioning the position information of the user.

[0076] Referring to the accompanying Figure 8 and the accompanying Figure 9 , for example, if the electronic device is a mobile phone, the application installed in the mobile phone is an Internet of Things APP for controlling the air conditioner, the user manually selects the province information of the region or the mobile phone automatically locates the current region by logging in the APP and entering the activity homepage entrance.

[0077] Specifically, the method of acquiring the position information of the user can receive the input of the user terminal or the automatic positioning of the electronic device, which is convenient for the user to operate.

[0078] Referring to the accompanying Figure 13 to the accompanyingFigure 15 As shown, for example, the power curtailment tasks can be: air conditioner peak shaving task one: save 10 degrees of electricity in the response time period from 08:00:00 on October 11, 2023 to 08:00:00 on October 12, 2013, and the reward is 150 points and 10 yuan of electricity bill deduction coupon; air conditioner peak shaving task two: save 8 degrees of electricity in the response time period from 08:00:00 on October 11, 2023 to 08:00:00 on October 12, 2013, and the reward is 120 points and 12 yuan of electricity bill deduction coupon.

[0079] Referring to the accompanying Figure 2 As shown, in a preferred embodiment, after the step of obtaining the location information of the user and obtaining the power curtailment task corresponding to the location information, the method further comprises:

[0080] S101, sending a signing request of a relevant informed consent protocol to an electronic device;

[0081] S102, receiving confirmation signing information generated according to the signing request returned by the electronic device;

[0082] S103, selecting at least one power curtailment task according to the confirmation signing information.

[0083] Referring to the accompanying Figure 10 As shown, for example, if the electronic device is a mobile phone, the application installed in the mobile phone is an Internet of Things APP for controlling the air conditioner, and the APP is logged in to enter the activity homepage entrance, and the relevant informed consent protocol is signed online after selecting the region. After obtaining the location information of the user, the user needs to sign the relevant informed consent protocol, so that the user has a more comprehensive understanding of the activity.

[0084] S200, receiving household number information input by an electronic device, or automatically obtaining household number information, and binding the electronic device based on the household number information;

[0085] Referring to the accompanying Figure 11 to the accompanying Figure 12 , the accompanying Figure 18 to the accompanying Figure 19 As shown, specifically, obtaining the household number information of the user includes two ways of receiving the household number information input by the user terminal and automatically obtaining the household number information. After obtaining the household number information of the user, the household number information is bound to the electronic device to participate in the power curtailment activity, so that the activity can be specific to a single user.

[0086] Referring to the accompanying Figure 3 and the accompanying Figure 18 As shown, in a preferred embodiment, the step of automatically obtaining the household number information comprises:

[0087] S210, receiving a mobile phone number and a verification code input by an electronic device;

[0088] S220, receiving corresponding household number information returned by the State Grid system based on the mobile phone number and the verification code;

[0089] S230, obtaining corresponding household number information based on the location information.

[0090] Referring to the accompanying Figure 12 As an example, the automatic acquisition of household number information is achieved by inputting a mobile phone number and a verification code to obtain the household number information in the State Grid system under the mobile phone number, and obtaining corresponding household number information through the mobile phone number and the location information of the user.

[0091] Specifically, the step of automatically acquiring household number information includes receiving corresponding household number information returned by the State Grid system based on the mobile phone number and the verification code, further realizing the interworking of the air conditioner and the State Grid system.

[0092] S300, obtaining device information of the air conditioner participating in the power limiting task;

[0093] Referring to the accompanying Figure 20 As an example, the device information of the air conditioner participating in the power limiting task includes at least one of air conditioner network configuration information, current running power, power consumption efficiency, whether the air conditioner supports the setting of remote instructions, running state, daily use time, and household number of the air conditioner installation.

[0094] Specifically, the device information of the air conditioner is obtained, and the State Grid system audits whether the air conditioner meets the conditions for participating in the power limiting task based on the device information of the air conditioner, to ensure that the air conditioner participating in the power limiting task can support remote control, run well, and be under the household number information.

[0095] S400, the State Grid system audits the location information, the device information, and the power limiting task to determine whether the air conditioner can participate in the power limiting task;

[0096] Specifically, the State Grid system audits whether the location information is correct, whether the activity is limited, and whether the air conditioner device information meets the requirements, and if the audit is passed, the air conditioner can participate in the power limiting task, and if the audit is not passed, the air conditioner cannot participate in the power limiting task.

[0097] Referring to the accompanying Figure 20 As an example, the air conditioner that meets the requirements includes: first, the air conditioner needs to have successfully configured the network; second, the air conditioner supports actively reporting the current running power and the 10-minute power consumption; third, the air conditioner supports remote instructions such as adjusting the power; fourth, the air conditioner device has no fault information; fifth, the air conditioner is used for more than 1 hour per day; and sixth, the air conditioner is installed under the household number selected in the previous step.

[0098] S500, if yes, adjusting the running power of the air conditioner based on the required power reduction quantity of the user allocated by the State Grid system and based on the remote regulation and control strategy of the State Grid system, and determining whether the air conditioner completes the power reduction task.

[0099] S600, the step of obtaining the required power reduction quantity of the user based on the required power reduction quantity of the user allocated by the State Grid system comprises: the State Grid system obtaining the power reduction task of the location information, and obtaining the required total power reduction quantity.

[0100] Participate in the attachment Figure 16 As shown, for example, the State Grid system obtains the power reduction task of the location information, and obtains the required total power reduction quantity of 10000 degrees.

[0101] S700, the State Grid system obtains the number of users in the specified area in the location information, allocates the total power reduction quantity according to the proportion of the number of users to obtain the required power reduction quantity of the specified area, and obtains the number of users participating in the power reduction task in the specified area.

[0102] S800, obtaining the required power reduction quantity of the user according to the required power reduction quantity of the area and the number of users participating in the power reduction task.

[0103] Participate in the attachment Figure 16 As shown, for example, the State Grid system obtains the location information, which has four areas, area 1 has 4000 households, area 2 has 3000 households, area 3 has 2000 households, and area 4 has 1000 households. According to the proportion of the number of households in each area, 4000 degrees of power reduction is required in area 1, 3000 degrees of power reduction is required in area 2, 2000 degrees of power reduction is required in area 3, and 1000 degrees of power reduction is required in area 4. The number of streets in area 1 is obtained as 3, the number of households in the three streets is obtained, and the number of households in street 1 is obtained as 1200, the number of households in street 2 is obtained as 1000, and the number of households in street 3 is obtained as 1800. According to the proportion of the number of households in the three streets, the required power reduction quantity of the three streets is obtained. That is, 300 degrees of power reduction is required in cell 1, 500 degrees of power reduction is required in cell 2, and 400 degrees of power reduction is required in cell 3. The number of households participating in the power reduction task in the three cells is obtained. That is, 100 households in cell 1 participate in the power reduction activity, 200 households in cell 2 participate in the power reduction activity, and 200 households in cell 3 participate in the power reduction activity. Therefore, the required power reduction quantity per household in cell 1 is 3 degrees, the required power reduction quantity per household in cell 2 is 2.5 degrees, and the required power reduction quantity per household in cell 3 is 2 degrees.

[0104] Refer to the attachment Figure 4 As shown, in a preferred embodiment, the step of adjusting the running power of the air conditioner based on the remote regulation and control strategy of the State Grid system comprises:

[0105] S510, acquiring running power of the air conditioner;

[0106] S520, acquiring average running power of the air conditioner in a set time, and obtaining target power of the air conditioner according to the average running power and the required power reduction amount of the user of the State Grid system;

[0107] Specifically, the running power of the air conditioner is acquired every 10 minutes, and the average running power of the air conditioner in 72 hours is obtained according to the running power reported by the air conditioner in 72 hours.

[0108] S530, judging the size of the running power and the target power;

[0109] S540, if the running power is greater than the target power, issuing an instruction to reduce the running power of the air conditioner.

[0110] Preferably, the running power of the air conditioner is adjusted by judging the size of the running power and the target power of the air conditioner, and the State Grid system limits the running power of the air conditioner without affecting the actual effect of the air conditioner.

[0111] Specifically, when the user clicks to participate in the task, the first air conditioner and the second air conditioner are selected to participate in the activity. When the task start time is reached, the server acquires the latest running power of the first air conditioner and the second air conditioner. If the running power is lower than the target power, no instruction to reduce the running power is issued. If the running power is higher than the target power, the server issues an instruction to reduce the running power, so that the running power reaches the target power. If the first air conditioner and the second air conditioner are not in the on state at present, the server listens to the running state of the first air conditioner and the second air conditioner. When the air conditioner is turned on, the above-mentioned step of adjusting the running power is performed again. The server will issue a power reduction instruction at regular intervals. The server will detect the running power of the air conditioner once every hour, and calculate the latest target power, and repeat the step of adjusting the running power of the air conditioner based on the remote control strategy of the State Grid. For example, the running power of the air conditioner is 1000W, and the target power is 700W. The server issues an instruction to reduce the running power, so that the running power of the air conditioner reaches 700W.

[0112] Referring to FIG. 1, Figure 5 In one preferred embodiment, the step of judging whether the air conditioner completes the power reduction task includes:

[0113] S550, acquiring required completion time and completed time of the power reduction task;

[0114] S560, if the running power is less than or equal to the target power within the required completion time, the power reduction task is considered to be completed;

[0115] S570, if the required completion time of the power saving task is greater than or equal to t, and the difference between the running power and the target power is greater than s% of the target power, the power saving task is considered not completed.

[0116] Preferably, the above steps determine whether the power saving task is completed by comparing the required completion time and the completed time of the power saving task, and by comparing the running power and the target power of the air conditioner.

[0117] For example, the required completion time of the power saving task is 24 hours, and if the running power of the air conditioner is less than or equal to the target power within 24 hours, the power saving task is considered completed. In a preferred embodiment, the required completion time of the power saving task is 24 hours, the completed time is 19 hours, the running power is 1000W, and the target power is 600W. That is, there are 5 hours left before the completion time of the task is 24 hours, and the difference between the running power and the target power is 400W, which is greater than 50% of the target power. Therefore, the task cannot be achieved, and it is directly defaulted as abandoned.

[0118] For example, the user selects a power saving task: the air conditioner peak shaving task saves 10 degrees of electricity within the response time period from 08:00:00 on October 11, 2023 to 08:00:00 on October 12, 2023, and is rewarded with 150 points and a 10 yuan electricity bill discount coupon. When the user clicks to participate in the task, the first air conditioner and the second air conditioner are selected to participate in the activity, and each second air conditioner needs to save 5 degrees of electricity within 4 hours on average. Since the first air conditioner and the second air conditioner are already connected, the running power is reported every 10 minutes. According to the running power reported by the air conditioner within the last 72 hours, the average running power of the air conditioner is obtained, and the running power of the first air conditioner and the second air conditioner under normal operation is obtained as 1000W and 800W respectively. The target power is obtained as: the running power of the first air conditioner needs to be adjusted to 790W and run for 24 hours, and the running power of the second air conditioner needs to be adjusted to 590W and run for 24 hours.

[0119] Referring to FIG. 1, Figure 6 In a preferred embodiment, based on the remote control strategy of the State Grid, after the step of determining whether the air conditioner completes the power saving task, the method further comprises:

[0120] S900, if the power saving task is completed, the degree of electricity saved by the air conditioner is obtained, the completion rate of the power saving task is calculated, and the reward is issued based on the completion rate.

[0121] Specifically, by performing the power saving task issued by the State Grid system, the user limits the running efficiency of the air conditioner, not only achieving the purpose of saving electricity, but also increasing the user's participation and enthusiasm.

[0122] Specifically, if the completion rate is 100%, the full amount of the reward is paid; if the completion rate is less than 50%, the task is considered to be not completed, and the reward is cancelled; if the completion rate is between 50% and 100%, the reward is paid according to the completion rate. For example, if the reward for the power saving task is saving 10 degrees of electricity, 150 points of reward and 10 yuan of electricity deduction coupon, if a total of 6 degrees of electricity is saved, the completion rate is 60%, and the reward points to be paid are 90 points and 6 yuan of electricity deduction coupon.

[0123] Referring to the accompanying drawings Figure 14 As shown, for example, the user selects the power saving task: the air conditioner peak shaving task saves 10 degrees of electricity in the response time period from 08:00:00 on October 11, 2023 to 08:00:00 on October 12, 2013, and the reward is 150 points of reward and 10 yuan of electricity deduction coupon. When the user clicks to participate in the task, the first air conditioner and the second air conditioner are selected to participate in the activity. When the task time point is reached, whether 5 degrees of electricity is saved is calculated according to the power. For example, the first air conditioner reports the power every 10 minutes when the task starts, the power reported in the first 10 minutes is 800 W, and the power reported in the second 10 minutes is 760 W. The 10-minute air conditioner operating power is 780 W, and the 10-minute saved electricity is (1000-780) W / 1000 W*1 / 6. The cumulative calculation is performed in this way, and if 5 degrees of electricity is saved in 24 hours, the full amount of the reward is paid. If the completion rate is less than 50%, the task is considered to be not completed, and the reward is cancelled. If the completion rate is between 50% and 100%, the reward is paid according to the completion rate.

[0124] Referring to the accompanying drawings Figure 7 As shown, the application also provides a control device, the control device 100 implements the control method for intercommunication between the air conditioner and the State Grid system provided by any of the above embodiments, the control device 100 includes an acquisition module 110, the acquisition module 110 is used for acquiring the position information of the user, the user number information and the device information of the air conditioner; a judgment module 120, the judgment module 120 is used for judging whether the air conditioner can participate in the power saving task and judging whether the air conditioner completes the power saving task; an execution module 130, the execution module 130 is used for adjusting the operating power of the air conditioner based on the remote regulation and control strategy of the State Grid.

[0125] Specifically, the control device 100 acquires the position information of the user, the user number information and the device information of the air conditioner through the acquisition module 110, judges whether the air conditioner can participate in the power saving task and judges whether the air conditioner completes the power saving task through the judgment module 120, and the execution module 130 is used for adjusting the operating power of the air conditioner based on the remote regulation and control strategy of the State Grid.

[0126] The application further provides an air conditioner, comprising a computer readable storage medium storing a computer program and a processor, wherein the computer program is read and run by the processor, and the air conditioner implements the control method for intercommunication between the air conditioner and the State Grid system according to any one of the above embodiments.

[0127] The above description is intended to be illustrative and not restrictive, and those ordinarily skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present disclosure. Moreover, the above examples (or one or more solutions thereof) can be used in combination with each other, and these embodiments can be combined with each other in various combinations or arrangements.

Claims

1. A control method for interworking of an air conditioner with a State Grid system, characterized in that, The application is applied to an electronic device, the electronic device is in communication connection with at least one air conditioner, the air conditioner is in intercommunication with a state grid system, and the control method comprises the following steps: Obtaining position information of a user to obtain a power reduction task corresponding to the position information; Receiving household number information input by the electronic device or automatically obtaining the household number information, and binding the electronic device based on the household number information; Obtaining device information of the air conditioner participating in the power reduction task; The state grid system audits the position information, the device information and the power reduction task, and judges whether the air conditioner can participate in the power reduction task; If yes, adjusting the operating power of the air conditioner based on the power reduction quantity required by the user distributed by the state grid system and a remote control strategy of the state grid, and judging whether the air conditioner completes the power reduction task; The step of adjusting the operating power of the air conditioner based on the power reduction quantity required by the user distributed by the state grid system comprises the following steps: The state grid system obtains the power reduction task of the position information, and obtains a total required power reduction quantity; The state grid system obtains the number of users in a specified area in the position information, distributes the total required power reduction quantity according to the proportion of the number of users to obtain a required power reduction quantity of the specified area, and obtains the number of users participating in the power reduction task in the specified area; According to the required power reduction quantity of the specified area and the number of users participating in the power reduction task, the required power reduction quantity of the user is obtained.

2. The control method of claim 1, wherein, After the step of obtaining the position information of the user to obtain the power reduction task corresponding to the position information, the following steps are further included: Sending a signing request of a relevant informed agreement to the electronic device; Receiving confirmation signing information generated by the electronic device according to the signing request; According to the confirmation signing information, at least one power reduction task is selected to enter.

3. The control method of claim 1, wherein, The step of automatically obtaining the household number information comprises the following steps: Receiving a mobile phone number and a verification code input by the electronic device; Based on the mobile phone number and the verification code, the corresponding household number information returned by the state grid system is received; Based on the position information, the corresponding household number information is obtained.

4. The control method of claim 1, wherein, The device information of the air conditioner participating in the power reduction task comprises at least one of air conditioner network configuration information, current operating power, power consumption efficiency, whether to support remote instruction setting, operating state, daily use time length, and air conditioner installation household number.

5. The control method of claim 1, wherein, The step of adjusting the operating power of the air conditioner based on the remote control strategy of the state grid comprises the following steps: Obtaining the operating power of the air conditioner; Obtaining the average operating power of the air conditioner within a set time, obtaining the target power of the air conditioner according to the average operating power and the power reduction quantity required by the user distributed by the state grid system; Judging the size of the operating power and the target power; If the operating power is greater than the target power, an instruction to reduce the operating power of the air conditioner is issued.

6. The control method of claim 5, wherein, The step of judging whether the air conditioner completes the power reduction task comprises the following steps: Obtaining the required completion time and the completed time of the power reduction task; If the operating power is less than or equal to the target power within the required completion time, the power reduction task is considered to be completed. If the completed time is greater than or equal to the required completed time, and the difference between the running power and the target power is greater than s% of the target power, it is considered that the power limiting task is not completed.

7. The control method of claim 1, wherein, After the step of judging whether the air conditioner completes the power limiting task based on the remote control strategy of the State Grid, the method further comprises: If the power limiting task is completed, the degree of electricity saved by the air conditioner is obtained, the completion rate of the power limiting task is calculated, and a reward is issued based on the completion rate.

8. A control device characterized by comprising: The control device implements the control method of the air conditioner and the State Grid system interworking as claimed in any one of claims 1-7, and the control device comprises: an acquisition module, configured to acquire the location information of the user, the user number information, and the equipment information of the air conditioner; a judgment module, configured to judge whether the air conditioner can participate in the power limiting task and whether the air conditioner completes the power limiting task; an execution module, configured to adjust the running power of the air conditioner based on the remote control strategy of the State Grid.

9. An air conditioner characterized by comprising: comprise: a computer readable storage medium and a processor, the computer readable storage medium storing a computer program, and when the computer program is read and run by the processor, the air conditioner implements the control method of the air conditioner and the State Grid system interworking as claimed in any one of claims 1-7.

Citation Information

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