Energy-saving diagnosis management method and apparatus for smart park, and electronic device

The smart park energy-saving diagnostic management system monitors and adjusts the control data of energy-consuming equipment in real time, solving the problem of precise control of energy management in smart parks and realizing energy-saving use.

WO2025241758A1PCT designated stage Publication Date: 2025-11-27THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
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Patent Information

Application Number
PCT/CN2025/087954
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-05-24
Filing Date
2025-04-09
Publication Date
2025-11-27

AI Technical Summary

Technical Problem

Energy management in smart parks is difficult to control precisely, leading to energy waste.

Method used

The smart park energy-saving diagnosis and management system utilizes a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module, and a communication module to monitor and diagnose the energy consumption of various spaces within the park in real time. Based on outdoor environmental data and user needs, the system adjusts the control data of energy-consuming equipment to ensure that it remains within the recommended energy-saving control range.

Benefits of technology

This allows for more precise control of energy use and reduces energy waste while meeting user needs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

An energy-saving diagnosis management method and apparatus for a smart park, and an electronic device. The method comprises: when an energy-saving diagnosis module detects that energy consumption per unit time in any space is greater than target energy consumption in the corresponding space, a communication module sending an acquisition instruction for control data of energy consumption devices in the current space to a control module for the energy consumption devices, wherein the corresponding control data after each startup of the energy consumption devices is generated by a user performing a setting operation by means of an interaction unit of the control module; on the basis of current outdoor environment data and the acquired control data of the energy consumption devices in the current space, determining whether there is a target energy consumption device of which the control data exceeds a preset target control data range among the currently started energy consumption devices, wherein the target control data range is an energy-saving control recommendation data range preset correspondingly on the basis of different outdoor environment data; and when there is a target energy consumption device, sending a new control instruction to the control module, so that the control data of the target energy consumption device is within the target control data range.
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Description

A smart park energy-saving diagnosis management method and device and electronic equipment TECHNICAL FIELD

[0001] The present application relates to the technical field of smart park management, in particular to a smart park energy-saving diagnosis management method and device, electronic equipment, computer readable storage medium and computer program product. BACKGROUND

[0002] A smart park refers to a region that uses modern information technologies such as the Internet of Things, big data, cloud computing, artificial intelligence, etc. to integrate and intelligently manage multiple aspects such as energy use, safety monitoring, environmental protection, etc. in the park, and intelligent management is the core of a smart park. Since a smart park contains a large number of energy-consuming devices, the management is difficult and the management level varies, which to some extent causes energy waste. Therefore, it is urgent to propose a smart park energy-saving diagnosis management method to intelligently manage the energy use while meeting the user's use requirements. SUMMARY

[0003] Therefore, the embodiments of the present application provide a smart park energy-saving diagnosis management method and device and electronic equipment to intelligently manage the energy use while meeting the user's use requirements to achieve energy-saving use of energy.

[0004] According to a first aspect, embodiments of the present application provide a smart park energy-saving diagnosis management method, applied to a smart park energy-saving diagnosis management system, the smart park energy-saving diagnosis management system comprising a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module, and a communication module; the energy-saving diagnosis module is configured to diagnose the energy consumption of different spaces in the park based on the energy consumption data collected by the front-end data acquisition module; the park display module is configured to display each space in the park and display the current energy consumption; each space in the smart park is provided with a control module of the energy-consuming equipment in the space; the method comprises: when the energy-saving diagnosis module detects that the energy consumption of any space unit in a time period is greater than the target energy consumption in the corresponding space, the communication module sends an acquisition instruction of the current space energy-consuming equipment control data to the control module of the energy-consuming equipment; the control data corresponding to each start of the energy-consuming equipment is generated by the user setting operation through the interaction unit of the control module; according to the current outdoor environment data and the obtained current space energy-consuming equipment control data, it is determined whether there is a target energy-consuming equipment whose control data exceeds the target control data range which is set in advance according to different outdoor environment data; when there is a target energy-consuming equipment, a new control instruction is sent to the control module to make the control data of the target energy-consuming equipment within the target control data range.

[0005] Optionally, the smart park energy-saving diagnosis management system further comprises an outdoor environment data acquisition module configured to detect temperature data and illumination intensity data in the current park; the central management module is provided with a storage unit configured to store the energy-saving control recommended data range of the energy-consuming equipment in the space located in different directions under different outdoor environment data; the determination of whether there is a target energy-consuming equipment whose control data exceeds the target control data range set in advance according to the current outdoor environment data and the obtained current space energy-consuming equipment control data comprises: according to the current outdoor temperature data and illumination intensity data collected by the outdoor environment data acquisition module and the direction data of the space with excessive energy consumption, the energy-saving control recommended data range of the temperature adjusting equipment and the lighting equipment in the space is matched from the storage unit; according to the energy-saving control recommended data range and the obtained control data of the temperature adjusting equipment and the lighting equipment in the current space, it is determined whether the temperature adjusting equipment and the lighting equipment started in the current space are target energy-consuming equipment.

[0006] Optionally, when there is a target energy-consuming device, after sending a new control instruction to the control module so that the control data of the target energy-consuming device is within the target control data range, the method further comprises: when detecting that the control module receives a new round of user setting operation on the control data of the target energy-consuming device, controlling the target energy-consuming device to run according to the user setting data.

[0007] Optionally, the method further comprises: when a new round of setting data exceeds the corresponding target control data under the current outdoor environment data, sending an energy consumption warning prompt to the management end of the corresponding space, the energy consumption warning prompt comprising the degree of energy consumption exceeding the standard and the corresponding expected energy consumption cost.

[0008] Optionally, after sending the energy consumption warning prompt to the management end of the corresponding park space, the method further comprises: responding to the monitoring operation of the communication request of the management end; when monitoring the communication request of the management end, determining the type of the communication request; when the type of the communication request is an energy-consuming device use consultation type, sending a data acquisition request to the management end, the data acquisition request corresponding to a request data type comprising: the number of people in the current space and the location of the people; based on the number of people in the current space and the location of the people, sending an energy-saving control recommendation scheme of lighting devices and temperature adjustment devices to the management end.

[0009] Optionally, the front-end data acquisition module comprises an infrared camera acquisition module for detecting whether there is anyone in the current space; the method further comprises: when detecting that someone enters the space, generating an energy-saving use strategy of the energy-consuming devices in the current space according to the seat positions in the current space and the number of people entering the space; displaying the energy-saving use strategy in the display interface of the control module.

[0010] According to a second aspect, embodiments of the present application provide a smart park energy-saving diagnosis management device applied to a smart park energy-saving diagnosis management system, the smart park energy-saving diagnosis management system comprising a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module and a communication module; the energy-saving diagnosis module is used for diagnosing the energy consumption of different spaces in the park based on the energy consumption data collected by the front-end data acquisition module, the park display module is used for displaying each space in the park and displaying the current energy consumption, and each space in the smart park is provided with a control module of the energy-consuming devices in the space; the device comprises:

[0011] The first sending module is configured to send an acquisition instruction of the current space energy consumption equipment control data to a control module of the energy consumption equipment through the communication module when the energy saving diagnosis module detects that the energy consumption in any space unit duration is greater than the target energy consumption in the corresponding space, and the corresponding control data of the energy consumption equipment after each start is generated by the user setting operation through an interactive unit of the control module.

[0012] The first determining module is configured to determine whether there is a target energy consumption equipment whose control data exceeds a target control data range in the currently started energy consumption equipment according to the current outdoor environment data and the acquired current space energy consumption equipment control data, and the target control data range is a recommended energy saving control data range set in advance according to different outdoor environment data.

[0013] The second sending module is configured to send a new control instruction to the control module when there is a target energy consumption equipment, so that the control data of the target energy consumption equipment is within the target control data range.

[0014] According to a third aspect, an electronic device is provided, including a memory and a processor, which are in communication connection with each other, the memory stores computer instructions, and the processor executes the computer instructions to perform the intelligent park energy saving diagnosis management method of the first aspect or any optional implementation manner of the first aspect.

[0015] According to a fourth aspect, a computer readable storage medium is provided, which stores computer instructions, and the computer instructions are used to make a computer execute the intelligent park energy saving diagnosis management method of the first aspect or any optional implementation manner of the first aspect.

[0016] According to a fifth aspect, a computer program product is provided, which includes computer instructions, and the computer instructions are used to make a computer execute the intelligent park energy saving diagnosis management method of the first aspect or any corresponding implementation manner thereof.

[0017] The energy-saving diagnosis management method of the smart park provided by the embodiment of the present application is applied to an energy-saving diagnosis management system of a smart park, which comprises a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module and a communication module; the energy-saving diagnosis module is used to diagnose the energy consumption in different spaces in the park based on the energy consumption data collected by the front-end data acquisition module; the park display module is used to display each space in the park and the current energy consumption; each space in the smart park is provided with a control module of the energy consumption equipment in the space; the central management module is in communication connection with the energy-saving diagnosis module, the front-end data acquisition module, the park display module and the communication module, and is used to receive data and issue control instructions; when the energy-saving diagnosis module detects that the energy consumption in any space unit time is greater than the target energy consumption in the corresponding space, the communication module sends an acquisition instruction of the current energy consumption equipment control data in the space to the control module of the energy consumption equipment; the corresponding control data of the energy consumption equipment after each start is generated by the setting operation of the user through the interactive unit of the control module; according to the current outdoor environment data and the acquired current energy consumption equipment control data in the space, it is determined whether there is a target energy consumption equipment whose control data exceeds the target control data range set in advance in the currently started energy consumption equipment; the target control data range is the energy-saving control recommended data range set in advance according to different outdoor environment data; when there is a target energy consumption equipment, a new control instruction is sent to the control module to make the control data of the target energy consumption equipment in the target control data range; by setting the energy consumption equipment control module in each space, the user can set according to the demand after entering the space to meet the user's demand for the use of the electrical appliances in the space; when the energy-saving diagnosis module detects that the energy consumption of any space is over standard, in combination with the current outdoor environment data, the energy consumption equipment control data in the over-standard energy consumption space and the pre-determined energy-saving control recommended data range, it is determined whether there is a target energy consumption equipment whose control data does not meet the requirements; when there is a target energy consumption equipment, a control instruction is sent to make the control data of the target energy consumption equipment in the target control data range that meets the energy-saving requirements, so as to more accurately control the use of energy while meeting the user's use demand as much as possible. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0019] Fig. 1 is a flowchart of the energy-saving diagnosis management method of the smart park according to the embodiment of the present application;

[0020] Fig. 2 is a structural block diagram of a smart park energy-saving diagnosis management device according to an embodiment of the present application;

[0021] Fig. 3 is a schematic diagram of the hardware structure of an electronic device according to an embodiment of the present application. DETAILED DESCRIPTION

[0022] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0023] According to an embodiment of the present application, an embodiment of a smart park energy-saving diagnosis management method is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described herein can be executed in an order different from that shown herein.

[0024] In the present embodiment, a smart park energy-saving diagnosis management method is provided, which is applied to a smart park energy-saving diagnosis management system. The smart park energy-saving diagnosis management system includes a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module, and a communication module. The energy-saving diagnosis module is configured to diagnose the energy consumption in different spaces in a park based on the energy consumption data acquired by the front-end data acquisition module. The park display module is configured to display each space in the park and show the current energy consumption. The park display module can be arranged in a park management center so that the park managers can observe the energy consumption of each space in the park in a timely manner. Each space in the smart park is provided with a control module of the energy-consuming equipment in the space. The control module can be a fixed control module arranged on the wall of the space or a mobile control module such as a remote controller. The front-end data acquisition module can be any power monitor that can acquire the power usage of the space. In the present embodiment, the front-end data acquisition module can be arranged in each space. As shown in Fig. 1, the flow includes the following steps:

[0025] S101, when the energy-saving diagnosis module detects that the energy consumption in any space unit time is greater than the target energy consumption in the corresponding space, the communication module sends an acquisition instruction of the current space energy-consuming equipment control data to the control module of the energy-consuming equipment. The corresponding control data of the energy-consuming equipment after each start is generated by the user setting operation through the interaction unit of the control module.

[0026] Exemplarily, the energy-consuming device in each space is automatically controlled to be turned off by the system when the space is not occupied, and when it is detected that the space is occupied, the control data of the energy-consuming device is set by manual control of the control module, and the energy-saving diagnosis module can be enabled when it is detected that the space is occupied. The energy-saving diagnosis module is in communication connection with the front-end data acquisition module to diagnose the energy consumption of each space. The target energy consumption of each space can be set in advance according to the number and attribute parameters (such as type, power, etc.) of the energy-consuming devices in each space, and according to the park energy-saving use standard, the maximum energy consumption per unit time for each space in the park is set under the condition that the user's use demand is met and the energy-saving effect is maximized. The size of the unit time is not limited in the embodiment of the application. In order to ensure the user's experience, the unit time can be selected as one hour in the embodiment of the application. The energy-consuming devices of each space can include lighting devices, temperature regulating devices, etc. The type of the energy-consuming devices of each space is not limited in the embodiment of the application, and the energy consumption can be calculated by collecting the running time combined with the running power. When the energy-saving diagnosis module detects that the energy consumption of any space per unit time is greater than the target energy consumption in the corresponding space, the control module of the energy-consuming device can be sent an acquisition instruction of the current space energy-consuming device control data through the communication module, and the control data of each energy-consuming device set by the user can be known by sending the acquisition instruction.

[0027] S102, according to the current outdoor environment data and the acquired current space energy-consuming device control data, it is determined whether there is a target energy-consuming device whose control data exceeds the pre-set target control data range in the currently opened energy-consuming device, and the target control data range is the energy-saving control recommended data range set in advance according to different outdoor environment data.

[0028] Exemplarily, by acquiring the control data set by the user in advance for the energy-consuming device, the use demand of the user can be known, such as that the current outdoor environment temperature is high, which leads to that the user sets a lower temperature for the temperature adjusting device, and then increases the use power of the temperature adjusting device, and then increases the energy consumption of the space. The outdoor environment data can include outdoor environment temperature data, outdoor light intensity data, etc., which can be obtained by communicating with a meteorological system; the higher the outdoor environment temperature is, the greater the use demand of the user for the temperature adjusting device is, and the lower the outdoor light intensity is, which leads to that the user increases the use demand for the indoor lighting device, so different energy-saving control recommendation data ranges are set for different outdoor environment data, such as that when the outdoor environment temperature is 35 degrees, the recommended temperature range of the indoor temperature adjusting device can be set to 25-27 degrees, etc. The energy-saving control recommendation data range corresponding to the outdoor environment data is matched by acquiring the outdoor environment data, and whether the target energy-consuming device exists in the opened energy-consuming and device is determined according to the matched energy-saving control recommendation data range.

[0029] S103, when the target energy-consuming device exists, a new control instruction is sent to the control module, so that the control data of the target energy-consuming device is in the target control data range.

[0030] Exemplarily, the target control data range can be a best range value set to meet the use demand of the current outdoor environment, and when the target energy-consuming device exists, the control data contained in the control instruction sent to the control module can be any value in the best range value, and the size of the value can be determined according to the current outdoor temperature; when the outdoor temperature is high, in order to ensure the use experience of the user, the lowest temperature value in the range value can be selected as the new control data of the temperature adjusting device, and when the outdoor light intensity is low, the power of the lighting device can be increased as much as possible; the indoor environment parameter can be further combined to determine, such as for the temperature data, after the energy-saving control recommendation data range of the temperature adjusting device is determined according to the current outdoor environment data, the best control data of the temperature adjusting device can be further determined by further combining the size of the current indoor environment temperature; when the indoor environment temperature is high, the lowest temperature in the energy-saving control recommendation data range can be selected as the control data of the temperature adjusting device as much as possible.

[0031] The intelligent park energy-saving diagnosis management method provided by the embodiment of the present application can make the user set the space according to the demand to meet the user's use demand for the electrical appliances in the space after entering the space, and when the energy consumption of any space is detected to be excessive by the energy-saving diagnosis module, whether there is a target energy-consuming device whose control data does not meet the requirement is determined in combination with the current outdoor environment data, the energy-consuming device control data in the space whose energy consumption is excessive, and the pre-determined energy-saving control recommendation data range, and when there is a target energy-consuming device, the control data of the target energy-consuming device is made to be in the target control data range that meets the energy-saving requirement by sending a control instruction, so that the use of energy is more accurately controlled while the user's use demand is met as much as possible.

[0032] As an optional implementation of the embodiment of the present application, the intelligent park energy-saving diagnosis management system further comprises an outdoor environment data acquisition module configured to detect temperature data and illumination intensity data in the current park, which can be arranged in the central area of the park or multiple positions in the park.

[0033] Step 102 comprises: according to the current outdoor temperature data and illumination intensity data acquired by the outdoor environment data acquisition module and the position data of the space whose energy consumption is excessive, matching the energy-saving control recommendation data range of the temperature adjusting device and the lighting device in the space from the storage unit; and determining whether the temperature adjusting device and the lighting device turned on in the current space are target energy-consuming devices according to the energy-saving control recommendation data range and the control data of the temperature adjusting device and the lighting device in the current space. By pre-storing the energy-saving control recommendation data range of the energy-consuming device corresponding to different outdoor environment temperatures and different positions of the space, the error estimation of the illumination intensity and other parameters of the space at different positions due to shielding and other conditions at different time periods can be avoided, thereby affecting the user's use experience. The position of the space whose energy consumption is excessive per unit time can be determined by the control module reporting its physical position after communicating with the control module corresponding to the space through the communication module.

[0034] As an optional implementation of the embodiment of the present application, when there is a target energy-consuming device, a new control instruction is sent to the control module to make the control data of the target energy-consuming device be in the target control data range, and the method further comprises: when it is detected that the control module receives a new round of user's setting operation on the control data of the target energy-consuming device, controlling the target energy-consuming device to operate according to the user's setting data.

[0035] Exemplarily, when the user makes a new round of setting operation on the target energy-consuming device through the control module, it indicates that the user cannot satisfy the user's use demand for the control parameter set by the system referring to the energy-saving control recommended data range, and therefore, in order to ensure the user's use experience control, the central management module no longer participates in further intelligentization. For the temperature regulating device, when the intelligentization control through the central management module cannot satisfy the user's use experience, a room sealing property viewing prompt information can be sent to the management end of the corresponding space to avoid the waste of energy caused by the wrong use of the temperature regulating device.

[0036] As an optional implementation manner of the embodiment of the present application, the method further comprises: when the new round of setting data exceeds the corresponding target control data under the current outdoor environment data, sending an energy consumption warning prompt to the management end of the corresponding space, wherein the energy consumption warning prompt comprises an energy consumption exceeding degree and a corresponding expected energy consumption cost. By sending the energy consumption warning prompt to the management end of the space, the space management end can be reminded to timely intervene in the energy consumption of the space, such as determining whether the space has a situation that the use has been stopped but the energy-consuming device has not been turned off in time.

[0037] As an implementation manner of the embodiment of the present application, after sending the energy consumption warning prompt to the management end of the corresponding space, the method further comprises: responding to a monitoring operation of a communication request of the management end; when the communication request of the management end is monitored, determining the type of the communication request; when the type of the communication request is an energy-consuming device use consultation type, sending a data acquisition request to the management end, wherein the request data type corresponding to the data acquisition request comprises: the number of people in the current space and the positions of the people; based on the number of people in the current space and the positions of the people, sending an energy-saving control recommended scheme of the lighting device and the temperature regulating device to the management end.

[0038] Exemplarily, when the space with excessive energy consumption is still in use and there is an over-standard situation, after sending the energy consumption warning prompt to the management end of the corresponding space, a monitoring operation of a communication request of the management end can be enabled, and when the type of the management end request is determined to be an energy-consuming device use consultation type, since the central management module no longer participates in intelligent intervention in order to ensure the user's use experience of self-setting, a request for acquiring the number of people in the current space and the positions of the people can be sent to the management end, and based on the acquired number of people in the current space and the positions of the people and in combination with the geographical positions of the energy-consuming devices in the current space, an energy-saving control recommended scheme of the lighting device and the temperature regulating device can be sent to the management end for the management end to set a reference. In the embodiment of the present application, the energy-saving control recommended scheme can comprise a scheme of starting one or more lighting devices and / or temperature regulating devices in a corresponding direction or starting the corresponding energy-consuming device according to an interval length in a targeted manner to avoid energy waste as much as possible.

[0039] As an optional implementation of the embodiment of the application, the front-end data acquisition module comprises an infrared camera acquisition module for detecting whether there is a person in the current space; the method further comprises: when it is detected that a person enters the space, generating an energy-saving use strategy of the energy-consuming device in the current space according to the seat position in the current space and the number of personnel entering the space; and displaying the energy-saving use strategy in the display interface of the control module.

[0040] Exemplarily, when it is detected that there is no personnel use in the space, the energy-consuming device in the space is timely closed through the communication module and the control module, and when it is detected that a new batch of personnel enters the space, the seat position in the space can be determined through the pre-acquired BIM model in the space, and further combined with the seat position quantity and the number of personnel that can enter the space to generate an energy-saving use strategy of the energy-consuming device in the current space, wherein the number of personnel that can enter the space can give a plurality of possible ranges, and different range values correspond to the setting of corresponding energy-saving use strategies, and the user can adaptively select through the display interface according to the number of personnel known by himself; for example, the seat position in the space is set at a relatively window-facing position in the space and the number of seats is 10, the energy-saving use strategy when 1-5 people use, the energy-saving use strategy when 6-10 people use, and the energy-saving use strategy when more than 10 people use can be set, and these strategies are displayed in the display interface of the control module so that the user can select and set the control data with the energy-saving goal as the guide when setting through the control module, such as the energy-saving strategy given when 1-5 people use is to start the air conditioner in the area opposite to the seat position, and the air conditioner temperature given in combination with the outdoor temperature can also be further prompted.

[0041] As an optional implementation of the embodiment of the application, the intelligent park energy-saving diagnosis management system further comprises a space state acquisition module for acquiring the space size change of the space where it is located, which can be a range finder in the embodiment of the application, and the space size is acquired according to the target interval time length, and the acquired size is transmitted to the central management module, so that the central management module can timely master the space change in the park and timely update the energy-saving strategy, avoiding that the space user modifies the space pattern by himself, affecting the effective use of the energy-saving strategy.

[0042] In the embodiment, an intelligent park energy-saving diagnosis management device is also provided, which is used to implement the above-mentioned embodiments and preferred embodiments, and will not be described again. The term "module" used below can be a combination of software and / or hardware that realizes a predetermined function. Although the device described in the following embodiments is preferably realized in software, hardware, or a combination of software and hardware is also possible and conceived.

[0043] The embodiment provides a smart park energy-saving diagnosis management device, which is applied to a smart park energy-saving diagnosis management system. The smart park energy-saving diagnosis management system comprises a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module and a communication module. The energy-saving diagnosis module is used for diagnosing energy consumption in different spaces in the park based on energy consumption data collected by the front-end data acquisition module. The park display module is used for displaying each space in the park and displaying current energy consumption. Each space in the smart park is provided with a control module of energy-consuming equipment in the space. As shown in FIG. 2, it comprises:

[0044] The first sending module 201 is used for sending an acquisition instruction of current space energy-consuming equipment control data to the control module of the energy-consuming equipment through the communication module when the energy-saving diagnosis module detects that energy consumption in any space unit time is greater than target energy consumption in the corresponding space. The corresponding control data of the energy-consuming equipment after each start is generated by setting operation of a user through an interactive unit of the control module.

[0045] The first determination module 202 is used for determining whether there is a target energy-consuming equipment whose control data exceeds a target control data range which is a pre-set energy-saving control recommended data range according to current outdoor environment data and the acquired current space energy-consuming equipment control data among the current started energy-consuming equipment.

[0046] The second sending module 203 is used for sending a new control instruction to the control module when there is a target energy-consuming equipment, so that the control data of the target energy-consuming equipment is in the target control data range. For details, see the related description of the above method embodiment, which will not be repeated here.

[0047] The smart park energy-saving diagnosis management device in the embodiment is presented in the form of a functional unit. The unit here refers to an ASIC circuit, a processor and a memory executing one or more software or fixed programs, and / or other devices that can provide the above functions.

[0048] The energy-saving diagnosis management device for the smart park provided by the embodiment can make the user set the space according to the demand after entering the space to meet the user's use demand for the electrical appliances in the space, and when the energy-saving diagnosis module detects that the energy consumption of any space is over standard, the current outdoor environment data, the energy consumption equipment control data in the space with over-standard energy consumption and the pre-determined energy-saving control recommended data range are combined to determine whether there is a target energy consumption equipment whose control data does not meet the requirement, and when there is a target energy consumption equipment, the control instruction is sent to make the control data of the target energy consumption equipment in the target control data range that meets the energy-saving requirement, so that the use demand of the user is met as much as possible and the use of energy is more accurately controlled.

[0049] As an optional embodiment of the present application, the energy-saving diagnosis management system for the smart park further comprises an outdoor environment data acquisition module configured to detect temperature data and illumination brightness data in the current park, and a storage unit is arranged in the central management module and configured to store energy-saving control recommended data ranges of energy consumption equipment in spaces at different orientations under different outdoor environment data; the first determination module further comprises a matching unit configured to match the energy-saving control recommended data ranges of the temperature adjusting equipment and the lighting equipment in the space from the storage unit according to the current outdoor temperature data and the illumination brightness data acquired by the outdoor environment data acquisition module and the orientation data of the space with over-standard energy consumption; and a determination unit configured to determine whether the temperature adjusting equipment and the lighting equipment turned on in the current space are target energy consumption equipment according to the energy-saving control recommended data ranges and the control data of the temperature adjusting equipment and the lighting equipment acquired in the current space.

[0050] As an optional embodiment of the present application, the device further comprises a control module configured to control the target energy consumption equipment to operate according to the setting data of the user when it is detected that the control module receives a new round of setting operation of the control data of the target energy consumption equipment by the user.

[0051] As an optional embodiment of the present application, the device further comprises a third sending module configured to send an energy consumption warning prompt to the management end of the corresponding space when the new round of setting data exceeds the corresponding target control data under the current outdoor environment data, wherein the energy consumption warning prompt comprises the over-standard energy consumption degree and the corresponding expected energy consumption cost.

[0052] As an optional embodiment of the present application, the device further comprises: a monitoring module, configured to respond to the monitoring operation of the management terminal communication request; a second determining module, configured to determine the type of the communication request when the management terminal communication request is monitored; a fourth sending module, configured to send a data acquisition request to the management terminal when the type of the communication request is the energy-consuming equipment use consultation type, and the request data type corresponding to the data acquisition request comprises the number of people in the current space and the positions of the people; and a fifth sending module, configured to send an energy-saving control recommendation scheme of the lighting equipment and the temperature adjusting equipment to the management terminal based on the number of people in the current space and the positions of the people.

[0053] As an optional embodiment of the present application, the front-end data acquisition module comprises an infrared camera acquisition module, configured to detect whether there is a person in the current space; the device further comprises: a generating module, configured to generate an energy-saving use strategy of the energy-consuming equipment in the current space according to the seat positions in the current space and the number of people entering the space when it is detected that a person enters the space; and a display module, configured to display the energy-saving use strategy in the display interface of the control module.

[0054] Further function descriptions of the above modules are the same as those of the corresponding embodiments, and will not be described here.

[0055] The embodiment of the present application further provides an electronic device with the intelligent park energy-saving diagnosis management device shown in FIG. 2.

[0056] Please refer to FIG. 3, which is a structural schematic diagram of a device provided by an optional embodiment of the present application. As shown in FIG. 3, the device can comprise: at least one processor 601, such as a central processing unit (CPU), at least one communication interface 603, a memory 604, and at least one communication bus 602. The communication bus 602 is configured to realize the connection and communication among the components. The communication interface 603 can comprise a display and a keyboard. The optional communication interface 603 can further comprise a standard wired interface and a wireless interface. The memory 604 can be a high-speed volatile random access memory (RAM), or a non-volatile memory, such as at least one disk memory. The memory 604 can optionally be at least one storage device located away from the aforementioned processor 601. The processor 601 can be combined with the device described in FIG. 2. The memory 604 stores an application program, and the processor 601 invokes the program code stored in the memory 604 to execute any of the above method steps.

[0057] The communication bus 602 can be a peripheral component interconnect (PCI) bus or an extended industry standard architecture (EISA) bus, etc. The communication bus 602 can be divided into an address bus, a data bus, a control bus, etc. For ease of representation, only one thick line is shown in FIG. 3, but it does not mean that there is only one bus or only one type of bus.

[0058] The memory 604 can include a volatile memory such as a random-access memory (RAM), and can also include a non-volatile memory such as a flash memory, a hard disk drive (HDD), or a solid-state drive (SSD). The memory 604 can also include a combination of the above-mentioned types of memories.

[0059] The processor 601 can be a central processing unit (CPU), a network processor (NP), or a combination of the CPU and the NP.

[0060] The processor 601 can further include a hardware chip. The hardware chip can be an application-specific integrated circuit (ASIC), a programmable logic device (PLD), or a combination thereof. The PLD can be a complex programmable logic device (CPLD), a field-programmable gate array (FPGA), a generic array logic (GAL), or any combination thereof.

[0061] Optionally, the memory 604 is further configured to store program instructions. The processor 601 can invoke the program instructions to implement the intelligent park energy-saving diagnosis management method as shown in the embodiment of FIG. 1.

[0062] The embodiment of the present application also provides a non-transitory computer storage medium, which stores computer executable instructions, and the computer executable instructions can execute the processing method of the smart park energy-saving diagnosis management method in any method embodiment described above. The storage medium can be a disk, an optical disk, a read-only memory (ROM), a random access memory (RAM), a flash memory, a hard disk drive (HDD) or a solid-state drive (SSD), etc. The storage medium can also include a combination of the above types of memories.

[0063] Part of the present application can be applied as a computer program product, for example, computer program instructions, when executed by a computer, the operation of the computer can invoke or provide the method and / or technical solutions according to the present application. Those skilled in the art should understand that the form of computer program instructions in a computer readable medium includes but is not limited to source files, executable files, installation package files, etc. Correspondingly, the way of executing the computer program instructions by the computer includes but is not limited to: the computer directly executes the instructions, or the computer compiles the instructions and then executes the corresponding compiled program, or the computer reads and executes the instructions, or the computer reads and installs the instructions and then executes the corresponding installed program. Here, the computer readable medium can be any available computer readable storage medium or communication medium accessible to the computer.

[0064] Although the embodiments of the present application are described in conjunction with the drawings, various edits and modifications can be made by those skilled in the art without departing from the spirit and scope of the present application, and such edits and modifications all fall within the scope defined by the appended claims.

Claims

1. A smart park energy-saving diagnosis management method, characterized in that, The application is applied to a smart park energy-saving diagnosis management system, which comprises a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module and a communication module; the energy-saving diagnosis module is used for diagnosing the energy consumption of different spaces in the park based on the energy consumption data collected by the front-end data acquisition module; the park display module is used for displaying each space in the park and displaying the current energy consumption; each space in the smart park is provided with a control module of the energy-consuming equipment in the space; the method comprises the following steps: When the energy-saving diagnosis module detects that the energy consumption of any space unit in a time period is greater than the target energy consumption in the corresponding space, the communication module sends an acquisition instruction of the current space energy-consuming equipment control data to the control module of the energy-consuming equipment; the control data corresponding to each start of the energy-consuming equipment is generated by the user setting operation through the interactive unit of the control module; According to the current outdoor environment data and the obtained current space energy-consuming equipment control data, it is determined whether there is a target energy-consuming equipment whose control data exceeds the target control data range which is set in advance according to different outdoor environment data; When there is a target energy-consuming equipment, a new control instruction is sent to the control module so that the control data of the target energy-consuming equipment is within the target control data range.

2. The method of claim 1, wherein, The smart park energy-saving diagnosis management system further comprises an outdoor environment data acquisition module for detecting temperature data and illumination brightness data in the current park; a storage unit is arranged in the central management module for storing the energy-saving control recommended data range of the energy-consuming equipment corresponding to different spaces in different directions under different outdoor environment data; According to the current outdoor temperature data and illumination brightness data collected by the outdoor environment data acquisition module and the direction data of the space with excessive energy consumption, the energy-saving control recommended data range of the temperature adjusting equipment and the lighting equipment in the space is matched from the storage unit; According to the energy-saving control recommended data range and the obtained control data of the temperature adjusting equipment and the lighting equipment in the current space, it is determined whether the temperature adjusting equipment and the lighting equipment started in the current space are target energy-consuming equipment. When there is a target energy-consuming equipment, a new control instruction is sent to the control module so that the control data of the target energy-consuming equipment is within the target control data range.

3. The method of claim 1, wherein, When it is detected that the control module receives a new round of user setting operation on the control data of the target energy-consuming equipment, the target energy-consuming equipment is controlled to operate according to the user setting data. The method further comprises the following steps:

4. The method of claim 3, wherein, ​ When the new round of setting data exceeds the corresponding target control data under the current outdoor environment data, an energy consumption warning prompt is sent to the management end of the corresponding space, the energy consumption warning prompt including the energy consumption exceeding degree and the corresponding expected energy consumption cost.

5. The method of claim 4, wherein, After sending the energy consumption warning prompt to the management end of the corresponding park space, the method further includes: monitoring the communication request of the management end; determining the type of the communication request when the communication request of the management end is monitored; when the type of the communication request is the energy consumption equipment use consultation type, sending a data acquisition request to the management end, the data acquisition request corresponding to the request data type including the number of people in the current space and the location of the personnel; based on the number of people in the current space and the location of the personnel, sending an energy-saving control recommendation scheme of lighting equipment and temperature regulation equipment to the management end.

6. The method of claim 1, wherein, The front-end data acquisition module includes an infrared camera acquisition module for detecting whether there is anyone in the current space; the method further includes: when it is detected that someone enters the space, generating an energy-saving use strategy of the energy consumption equipment in the current space according to the seat position in the current space and the number of personnel entering the space; displaying the energy-saving use strategy in the display interface of the control module.

7. A smart park energy-saving diagnosis management device, characterized in that, The method is applied to a smart park energy-saving diagnosis management system, the smart park energy-saving diagnosis management system including a central management module, an energy-saving diagnosis module, a front-end data acquisition module, a park display module, and a communication module; the energy-saving diagnosis module is used to diagnose the energy consumption of different spaces in the park based on the energy consumption data collected by the front-end data acquisition module, the park display module is used to display each space in the park and display the current energy consumption, and each space in the smart park is provided with a control module of the energy consumption equipment in the space; the device includes: a first sending module for sending an acquisition instruction of the energy consumption equipment control data in the current space to the control module of the energy consumption equipment through the communication module when the energy-saving diagnosis module detects that the energy consumption in any space unit time is greater than the target energy consumption in the corresponding space, the control data corresponding to each start of the energy consumption equipment being generated by the user setting operation through the interactive unit of the control module; a first determination module for determining whether there is a target energy consumption equipment whose control data exceeds the target control data range pre-set according to different outdoor environment data among the currently started energy consumption equipment based on the current outdoor environment data and the acquired energy consumption equipment control data in the current space, the target control data range being the energy-saving control recommendation data range pre-set according to different outdoor environment data; a second sending module for sending a new control instruction to the control module when there is a target energy consumption equipment, so that the control data of the target energy consumption equipment is within the target control data range.

8. An electronic device, comprising: including: a memory and a processor, which are communicatively connected, the memory stores computer instructions, and the processor executes the computer instructions to perform the smart park energy-saving diagnosis management method of any one of claims 1-6.

9. A computer readable storage medium characterized by, The computer readable storage medium stores computer instructions for causing a computer to execute the smart park energy-saving diagnosis management method of any one of claims 1-6.

10. A computer program product, characterised in that, The computer readable storage medium stores computer instructions for causing a computer to execute the smart park energy-saving diagnosis management method of any one of claims 1-6.

Citation Information

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