A digital monitoring system for the operation of green buildings

Through the digital monitoring system, the power, water supply and energy consumption of green buildings is monitored and controlled in real time, which solves the problem of inability to evaluate the operating efficiency of green buildings in the existing technology, and achieves efficient resource management and stable supply.

CN118586623BActive Publication Date: 2025-07-08SINO ITALIAN SHENGSEN CONSTR GRP CO LTD
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Patent Information

Application Number
CN202410632930.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-21
Publication Date
2025-07-08
Estimated Expiration
2044-05-21

AI Technical Summary

Technical Problem

The existing technology cannot effectively analyze the power supply and water supply performance of green buildings, cannot evaluate the energy consumption supply efficiency, and lacks an early warning mechanism, resulting in the inability to accurately judge the operating efficiency and potential risks of green buildings.

Method used

The digital monitoring system is adopted, including power analysis monitoring unit, water supply analysis monitoring unit, efficiency evaluation monitoring unit and early warning performance monitoring unit. Through data collection and formula calculation, it is determined whether the power, water supply and energy consumption of green buildings meet the needs, and conduct real-time monitoring and control.

Benefits of technology

It realizes efficient monitoring and control of electricity, water supply and energy consumption of green buildings, improves energy-saving and water-saving performance, ensures the stability and timely adjustment of energy supply, and reduces resource waste.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a digital monitoring system for the operation of green buildings, which relates to the technical field of digital monitoring. It solves the technical problem in the prior art that the early warning performance of green buildings cannot be monitored, so that it is impossible to accurately judge whether there is a supply risk in green buildings. Specifically, the efficiency evaluation monitoring unit evaluates the energy supply efficiency of green buildings, divides the operation period of green buildings into a high supply period and a low supply period according to the working hours of users in the green buildings, uniformly marks power supply and water supply as energy supply, collects the data of non-exceeding period and floating speed data of green buildings during the operation period, determines whether the efficiency evaluation is normal according to data analysis, and at the same time, after the efficiency evaluation is normal, the early warning performance monitoring unit monitors the early warning performance of the operation period of green buildings, collects the peak control information and alternate satisfaction information of green buildings, and judges whether the early warning performance is qualified according to information comparison.
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Description

Technical Field

[0001] The present invention relates to the technical field of digital monitoring, and in particular to a digital monitoring system for the operation of green buildings. Background Art

[0002] A green building refers to a building that, during its entire life cycle, maximally saves resources (energy, land, water, and materials), protects the environment, and reduces pollution, providing people with a healthy, applicable, and efficient space for use and coexisting harmoniously with nature.

[0003] However, in the prior art, during the operation of a green building, it is impossible to perform performance analysis on the power supply and water supply inside the building, and it is also impossible to evaluate the energy consumption supply efficiency. As a result, it is impossible to judge the operation efficiency of a green building through digital monitoring. In addition, it is impossible to monitor the early warning performance of a green building, so it is impossible to accurately judge whether there is a supply risk in the green building.

[0004] In view of the above technical defects, a solution is now proposed. Summary of the Invention

[0005] The purpose of the present invention is to solve the above-mentioned problems and propose a digital monitoring system for the operation of green buildings.

[0006] The purpose of the present invention can be achieved through the following technical solutions:

[0007] A digital monitoring system for the operation of green buildings includes a digital monitoring platform, which is communicatively connected to a power analysis monitoring unit, a water supply analysis monitoring unit, an efficiency evaluation monitoring unit, and an early warning performance monitoring unit;

[0008] The power analysis monitoring unit performs power analysis monitoring on the building, collects power analysis parameters of the green building, obtains the power analysis monitoring coefficient of the green building through formula calculation, and judges whether the power analysis of the green building is normal according to the comparison with the power analysis monitoring coefficient threshold. After completing the power analysis monitoring, the water supply analysis monitoring unit performs water supply analysis monitoring on the green building, collects the speed supply data and water pressure supply data of the green building, and judges whether the water supply performance meets the requirements according to the data comparison;

[0009] After completing the water supply analysis, the efficiency evaluation and monitoring unit evaluates the energy consumption supply efficiency of the green building. According to the working hours of users in the green building, the operation period of the green building is divided into a high supply period and a low supply period. The power supply and water supply are uniformly marked as energy supply. The data of the non-exceeding period and the floating speed data of the green building during the operation period are collected. According to the data analysis, it is determined whether the efficiency evaluation is normal. At the same time, after the efficiency evaluation is normal, the warning performance monitoring unit monitors the warning performance of the operation period of the green building, collects the peak control information and the alternating satisfaction information of the green building, and judges whether the warning performance is qualified according to the information comparison.

[0010] As a preferred embodiment of the present invention, the power analysis parameters include the rising speed of the numerical ratio of the energy consumption of public equipment and the energy consumption of user equipment during the operation of the green building, the increase span value of the peak value of the total energy consumption of all equipment during the operation of the green building, and the numerical growth speed of the average energy consumption of all equipment during the operation.

[0011] As a preferred embodiment of the present invention, the power analysis monitoring coefficient of the green building is compared with the power analysis monitoring coefficient threshold:

[0012] If the power analysis monitoring coefficient of the green building exceeds the power analysis monitoring coefficient threshold, a power analysis abnormal signal is generated and the power analysis abnormal signal is sent to the digital monitoring platform;

[0013] If the power analysis monitoring coefficient of the green building does not exceed the power analysis monitoring coefficient threshold, a power analysis normal signal is generated and the power analysis normal signal is sent to the digital monitoring platform.

[0014] As a preferred embodiment of the present invention, the speed supply data and the water pressure supply data are respectively the numerical deviation amount between the real-time water supply speed and the required water supply speed of the corresponding floor on different floors during the operation period of the green building, and the maximum numerical floating amount of the water pressure fluctuation during the water supply process on different floors during the operation period of the green building.

[0015] As a preferred embodiment of the present invention, the data comparison process is as follows:

[0016] If the speed supply data is not within the speed numerical deviation amount threshold range, or the water pressure supply data exceeds the water pressure floating maximum numerical floating amount threshold, a water supply analysis abnormal signal is generated and the water supply analysis abnormal signal is sent to the digital monitoring platform;

[0017] If the speed supply data is within the speed numerical deviation amount threshold range, and the water pressure supply data does not exceed the water pressure floating maximum numerical floating amount threshold, a water supply analysis normal signal is generated and the water supply analysis normal signal is sent to the digital monitoring platform.

[0018] As a preferred embodiment of the present invention, the data within the time limit and the floating speed data are respectively the length of the time period during which the energy supply amounts corresponding to the high supply period and the low supply period do not exceed the set threshold, and the shortening speed of the reciprocating floating distance of the deviation value of the energy supply amounts corresponding to the high supply period and the low supply period.

[0019] As a preferred embodiment of the present invention, the data analysis process is as follows:

[0020] If the data within the time limit exceeds the time period length threshold, or the floating speed data exceeds the shortening speed threshold of the reciprocating floating distance of the deviation value, an efficiency evaluation abnormal signal is generated and sent to the digital monitoring platform;

[0021] If the data within the time limit does not exceed the time period length threshold, and the floating speed data does not exceed the shortening speed threshold of the reciprocating floating distance of the deviation value, an efficiency evaluation normal signal is generated and sent to the digital monitoring platform.

[0022] As a preferred embodiment of the present invention, the peak control information and the alternating satisfaction information are respectively the interval duration between the peak moment and the supply adjustment moment of the energy supply amount during the operation period of the green building, and the shortening speed of the corresponding duration ratio of the interval duration between the periods when the energy supply amount in the operation period of the green building satisfies the demand period and alternates to the period when it does not satisfy the demand period and the interval duration between the periods when it does not satisfy the demand period and alternates to the period when it satisfies the demand period.

[0023] As a preferred embodiment of the present invention, the information comparison process is as follows:

[0024] If the peak control information exceeds the adjustment interval duration threshold, or the alternating satisfaction information exceeds the shortening speed threshold of the duration ratio, a monitoring abnormal signal is generated and sent to the digital monitoring platform. After the digital monitoring platform receives the monitoring abnormal signal;

[0025] If the peak control information does not exceed the adjustment interval duration threshold, and the alternating satisfaction information does not exceed the shortening speed threshold of the duration ratio, a monitoring normal signal is generated and sent to the digital monitoring platform.

[0026] Compared with the prior art, the beneficial effects of the present invention are:

[0027] 1. In the present invention, power analysis and monitoring are carried out on buildings. Through power analysis and monitoring, it is judged whether the energy consumption monitoring of green buildings meets the requirements. Through digital monitoring, the performance evaluation of green buildings is carried out, which is convenient for timely management and control of green buildings. Water supply analysis and monitoring are carried out on green buildings. According to the water supply analysis of green buildings, it is judged whether the current water supply performance meets the requirements, so as to ensure that the water supply of green buildings is efficiently met while controlling water conservation, reducing the waste of water use, and reasonably setting according to the water use requirements of green buildings, improving the water conservation performance of green buildings.

[0028] 2. In the present invention, efficiency evaluation is carried out on the energy consumption supply of green buildings to judge whether the energy consumption supply efficiency of green buildings meets the actual requirements, so as to ensure high energy consumption supply efficiency of green buildings and meet the energy consumption requirements of green buildings on the premise of energy conservation and emission reduction. The warning performance during the operation period of green buildings is monitored to judge whether the warning performance of green buildings during the operation period meets the actual requirements, so as to ensure the stability of the energy supply of green buildings, avoid the continuous cyclic influence of abnormal energy supply when it cannot be adjusted in time, and reduce the energy conservation control efficiency of green buildings. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] For the convenience of those skilled in the art to understand, the present invention will be further described below with reference to the accompanying drawings.

[0030] Figure 1 It is a principle block diagram of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0032] The mention of "embodiment" in this article means that the specific features, structures or characteristics described in connection with the embodiment may be included in at least one embodiment of the present invention. The phrase appears in various positions in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0033] Please refer to Figure 1As shown in the figure, a digital monitoring system for the operation of green buildings includes a digital monitoring platform, which is communicatively connected to a power analysis and monitoring unit, a water supply analysis and monitoring unit, an efficiency evaluation and monitoring unit, and an early warning performance monitoring unit;

[0034] The digital monitoring platform generates a power analysis and monitoring signal and sends the power analysis and monitoring signal to the power analysis and monitoring unit. After receiving the power analysis and monitoring signal, the power analysis and monitoring unit conducts power analysis and monitoring on the building, determines whether the energy consumption monitoring of the green building meets the requirements through power analysis and monitoring, and evaluates the performance of the green building through digital monitoring, facilitating the timely control of the green building;

[0035] Obtain the rising speed of the corresponding numerical ratio of the energy consumption of public facilities and user equipment during the operation of the green building, and at the same time obtain the increasing span value of the peak value of the total energy consumption of all equipment during the operation of the green building and the numerical growth rate of the average energy consumption of all equipment during the operation. Set the rising speed of the corresponding numerical ratio of the energy consumption of public facilities and user equipment, the increasing span value of the peak value of the total energy consumption of all equipment, and the numerical growth rate of the average energy consumption of all equipment during the operation of the green building as label SSD, ZKD, and ZSD respectively, and uniformly mark them as power analysis parameters; Public facilities refer to equipment such as lamps in the public areas of the green building, and user equipment refers to the electrical equipment purchased by users in their respective areas in the green building;

[0036] Through the formula Obtain the power analysis and monitoring coefficient G of the green building, where fa1, fa2, and fa3 are the preset proportionality coefficients of the rising speed of the numerical ratio, the increasing span value of the peak value, and the numerical growth rate of the average energy consumption respectively, and β is used as an error correction factor with a value of 0.99, and e is the natural constant;

[0037] Compare the power analysis and monitoring coefficient G of the green building with the power analysis and monitoring coefficient threshold:

[0038] If the power analysis and monitoring coefficient G of the green building exceeds the power analysis and monitoring coefficient threshold, it is determined that the power analysis and monitoring of the green building is abnormal, generate a power analysis abnormal signal and send the power analysis abnormal signal to the digital monitoring platform. After receiving the power analysis abnormal signal, the digital monitoring platform controls the operation of the electrical equipment in the green building, and at the same time monitors the energy consumption during the operation of the electrical equipment in real time, avoiding the increase in energy consumption caused by electrical equipment failures, reducing the digital monitoring efficiency and energy-saving performance of the green building;

[0039] If the power analysis and monitoring coefficient G of the green building does not exceed the power analysis and monitoring coefficient threshold, it is determined that the power analysis and monitoring of the green building is normal, a normal power analysis signal is generated and the normal power analysis signal is sent to the digital monitoring platform;

[0040] Meanwhile, a water supply analysis and monitoring signal is generated and sent to the water supply analysis and monitoring unit. After receiving the water supply analysis and monitoring signal, the water supply analysis and monitoring unit conducts water supply analysis and monitoring on the green building, and judges whether the current water supply performance meets the requirements according to the water supply analysis of the green building, so as to ensure the efficient satisfaction of the water supply needs of the green building while controlling water conservation, reducing the waste of water use, setting reasonably according to the water use demand of the green building, and improving the water conservation performance of the green building;

[0041] Obtain the numerical deviation amount between the real-time water supply speed of different floors and the required water supply speed of the corresponding floors during the operation period of the green building, and the maximum numerical fluctuation amount of the water pressure during the water supply process of different floors during the operation period of the green building, and mark the numerical deviation amount between the real-time water supply speed of different floors and the required water supply speed of the corresponding floors during the operation period of the green building, and the maximum numerical fluctuation amount of the water pressure during the water supply process of different floors during the operation period of the green building as speed supply data and water pressure supply data respectively, and compare them with the speed numerical deviation amount threshold range and the maximum numerical fluctuation amount threshold of the water pressure respectively:

[0042] If the numerical deviation amount between the real-time water supply speed of different floors and the required water supply speed of the corresponding floors during the operation period of the green building is not within the speed numerical deviation amount threshold range, or the maximum numerical fluctuation amount of the water pressure during the water supply process of different floors during the operation period of the green building exceeds the maximum numerical fluctuation amount threshold of the water pressure, it is determined that the water supply analysis and monitoring during the operation period of the green building is abnormal, a water supply analysis abnormal signal is generated and the water supply analysis abnormal signal is sent to the digital monitoring platform. After receiving the water supply analysis and monitoring signal, the digital monitoring platform conducts water supply regulation on the green building, regulates the water supply speed according to the height and demand of each floor to avoid speed mismatch, and controls the supply water pressure at the same time to avoid excessive water pressure in different scenarios that is easy to cause water waste; both higher than the range maximum value and lower than the range minimum value are not within the speed numerical deviation amount threshold range;

[0043] If the numerical deviation amount between the real-time water supply speed of different floors and the required water supply speed of the corresponding floors during the operation period of the green building is within the speed numerical deviation amount threshold range, and the maximum numerical fluctuation amount of the water pressure during the water supply process of different floors during the operation period of the green building does not exceed the maximum numerical fluctuation amount threshold of the water pressure, it is determined that the water supply analysis and monitoring during the operation period of the green building is normal, a water supply analysis normal signal is generated and the water supply analysis normal signal is sent to the digital monitoring platform;

[0044] After the digital monitoring platform receives the normal signal of water supply analysis, it generates an efficiency evaluation monitoring signal and sends the efficiency evaluation monitoring signal to the efficiency evaluation monitoring unit. After receiving the efficiency evaluation monitoring signal, the efficiency evaluation monitoring unit conducts an efficiency evaluation on the energy consumption supply of the green building to determine whether the energy consumption supply efficiency of the green building meets the actual demand, so as to ensure that the energy consumption supply efficiency of the green building is high and meet the energy consumption demand of the green building under the premise of energy conservation and emission reduction;

[0045] According to the working hours of users in the green building, the operation period of the green building is divided into a high supply period and a low supply period. The power supply and water supply are uniformly marked as energy supply. In this application, water and electricity are used as the standard. In the prior art, when the green building actually operates, energy such as gas and natural gas is applicable to this system; when the floating amount of the corresponding energy supply amount in the high supply period and the low supply period does not exceed the set floating amount threshold, the time length of the period when the corresponding energy supply amount in the high supply period and the low supply period does not exceed the set threshold is obtained. At the same time, when the floating amount of the corresponding energy supply amount in the high supply period and the low supply period exceeds the set floating amount threshold, the shortening speed of the reciprocating floating distance of the deviation value of the corresponding energy supply amount in the high supply period and the low supply period is obtained, and the time length of the period when the corresponding energy supply amount in the high supply period and the low supply period does not exceed the set threshold and the shortening speed of the reciprocating floating distance of the deviation value of the corresponding energy supply amount in the high supply period and the low supply period are respectively marked as the non-exceeding period data and the floating speed data, and are respectively compared with the period length threshold and the deviation value reciprocating floating distance shortening speed threshold:

[0046] If the time length of the period when the corresponding energy supply amount in the high supply period and the low supply period exceeds the set threshold exceeds the period length threshold, or the shortening speed of the reciprocating floating distance of the deviation value of the corresponding energy supply amount in the high supply period and the low supply period exceeds the deviation value reciprocating floating distance shortening speed threshold, it is determined that the efficiency evaluation of the operation period of the green building is unqualified, an efficiency evaluation abnormal signal is generated and sent to the digital monitoring platform. After receiving the efficiency evaluation abnormal signal, the digital monitoring platform conducts a sub-period energy supply monitoring on the green building and conducts supply control according to the requirements of different periods;

[0047] If the time length of the period when the corresponding energy supply amount in the high supply period and the low supply period exceeds the set threshold does not exceed the period length threshold, and the shortening speed of the reciprocating floating distance of the deviation value of the corresponding energy supply amount in the high supply period and the low supply period does not exceed the deviation value reciprocating floating distance shortening speed threshold, it is determined that the efficiency evaluation of the operation period of the green building is qualified, an efficiency evaluation normal signal is generated and sent to the digital monitoring platform;

[0048] Generate an early warning performance monitoring signal and send it to the early warning performance monitoring unit. After receiving the early warning performance monitoring signal, the early warning performance monitoring unit monitors the early warning performance during the operation period of the green building, determines whether the early warning performance of the green building during the operation period meets the actual requirements, so as to ensure the stability of the energy supply of the green building, avoid the inability to adjust in time when the energy supply is abnormal, cause the continuous cyclic impact of abnormal energy supply, and reduce the energy-saving control efficiency of the green building;

[0049] Obtain the interval duration between the peak moment and the supply adjustment moment of the energy supply volume during the operation period of the green building, and the reduction speed of the corresponding duration ratio of the interval duration between the periods when the energy supply volume meets the demand and the periods when it does not meet the demand and the interval duration between the periods when it does not meet the demand and the periods when it meets the demand during the operation period of the green building. Mark the interval duration between the peak moment and the supply adjustment moment of the energy supply volume during the operation period of the green building, and the reduction speed of the corresponding duration ratio of the interval duration between the periods when the energy supply volume meets the demand and the periods when it does not meet the demand and the interval duration between the periods when it does not meet the demand and the periods when it meets the demand during the operation period of the green building as peak control information and alternating satisfaction information respectively, and compare them with the adjustment interval duration threshold and the duration ratio reduction speed threshold respectively:

[0050] If the interval duration between the peak moment and the supply adjustment moment of the energy supply volume during the operation period of the green building exceeds the adjustment interval duration threshold, or the reduction speed of the corresponding duration ratio of the interval duration between the periods when the energy supply volume meets the demand and the periods when it does not meet the demand and the interval duration between the periods when it does not meet the demand and the periods when it meets the demand during the operation period of the green building exceeds the duration ratio reduction speed threshold, it is determined that the early warning performance monitoring of the green building is abnormal, generate a monitoring abnormal signal and send it to the digital monitoring platform. After receiving the monitoring abnormal signal, the digital monitoring platform regulates the energy supply monitoring of the green building, accurately determines the supply volume of each period and makes a predictive regulation in time according to the supply volume;

[0051] If the interval duration between the peak moment and the supply adjustment moment of the energy supply volume during the operation period of the green building does not exceed the adjustment interval duration threshold, and the reduction speed of the corresponding duration ratio of the interval duration between the periods when the energy supply volume meets the demand and the periods when it does not meet the demand and the interval duration between the periods when it does not meet the demand and the periods when it meets the demand during the operation period of the green building does not exceed the duration ratio reduction speed threshold, it is determined that the early warning performance monitoring of the green building is normal, generate a monitoring normal signal and send it to the digital monitoring platform;

[0052] The above formulas are all obtained by collecting a large amount of data for software simulation and selecting a formula close to the true value. The coefficients in the formulas are set by those skilled in the art according to the actual situation;

[0053] When the present invention is in use, the power analysis and monitoring unit conducts power analysis and monitoring on a building, collects the power analysis parameters of a green building, obtains the power analysis and monitoring coefficient of the green building through formula calculation, and judges whether the power analysis of the green building is normal according to the comparison with the power analysis and monitoring coefficient threshold. After completing the power analysis and monitoring, the water supply analysis and monitoring unit conducts water supply analysis and monitoring on the green building, collects the speed supply data and water pressure supply data of the green building, and judges whether the water supply performance meets the requirements according to the data comparison; after completing the water supply analysis, the efficiency evaluation and monitoring unit conducts efficiency evaluation on the energy consumption supply of the green building, divides the operation period of the green building into a high supply period and a low supply period according to the working period of the users in the green building, uniformly marks the power supply and water supply as energy supply, collects the non-exceeding period data and floating speed data of the green building during the operation period, and judges whether the efficiency evaluation is normal according to the data analysis. At the same time, after the efficiency evaluation is normal, the early warning performance monitoring unit monitors the early warning performance of the operation period of the green building, collects the peak control information and alternate satisfaction information of the green building, and judges whether the early warning performance is qualified according to the information comparison.

[0054] The preferred embodiments of the present invention disclosed above are only used to help explain the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the present invention to the specific implementation manners. Obviously, according to the content of this specification, many modifications and changes can be made. This specification selects and specifically describes these embodiments to better explain the principle and practical application of the present invention, so that those skilled in the relevant technical fields can well understand and utilize the present invention. The present invention is only limited by the claims and their full scope and equivalents.

Claims

1. A digital monitoring system for the operation of green buildings, characterized in that, It includes a digital monitoring platform, which is communicatively connected to a power analysis and monitoring unit, a water supply analysis and monitoring unit, an efficiency evaluation and monitoring unit, and an early warning performance monitoring unit; The power analysis and monitoring unit conducts power analysis and monitoring on the building, collects the power analysis parameters of the green building, obtains the power analysis and monitoring coefficient of the green building through formula calculation, and judges whether the power analysis of the green building is normal according to the comparison with the power analysis and monitoring coefficient threshold. After completing the power analysis and monitoring, the water supply analysis and monitoring unit conducts water supply analysis and monitoring on the green building, collects the speed supply data and water pressure supply data of the green building, and judges whether the water supply performance meets the requirements according to the data comparison; After completing the water supply analysis, the efficiency evaluation and monitoring unit conducts efficiency evaluation on the energy consumption supply of the green building. According to the working hours of the users in the green building, the operation period of the green building is divided into a high supply period and a low supply period. The power supply and water supply are uniformly marked as energy supply. The non-exceeding period data and floating speed data of the green building during the operation period are collected. The non-exceeding period data and floating speed data are respectively the period lengths of the corresponding energy supply amounts in the high supply period and the low supply period that do not exceed the set threshold, and the shortening speed of the reciprocating floating distance of the deviation values of the corresponding energy supply amounts in the high supply period and the low supply period; According to the data analysis, it is judged whether the efficiency evaluation is normal. At the same time, after the efficiency evaluation is normal, the early warning performance monitoring unit monitors the early warning performance during the operation period of the green building, collects the peak control information and alternate satisfaction information of the green building, and judges whether the early warning performance is qualified according to the information comparison; The peak control information and alternate satisfaction information are respectively the interval duration between the peak moment and the supply adjustment moment of the energy supply amount during the operation period of the green building, and the reduction speed of the ratio of the interval duration between the periods when the energy supply amount meets the demand and the periods when it does not meet the demand and the interval duration between the periods when it does not meet the demand and the periods when it meets the demand during the operation period of the green building; The power analysis parameters include the rising speed of the numerical ratio of the energy consumption of the public equipment and the user equipment during the operation of the green building, the increase span value of the peak value of the total energy consumption of all equipment during the operation of the green building, and the numerical growth speed of the average energy consumption of all equipment during the operation; Moreover, the rising speed of the numerical ratio of the energy consumption of the public equipment and the user equipment during the operation of the green building, the increase span value of the peak value of the total energy consumption of all equipment during the operation of the green building, and the numerical growth speed of the average energy consumption of all equipment during the operation are respectively labeled as SSD, ZKD, and ZSD, and are uniformly marked as power analysis parameters; The public equipment refers to equipment such as lamps in the public areas of the green building, and the user equipment refers to the electrical equipment added by the users in their own areas in the green building; Obtained through the formula The power analysis and monitoring coefficient G of the green building is obtained, where fa1, fa2, and fa3 are the preset proportionality coefficients of the rising speed of the numerical ratio, the increasing span value of the peak value, and the growth speed of the average energy consumption value respectively, and β is the error correction factor with a value of 0.99, and e is the natural constant; Compare the power analysis and monitoring coefficient of the green building with the power analysis and monitoring coefficient threshold: If the power analysis and monitoring coefficient of the green building exceeds the power analysis and monitoring coefficient threshold, a power analysis abnormal signal is generated and the power analysis abnormal signal is sent to the digital monitoring platform; If the power analysis and monitoring coefficient of the green building does not exceed the power analysis and monitoring coefficient threshold, a normal power analysis signal is generated and sent to the digital monitoring platform; The speed supply data and water pressure supply data are respectively the numerical deviation between the real-time water supply speed of different floors during the operation period of the green building and the required water supply speed of the corresponding floors, and the maximum numerical fluctuation of the water pressure during the water supply process of different floors during the operation period of the green building; The data comparison process is as follows: If the speed supply data is not within the threshold range of the speed numerical deviation, or the water pressure supply data exceeds the threshold of the maximum numerical fluctuation of the water pressure, an abnormal water supply analysis signal is generated and sent to the digital monitoring platform; If the speed supply data is within the threshold range of the speed numerical deviation and the water pressure supply data does not exceed the threshold of the maximum numerical fluctuation of the water pressure, a normal water supply analysis signal is generated and sent to the digital monitoring platform.

2. The digital monitoring system for the operation of a green building according to claim 1, characterized in that, The data analysis process is as follows: If the non-exceeding time period data exceeds the time period length threshold, or the floating speed data exceeds the threshold of the shortening speed of the reciprocating floating distance of the deviation value, an abnormal efficiency evaluation signal is generated and sent to the digital monitoring platform; If the non-exceeding time period data does not exceed the time period length threshold and the floating speed data does not exceed the threshold of the shortening speed of the reciprocating floating distance of the deviation value, a normal efficiency evaluation signal is generated and sent to the digital monitoring platform.

3. A digital monitoring system for the operation of a green building according to claim 1, characterized in that, The information comparison process is as follows: If the peak control information exceeds the adjustment interval duration threshold, or the alternating satisfaction information exceeds the threshold of the shortening speed of the duration ratio, a monitoring abnormal signal is generated and sent to the digital monitoring platform. After the digital monitoring platform receives the monitoring abnormal signal; If the peak control information does not exceed the adjustment interval duration threshold and the alternating satisfaction information does not exceed the threshold of the shortening speed of the duration ratio, a monitoring normal signal is generated and sent to the digital monitoring platform.

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