Photovoltaic power station efficiency improvement method and system based on digital technology

By combining simulation training threads and lighting condition information loading important units, the photovoltaic power station performance simulation description content was debugged, and the problem of low conversion efficiency of photovoltaic technology was solved, and targeted debugging and efficiency improvement were achieved.

CN119995513AInactive Publication Date: 2025-05-13CHONGQING TONGNAN DISTRICT HUADIAN NEW ENERGY ENERGY CO LTD
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Patent Information

Application Number
CN202411834210.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing photovoltaic technology has low conversion efficiency due to weather, environment and equipment, and cannot effectively utilize excess electricity, so it requires a method to improve the efficiency of the photovoltaic power station.

Method used

By simulating the energy conversion data of the photovoltaic power station performance simulation information in the training thread, the simulation matters are used to debug the photovoltaic power station performance simulation description content, and the photovoltaic power station performance simulation information is presented in the important unit of the light condition information loading, and the efficiency improvement plan is obtained.

Benefits of technology

Debugging is carried out in a targeted manner according to different environments and care conditions to improve the efficiency of photovoltaic power plants.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the photovoltaic power station efficiency improvement method and system based on the digital technology provided by the invention, the reference conversion efficiency description data to be analyzed when the simulation item inputs the photovoltaic power station efficiency simulation description content in the presence of the instruction; then, the reference conversion efficiency description data in the photovoltaic power station efficiency simulation information input simulation training thread presented by the important unit is loaded in the illumination condition information of the to-be-analyzed reference conversion efficiency description data, so that an efficiency improvement scheme is obtained, and targeted debugging can be carried out according to different environments and different light conditions; and the efficiency of photovoltaic power station efficiency improvement is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of performance improvement, and in particular to a method and system for improving the performance of a photovoltaic power station based on digital technology. Background Art

[0002] With the continuous development of photovoltaic energy, photovoltaic technology currently has a series of problems. For example, due to factors such as weather, environment and equipment, the conversion efficiency of photovoltaic energy is very low. The power consumption is only one price, and there is no excess electricity to convert into emergency benefits. Therefore, a method for improving the efficiency of photovoltaic power stations is urgently needed to solve the above problems. Summary of the invention

[0003] In view of this, the present application provides a method and system for improving the efficiency of a photovoltaic power station based on digital technology.

[0004] In a first aspect, a method for improving the efficiency of a photovoltaic power station based on digital technology is provided, the method comprising: In response to energy conversion data of the photovoltaic power station efficiency simulation information in the simulation training thread, debugging the photovoltaic power station efficiency simulation description content using simulation items; In response to the instruction catalog of the simulation event for the photovoltaic power station efficiency simulation information, using the input instruction situation of the photovoltaic power station efficiency simulation information, and presenting the reference conversion efficiency description data to be analyzed when the simulation event inputs the photovoltaic power station efficiency simulation description content under the instruction situation; In the reference conversion efficiency description data to be analyzed, the lighting condition information loading important unit of the photovoltaic power station efficiency simulation information is presented, and in the lighting condition information loading important unit, the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread is presented to obtain the efficiency improvement plan.

[0005] Furthermore, the reference conversion efficiency description data to be analyzed when the simulation item inputs the photovoltaic power station efficiency simulation description content under the instruction condition includes: In the case of presenting the instruction, when the simulation item inputs the photovoltaic power station efficiency simulation description content, the reference conversion efficiency description data to be analyzed is obtained by associating the first input information factor as the associating factor; Correspondingly, in the important unit for loading the illumination condition information, the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread is presented to obtain a performance improvement plan, including: in the important unit for loading the illumination condition information, the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread is presented using a third input information factor to obtain a performance improvement plan.

[0006] Furthermore, the reference conversion efficiency description data to be analyzed includes: First auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation description content, and second auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation information characteristics; The presenting of the important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed includes: presenting the important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information in the first auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation description content.

[0007] Furthermore, in the important unit for loading the illumination condition information, the reference conversion efficiency description data in the simulation training thread is inputted with the photovoltaic power station efficiency simulation information to obtain the efficiency improvement plan, including: In the important unit for loading the illumination condition information, an input condition corresponding to the description content of the environmental information of the photovoltaic power station efficiency simulation information is adopted to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread, and obtain an efficiency improvement plan; wherein the description content of the environmental information includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information; The method of using the input corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain the efficiency improvement plan includes: When the environmental information description content is hidden information, obtaining a hidden information vector of the photovoltaic power station efficiency simulation information; When the hidden information vector belongs to the reference hidden information vector region, the primary selection input is used to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan; The method of using the input corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain the efficiency improvement plan includes: When the environmental information description content is key information, obtaining a key information vector of the photovoltaic power station efficiency simulation information; When the key information vector belongs to the reference key information vector area, a preset input condition is adopted to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan.

[0008] Furthermore, the method further comprises: In the reference conversion efficiency description data to be analyzed, seasonal events for loading important units for the illumination condition information are presented; Correspondingly, after the illumination condition information loading important unit of the photovoltaic power station efficiency simulation information is presented in the reference conversion efficiency description data to be analyzed, the method further comprises: receiving an important unit key directory for the illumination condition information loading important unit triggered based on the seasonal event; In response to the important unit key directory, the light condition information of the photovoltaic power station efficiency simulation information presented in the key is loaded into the important unit.

[0009] Furthermore, the method further comprises: In the reference conversion efficiency description data to be analyzed, presenting the important units corresponding to the illumination condition information for analysis; Correspondingly, after the illumination condition information of the photovoltaic power station efficiency simulation information presented in the key is loaded into an important unit, the method further comprises: receiving an important unit parsing catalog for loading important units for the illumination condition information triggered based on the important unit analysis; In response to the important unit parsing catalog, important units are loaded with the illumination condition information presenting the key photovoltaic power station efficiency simulation information.

[0010] Furthermore, the method further comprises: In response to a trigger instruction for loading an important unit for the lighting condition information, the reference conversion efficiency description data to be analyzed when the presented simulation matters are input into the photovoltaic power station efficiency simulation description content is switched to the reference conversion efficiency description data in the simulation training thread when the photovoltaic power station efficiency simulation information is input, so as to obtain a performance improvement plan.

[0011] Furthermore, after the switching inputs the reference conversion efficiency description data in the simulation training thread into the photovoltaic power station efficiency simulation information and obtains the efficiency improvement plan, the method further includes: Auxiliary reference conversion efficiency description data independent of the reference conversion efficiency description data are presented, and in the auxiliary reference conversion efficiency description data, reference conversion efficiency description data to be analyzed corresponding to the photovoltaic power station efficiency simulation information characteristics when the simulation matter is input into the photovoltaic power station efficiency simulation description content is presented.

[0012] Furthermore, the method further comprises: Presenting a loading analysis of an important unit loaded corresponding to the illumination condition information; responding to a trigger instruction for the loading analysis, using the loading analysis as a start state; Correspondingly, the light condition information loading important unit presenting the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed includes: when the loading analysis situation is in the start state, the light condition information loading important unit presenting the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed; Wherein, the method further comprises: Obtaining an environmental information description content vector corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information; wherein the environmental information description content includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information; When the environmental information description content vector is lower than the target content threshold vector, terminating the photovoltaic power station efficiency simulation description content by using the simulation event, and terminating the loading of the important unit of the illumination condition information of the photovoltaic power station efficiency simulation information presented; Wherein, the method further comprises: In the reference conversion efficiency description data to be analyzed, a termination analysis corresponding to the photovoltaic power station efficiency simulation information is presented; Correspondingly, after the loading of the important unit of the lighting condition information presenting the photovoltaic power station efficiency simulation information, the method further includes: in response to a trigger instruction for the termination analysis, terminating the photovoltaic power station efficiency simulation description content using the simulation matter, and terminating the loading of the important unit of the lighting condition information presenting the photovoltaic power station efficiency simulation information.

[0013] In a second aspect, a photovoltaic power station efficiency improvement system based on digital technology is provided, comprising a processor and a memory communicating with each other, wherein the processor is used to read a computer program from the memory and execute it to implement the above method.

[0014] The embodiment of the present application provides a method and system for improving the efficiency of a photovoltaic power station based on digital technology. By presenting the reference conversion efficiency description data to be analyzed when simulating matters to input the photovoltaic power station efficiency simulation description content under the condition of presenting instructions, and then presenting the reference conversion efficiency description data in the simulation training thread by loading the important unit of the illumination condition information of the reference conversion efficiency description data to be analyzed, the efficiency improvement plan can be debugged in a targeted manner according to different environments and different lighting conditions, thereby improving the efficiency of improving the efficiency of the photovoltaic power station. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limitations on the region. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without creative work.

[0016] Figure 1 A flowchart of a method for improving the efficiency of a photovoltaic power station based on digital technology provided in an embodiment of the present application.

[0017] Figure 2 A block diagram of a photovoltaic power station efficiency improvement device based on digital technology provided in an embodiment of the present application.

[0018] Figure 3 This is an architecture diagram of a photovoltaic power station efficiency improvement system based on digital technology provided in an embodiment of the present application. DETAILED DESCRIPTION

[0019] In order to better understand the above technical scheme, the technical scheme of the present application is described in detail below through the accompanying drawings and specific embodiments. It should be understood that the embodiments of the present application and the specific features in the embodiments are detailed descriptions of the technical scheme of the present application, rather than limitations on the technical scheme of the present application. In the absence of conflict, the embodiments of the present application and the technical features in the embodiments can be combined with each other.

[0020] See also Figure 1 , shows a method for improving the efficiency of a photovoltaic power station based on digital technology, which may include the technical solutions described in the following steps 100 to 300.

[0021] Step 100, in response to energy conversion data of photovoltaic power station performance simulation information in a simulation training thread, using simulation items to debug the photovoltaic power station performance simulation description content.

[0022] For example, data describing conversion efficiency include solar radiation, temperature, spectral distribution, material properties, and component first-year degradation rate.

[0023] Furthermore, the photovoltaic power station efficiency simulation description content represents the input virtual conversion efficiency description data.

[0024] Step 200, in response to the instruction catalog of the simulation matter for the photovoltaic power station efficiency simulation information, utilizing the input instruction situation of the photovoltaic power station efficiency simulation information, and presenting the reference conversion efficiency description data to be analyzed when the simulation matter inputs the photovoltaic power station efficiency simulation description content under the instruction situation.

[0025] For example, the instruction catalog represents a set of clustered photovoltaic energy conversion information related to each input.

[0026] Furthermore, the input instruction situation represents the expression form of the relevant photovoltaic energy conversion information on a device such as a computer and a mobile phone that can display the photovoltaic energy conversion information.

[0027] Step 300, in the reference conversion efficiency description data to be analyzed, presents the lighting condition information loading important unit of the photovoltaic power station efficiency simulation information, and in the lighting condition information loading important unit, presents the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain the efficiency improvement plan.

[0028] For example, the reference conversion efficiency description data represents relevant photovoltaic energy conversion information that has been input.

[0029] It should be understood that when executing the technical solution described in steps 100 to 300 above, by presenting the reference conversion efficiency description data to be analyzed when simulating matters to input the photovoltaic power station efficiency simulation description content under the instruction situation, and then by loading the important unit with the illumination condition information of the reference conversion efficiency description data to be analyzed, the photovoltaic power station efficiency simulation information is presented and input into the reference conversion efficiency description data in the simulation training thread, the efficiency improvement plan can be debugged in a targeted manner according to different environments and different lighting conditions, thereby improving the efficiency of photovoltaic power station efficiency improvement.

[0030] Furthermore, when the reference conversion efficiency description data to be analyzed is presented under the instruction situation and the simulation matter inputs the photovoltaic power station efficiency simulation description content, there is a problem of inaccurate instruction situation, which makes it difficult to accurately obtain the reference conversion efficiency description data to be analyzed. In order to improve the above technical problems, the step of presenting the reference conversion efficiency description data to be analyzed when the simulation matter inputs the photovoltaic power station efficiency simulation description content under the instruction situation described in step 200 can specifically include the technical solutions described in the following steps q1 and q2.

[0031] Step q1, presenting the instruction, when the simulation item inputs the photovoltaic power station efficiency simulation description content, the reference conversion efficiency description data to be analyzed is obtained by associating the first input information factor as the association factor.

[0032] Step q2, accordingly, in the important unit for loading the illumination condition information, presents the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan, including: in the important unit for loading the illumination condition information, using a third input information factor to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan.

[0033] It should be understood that when executing the technical solutions described in the above steps q1 and q2, when the simulation matters input the reference conversion efficiency description data to be analyzed when the photovoltaic power station efficiency simulation description content is described, the problem of inaccurate instructions is avoided, so that the reference conversion efficiency description data to be analyzed can be accurately obtained.

[0034] For some possible implementation examples, the reference conversion efficiency description data to be analyzed specifically includes the technical solutions described in the following steps w1 and w2.

[0035] Step w1, first assisting reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation description content, and second assisting reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation information characteristics.

[0036] Step w2, presenting the important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed, includes: presenting the important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information in the first auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation description content.

[0037] It should be understood that when executing the technical solutions described in the above steps w1 and w2, the accuracy of the processing of the photovoltaic power station efficiency simulation description content is improved by accurately analyzing the photovoltaic power station efficiency simulation description content.

[0038] For some possible implementation embodiments, when the lighting condition information is loaded into the important unit, there is a problem of input errors, which makes it difficult to accurately present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain a performance improvement plan. In order to improve the above technical problems, the step q2 described in the important unit for loading the lighting condition information presents the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain a performance improvement plan, which can specifically include the technical solution described in the following step q2a1.

[0039] Step q2a1, in the important unit for loading the illumination condition information, using the input corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, presents the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread, and obtains the efficiency improvement plan.

[0040] For example, the environmental information description content includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information.

[0041] It should be understood that when executing the technical solution described in the above step q2a1, when the lighting condition information is loaded into the important unit, the problem of incorrect input is avoided, so that the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread can be accurately presented to obtain an efficiency improvement plan.

[0042] For some possible implementation embodiments, when using the input situation corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, there is a problem of unclear hidden information, which makes it difficult to accurately present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain a performance improvement plan. In order to improve the above technical problems, the step q2a1 described in using the input situation corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, presenting the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread, and obtaining the performance improvement plan can specifically include the technical solutions described in the following steps w1 and w2.

[0043] Step w1, when the environmental information description content is hidden information, obtaining the hidden information vector of the photovoltaic power station efficiency simulation information.

[0044] Step w2, when the hidden information vector belongs to the reference hidden information vector area, the preliminary input situation is adopted to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain the efficiency improvement plan.

[0045] It should be understood that when executing the technical solutions described in the above steps w1 and w2, by using an input situation corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, the problem of inaccurate hidden information can be avoided, thereby being able to accurately present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread and obtain an efficiency improvement plan.

[0046] For some possible implementation embodiments, when using an input condition corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, there is a problem of inaccurate reference key information vector area, which makes it difficult to accurately present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan. In order to improve the above technical problems, the step q2a1 described in using an input condition corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, presenting the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread, and obtaining the efficiency improvement plan can specifically include the technical solutions described in the following steps e1 and e2.

[0047] Step e1, when the environmental information description content is key information, obtaining the key information vector of the photovoltaic power station efficiency simulation information.

[0048] Step e2, when the key information vector belongs to the reference key information vector area, a preset input condition is adopted to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan.

[0049] It should be understood that when executing the technical solutions described in the above steps e1 and e2, by using the input corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information, the problem of inaccurate reference key information vector area is avoided, so that the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread can be accurately presented to obtain an efficiency improvement plan.

[0050] Based on the above foundation, the technical solution described in the following steps r1 to r3 may also be included.

[0051] Step r1, presenting the seasonal events for loading important units for the illumination condition information in the reference conversion efficiency description data to be analyzed.

[0052] Step r2, accordingly, after the important unit of loading the lighting condition information of the photovoltaic power station efficiency simulation information is presented in the reference conversion efficiency description data to be analyzed, the method also includes: receiving a key directory of important units for loading the lighting condition information based on the seasonal event trigger.

[0053] Step r3, in response to the key directory of the key unit, the key presented illumination condition information of the photovoltaic power station efficiency simulation information is loaded into the key unit.

[0054] It should be understood that when executing the technical solutions described in the above steps r1 to r3, by accurately obtaining seasonal events, the lighting condition information of the photovoltaic power station efficiency simulation information can be accurately loaded into the important unit.

[0055] Based on the above foundation, the technical solution described in steps t1 to t3 may also be included.

[0056] Step t1, in the reference conversion efficiency description data to be analyzed, present the important units corresponding to the illumination condition information and load them for analysis.

[0057] Step t2, accordingly, after the key presented illumination condition information of the photovoltaic power station efficiency simulation information is loaded into the important unit, the method further comprises: receiving an important unit analysis directory triggered based on the important unit analysis for loading the important unit of the illumination condition information.

[0058] Step t3, in response to the important unit parsing catalog, presenting the key illumination condition information of the photovoltaic power station efficiency simulation information to load the important unit.

[0059] It should be understood that when executing the technical solution described in the above steps t1 to t3, accurate analysis is performed through important units, thereby improving the accuracy of loading the key lighting condition information of the photovoltaic power station efficiency simulation information into the important units.

[0060] Based on the above foundation, the technical solution described in step y1 may also be included.

[0061] Step y1, in response to the trigger instruction for loading the important unit for the lighting condition information, the reference conversion efficiency description data to be analyzed when the presented simulation matters are input into the photovoltaic power station efficiency simulation description content is switched to the reference conversion efficiency description data in the simulation training thread when the photovoltaic power station efficiency simulation information is input, so as to obtain the efficiency improvement plan.

[0062] It should be understood that when executing the technical solution described in the above step y1, the reference conversion efficiency is improved to describe the integrity of the data through the triggering instructions of the important units.

[0063] Based on the above foundation, after switching to the photovoltaic power station efficiency simulation information to input the reference conversion efficiency description data in the simulation training thread and obtaining the efficiency improvement plan, the technical plan described in the following step u1 may also be included.

[0064] Step u1, presenting auxiliary reference conversion efficiency description data independent of the reference conversion efficiency description data, and presenting in the auxiliary reference conversion efficiency description data the reference conversion efficiency description data to be analyzed corresponding to the photovoltaic power station efficiency simulation information characteristics when the simulation matter inputs the photovoltaic power station efficiency simulation description content.

[0065] It should be understood that when executing the technical solution described in the above step u1, the relevant auxiliary terms can be effectively and accurately analyzed through the auxiliary reference conversion efficiency description data independent of the reference conversion efficiency description data, so that the reference conversion efficiency description data to be analyzed can be accurately obtained.

[0066] Based on the above foundation, the technical solution described in steps o1 and o2 may also be included.

[0067] Step o1, presenting a loading analysis of an important unit loaded corresponding to the illumination condition information; responding to a trigger instruction for the loading analysis, using the loading analysis as a starting state.

[0068] Step o2, accordingly, in the reference conversion efficiency description data to be analyzed, an important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information is presented, including: when the loading analysis situation is in the starting state, in the reference conversion efficiency description data to be analyzed, an important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information is presented.

[0069] It should be understood that when executing the technical solutions described in the above steps o1 and o2, the accuracy of loading analysis is improved, thereby improving the accuracy of loading important units of the illumination condition information of the photovoltaic power station efficiency simulation information.

[0070] Based on the above foundation, the technical solutions described in steps a1 and a2 may also be included.

[0071] Step a1, obtaining an environmental information description content vector corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information.

[0072] For example, the environmental information description content includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information.

[0073] Step a2, when the environmental information description content vector is lower than the target content threshold vector, the photovoltaic power station performance simulation description content is terminated using the simulation event, and the loading of the important unit of the lighting condition information of the photovoltaic power station performance simulation information is terminated.

[0074] It should be understood that when executing the technical solutions described in the above steps a1 and a2, by accurately obtaining the environmental information description content vector, errors in loading important units of the lighting condition information of the photovoltaic power station efficiency simulation information can be avoided.

[0075] Based on the above foundation, the technical solutions described in the following steps s1 and s2 may also be included.

[0076] Step s1, presenting the termination analysis corresponding to the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed.

[0077] Step s2, accordingly, after the loading of the important unit of the illumination condition information presenting the photovoltaic power station efficiency simulation information, the method further comprises: in response to a trigger instruction for the termination analysis, terminating the photovoltaic power station efficiency simulation description content using the simulation matter, and terminating the loading of the important unit of the illumination condition information presenting the photovoltaic power station efficiency simulation information.

[0078] It should be understood that when executing the technical solutions described in the above steps s1 and s2, by terminating the analysis of the photovoltaic power station efficiency simulation information, the risk of errors in loading important units of the lighting condition information of the photovoltaic power station efficiency simulation information is reduced.

[0079] In a possible embodiment, the inventors have discovered that when responding to energy conversion data of photovoltaic power station efficiency simulation information in a simulation training thread, there is a problem of analysis error, making it difficult to reliably use simulation matters to debug the photovoltaic power station efficiency simulation description content. In order to improve the above technical problems, the step of responding to energy conversion data of photovoltaic power station efficiency simulation information in a simulation training thread and using simulation matters to debug the photovoltaic power station efficiency simulation description content described in step 100 may specifically include the technical solutions described in the following steps d1 and d2.

[0080] Step d1, presenting and analyzing the content of the simulation description for debugging the photovoltaic power station efficiency.

[0081] Step d2, in response to the energy conversion data of the photovoltaic power station efficiency simulation information in the simulation training thread triggered by the analysis, the photovoltaic power station efficiency simulation description content is debugged by using simulation items.

[0082] It should be understood that when executing the technical solutions described in the above steps d1 and d2, when responding to the energy conversion data of the photovoltaic power station efficiency simulation information in the simulation training thread, the problem of analysis errors is avoided, so that the simulation matters can be reliably used to debug the photovoltaic power station efficiency simulation description content.

[0083] Based on the above foundation, the technical solution described in step f1 may also be included.

[0084] Step f1, presenting content instruction information corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information in the important unit for loading the illumination condition information.

[0085] For example, the environmental information description content includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information; and content instruction information, which is used to instruct the reading situation corresponding to the environmental information description content.

[0086] It should be understood that when executing the technical solution described in step f1 above, the important unit is loaded with the light condition information for accurate analysis, so that the content instruction information corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information can be accurately presented.

[0087] Based on the above, please refer to Figure 2 , a photovoltaic power station efficiency improvement device 200 based on digital technology is provided, the device comprising: The content acquisition module 210 is used to debug the photovoltaic power station efficiency simulation description content using simulation items in response to the energy conversion data of the photovoltaic power station efficiency simulation information in the simulation training thread; The data acquisition module 220 is used to respond to the instruction catalog of the simulation event for the photovoltaic power station efficiency simulation information, use the input instruction situation of the photovoltaic power station efficiency simulation information, and present the reference conversion efficiency description data to be analyzed when the simulation event inputs the photovoltaic power station efficiency simulation description content under the instruction situation; The data input module 230 is used to present the lighting condition information loading important unit of the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed, and to present the reference conversion efficiency description data input into the simulation training thread of the photovoltaic power station efficiency simulation information in the lighting condition information loading important unit to obtain the efficiency improvement plan.

[0088] Based on the above, please refer to Figure 3 , shows a photovoltaic power station efficiency improvement system 300 based on digital technology, including a processor 310 and a memory 320 that communicate with each other, and the processor 310 is used to read and execute a computer program from the memory 320 to implement the above method.

[0089] Based on the above, a computer-readable storage medium is also provided, on which a computer program stored implements the above method when running.

[0090] In summary, based on the above scheme, by presenting the reference conversion efficiency description data to be analyzed when simulating matters to input the photovoltaic power station efficiency simulation description content under the instruction situation, and then presenting the reference conversion efficiency description data in the simulation training thread by loading the important unit with the illumination condition information of the reference conversion efficiency description data to be analyzed, the efficiency improvement scheme can be debugged in a targeted manner according to different environments and different lighting conditions, thereby improving the efficiency of photovoltaic power station efficiency improvement.

[0091] It should be understood that the system and its modules shown above can be implemented in various ways. For example, in some embodiments, the system and its modules can be implemented by hardware, software, or a combination of software and hardware. Among them, the hardware part can be implemented using dedicated logic; the software part can be stored in a memory and executed by an appropriate instruction execution system, such as a microprocessor or a dedicated design hardware. It should be understood by those skilled in the art that the above methods and systems can be implemented using computer executable instructions and / or included in a processor using code, such as a carrier medium such as a disk, CD or DVD-ROM, a programmable memory such as a read-only memory (firmware), or a data carrier such as an optical or electronic signal carrier. Such code is provided on the carrier medium such as a disk, CD or DVD-ROM, a programmable memory such as a read-only memory (firmware), or a data carrier such as an optical or electronic signal carrier. The system and its modules of the present application can not only be implemented by hardware circuits such as ultra-large-scale integrated circuits or gate arrays, semiconductors such as logic chips, transistors, or programmable hardware devices such as field programmable gate arrays, programmable logic devices, etc., but can also be implemented by software such as executed by various types of processors, and can also be implemented by a combination of the above hardware circuits and software (e.g., firmware).

[0092] It should be noted that different embodiments may produce different beneficial effects. In different embodiments, the beneficial effects that may be produced may be any one or a combination of the above, or any other beneficial effects that may be obtained.

[0093] The basic concepts have been described above. Obviously, for those skilled in the art, the above detailed disclosure is only an example and does not constitute a limitation of the present application. Although not explicitly stated herein, those skilled in the art may perform various debugging, improvements and corrections on the present application. Such debugging, improvements and corrections are suggested in the present application, so such debugging, improvements and corrections still belong to the spirit and scope of the exemplary embodiments of the present application.

[0094] At the same time, the present application uses specific words to describe the embodiments of the present application. For example, "one embodiment", "an embodiment", and / or "some embodiments" refer to a certain feature, structure or characteristic related to at least one embodiment of the present application. Therefore, it should be emphasized and noted that "one embodiment" or "an embodiment" or "an alternative embodiment" mentioned twice or more in different positions in this specification does not necessarily refer to the same embodiment. In addition, some features, structures or characteristics in one or more embodiments of the present application can be appropriately combined.

[0095] In addition, it should be understood by those skilled in the art that various aspects of the present application can be illustrated and described by a number of patentable categories or situations, including any new and useful process, machine, product or combination of substances, or any new and useful improvements thereto. Accordingly, various aspects of the present application can be performed entirely by hardware, entirely by software (including firmware, resident software, microcode, etc.), or by a combination of hardware and software. The above hardware or software may all be referred to as "data blocks", "modules", "engines", "units", "components" or "systems". In addition, various aspects of the present application may be represented as a computer product located in one or more computer-readable media, which includes computer-readable program code.

[0096] A computer storage medium may include a propagated data signal containing computer program code, for example, in baseband or as part of a carrier wave. The propagated signal may be in a variety of forms, including electromagnetic, optical, etc., or a suitable combination. A computer storage medium may be any computer-readable medium other than a computer-readable storage medium, which can be connected to an instruction execution system, device or apparatus to communicate, propagate or transmit the program for use. The program code on the computer storage medium may be transmitted via any suitable medium, including radio, cable, fiber optic cable, RF, or similar media, or any combination of the above media.

[0097] The computer program codes required for the operation of each part of the present application can be written in any one or more programming languages, including event-oriented programming languages ​​such as Java, Scala, Smalltalk, Eiffel, JADE, Emerald, C++, C#, VB.NET, Python, etc., conventional procedural programming languages ​​such as C language, Visual Basic, Fortran 2003, Perl, COBOL 2002, PHP, ABAP, dynamic programming languages ​​such as Python, Ruby and Groovy, or other programming languages, etc. The program code can be run entirely on the user's computer, or run on the user's computer as an independent software package, or run partly on the user's computer and partly on a remote computer, or run entirely on a remote computer or server. In the latter case, the remote computer can be connected to the user's computer through any network form, such as a local area network (LAN) or a wide area network (WAN), or connected to an external computer (e.g., via the Internet), or in a cloud computing environment, or used as a service such as software as a service (SaaS).

[0098] In addition, unless explicitly stated in the claims, the order of the processing elements and sequences described in the present application, the use of alphanumeric characters, or the use of other names are not intended to limit the order of the processes and methods of the present application. Although the above disclosure discusses some invention embodiments that are currently considered useful through various examples, it should be understood that such details are only for illustrative purposes, and the attached claims are not limited to the disclosed embodiments. On the contrary, the claims are intended to cover all modifications and equivalent combinations that are consistent with the essence and scope of the embodiments of the present application. For example, although the system components described above can be implemented by hardware devices, they can also be implemented only by software solutions, such as installing the described system on an existing server or mobile device.

[0099] Similarly, it should be noted that in order to simplify the description of the disclosure of this application and thus help understand one or more embodiments of the invention, in the above description of the embodiments of this application, multiple features are sometimes combined into one embodiment, figure or description thereof. However, this disclosure method does not mean that the features required by the application matter are more than the features mentioned in the claims. In fact, the features of the embodiments are less than all the features of the single embodiment disclosed above.

[0100] In some embodiments, numbers describing the number of components and attributes are used. It should be understood that such numbers used in the description of the embodiments are modified by the modifiers "about", "approximately" or "substantially" in some examples. Unless otherwise specified, "about", "approximately" or "substantially" indicate that the numbers allow adaptive changes. Accordingly, in some embodiments, the numerical parameters used in the specification and claims are approximate values, which can be changed according to the required characteristics of individual embodiments. In some embodiments, the numerical parameters should take into account the specified significant digits and adopt the general method of retaining the number of digits. Although the numerical domains and parameters used to confirm the breadth of the region in some embodiments of the present application are approximate values, in specific embodiments, the setting of such numerical values ​​is as accurate as possible within the feasible area.

[0101] Each patent, patent application, patent application disclosure, and other materials, such as articles, books, instructions, publications, documents, etc., cited in this application are hereby incorporated by reference in their entirety. Except for application history documents that are inconsistent with or conflicting with the content of this application, documents that limit the broadest area of ​​the claims of this application (currently or later attached to this application) are also excluded. It should be noted that if the description, definition, and / or use of terms in the attached materials of this application are inconsistent or conflicting with the content described in this application, the description, definition, and / or use of terms in this application shall prevail.

[0102] Finally, it should be understood that the embodiments described in this application are only used to illustrate the principles of the embodiments of the present application. Other variations may also belong to the scope of the present application. Therefore, as an example and not a limitation, the alternative configurations of the embodiments of the present application can be considered to be consistent with the teachings of the present application. Accordingly, the embodiments of the present application are not limited to the embodiments explicitly introduced and described in the present application.

[0103] The above are only embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various changes and variations. Any debugging, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the claim area of ​​the present application.

Claims

1. A method for improving the efficiency of a photovoltaic power station based on digital technology, characterized in that: The method comprises: In response to energy conversion data of the photovoltaic power station efficiency simulation information in the simulation training thread, debugging the photovoltaic power station efficiency simulation description content using simulation items; In response to the instruction catalog of the simulation event for the photovoltaic power station efficiency simulation information, using the input instruction situation of the photovoltaic power station efficiency simulation information, and presenting the reference conversion efficiency description data to be analyzed when the simulation event inputs the photovoltaic power station efficiency simulation description content under the instruction situation; In the reference conversion efficiency description data to be analyzed, the lighting condition information loading important unit of the photovoltaic power station efficiency simulation information is presented, and in the lighting condition information loading important unit, the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread is presented to obtain the efficiency improvement plan.

2. The method according to claim 1, characterized in that The reference conversion efficiency description data to be analyzed when the simulation item inputs the photovoltaic power station efficiency simulation description content under the instruction condition includes: In the case of presenting the instruction, when the simulation item inputs the photovoltaic power station efficiency simulation description content, the reference conversion efficiency description data to be analyzed is obtained by associating the first input information factor as the associating factor; Correspondingly, in the important unit for loading the illumination condition information, the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread is presented to obtain a performance improvement plan, including: in the important unit for loading the illumination condition information, the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread is presented using a third input information factor to obtain a performance improvement plan.

3. The method according to claim 1, characterized in that The reference conversion efficiency description data to be analyzed includes: First auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation description content, and second auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation information characteristics; The presenting of the important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed includes: presenting the important unit for loading the lighting condition information of the photovoltaic power station efficiency simulation information in the first auxiliary reference conversion efficiency description data corresponding to the photovoltaic power station efficiency simulation description content.

4. The method according to claim 1, characterized in that: In the important unit for loading the illumination condition information, presenting the photovoltaic power station efficiency simulation information and inputting the reference conversion efficiency description data in the simulation training thread to obtain the efficiency improvement plan includes: In the important unit for loading the illumination condition information, an input condition corresponding to the description content of the environmental information of the photovoltaic power station efficiency simulation information is adopted to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread, and obtain an efficiency improvement plan; wherein the description content of the environmental information includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information; The method of using the input corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain the efficiency improvement plan includes: When the environmental information description content is hidden information, obtaining a hidden information vector of the photovoltaic power station efficiency simulation information; When the hidden information vector belongs to the reference hidden information vector region, the primary selection input is used to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan; The method of using the input corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain the efficiency improvement plan includes: When the environmental information description content is key information, obtaining a key information vector of the photovoltaic power station efficiency simulation information; When the key information vector belongs to the reference key information vector area, a preset input condition is adopted to present the reference conversion efficiency description data of the photovoltaic power station efficiency simulation information input into the simulation training thread to obtain an efficiency improvement plan.

5. The method according to claim 1, characterized in that The method further comprises: In the reference conversion efficiency description data to be analyzed, seasonal events for loading important units for the illumination condition information are presented; Correspondingly, after the illumination condition information loading important unit of the photovoltaic power station efficiency simulation information is presented in the reference conversion efficiency description data to be analyzed, the method further comprises: receiving an important unit key directory for the illumination condition information loading important unit triggered based on the seasonal event; In response to the important unit key directory, the light condition information of the photovoltaic power station efficiency simulation information presented in the key is loaded into the important unit.

6. The method according to claim 5, characterized in that The method further comprises: In the reference conversion efficiency description data to be analyzed, presenting the important units corresponding to the illumination condition information for analysis; Correspondingly, after the illumination condition information of the photovoltaic power station efficiency simulation information presented in the key is loaded into an important unit, the method further comprises: receiving an important unit parsing catalog for loading important units for the illumination condition information triggered based on the important unit analysis; In response to the important unit parsing catalog, important units are loaded with the illumination condition information presenting the key photovoltaic power station efficiency simulation information.

7. The method according to claim 1, characterized in that The method further comprises: In response to a trigger instruction for loading an important unit for the lighting condition information, the reference conversion efficiency description data to be analyzed when the presented simulation matters are input into the photovoltaic power station efficiency simulation description content is switched to the reference conversion efficiency description data in the simulation training thread when the photovoltaic power station efficiency simulation information is input, so as to obtain a performance improvement plan.

8. The method according to claim 7, characterized in that After the switching inputs the reference conversion efficiency description data in the simulation training thread into the photovoltaic power station efficiency simulation information and obtains the efficiency improvement plan, the method further includes: Auxiliary reference conversion efficiency description data independent of the reference conversion efficiency description data are presented, and in the auxiliary reference conversion efficiency description data, reference conversion efficiency description data to be analyzed corresponding to the photovoltaic power station efficiency simulation information characteristics when the simulation matter is input into the photovoltaic power station efficiency simulation description content is presented.

9. The method according to claim 1, characterized in that: The method further comprises: Presenting a loading analysis of an important unit loaded corresponding to the illumination condition information; responding to a trigger instruction for the loading analysis, using the loading analysis as a start state; Correspondingly, the light condition information loading important unit presenting the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed includes: when the loading analysis situation is in the start state, the light condition information loading important unit presenting the photovoltaic power station efficiency simulation information in the reference conversion efficiency description data to be analyzed; Wherein, the method further comprises: Obtaining an environmental information description content vector corresponding to the environmental information description content of the photovoltaic power station efficiency simulation information; wherein the environmental information description content includes at least one of the following: key information and hidden information of the photovoltaic power station efficiency simulation information; When the environmental information description content vector is lower than the target content threshold vector, terminating the photovoltaic power station efficiency simulation description content by using the simulation event, and terminating the loading of the important unit of the illumination condition information of the photovoltaic power station efficiency simulation information presented; Wherein, the method further comprises: In the reference conversion efficiency description data to be analyzed, a termination analysis corresponding to the photovoltaic power station efficiency simulation information is presented; Correspondingly, after the loading of the important unit of the lighting condition information presenting the photovoltaic power station efficiency simulation information, the method further includes: in response to a trigger instruction for the termination analysis, terminating the photovoltaic power station efficiency simulation description content using the simulation matter, and terminating the loading of the important unit of the lighting condition information presenting the photovoltaic power station efficiency simulation information.

10. A photovoltaic power station efficiency improvement system based on digital technology, characterized in that: The invention comprises a processor and a memory communicating with each other, wherein the processor is used to read a computer program from the memory and execute the computer program to implement the method according to any one of claims 1 to 9.