Power planning method for renewable green new energy development
By clearly defining the plans for changes in electrical equipment and the points of supply within the urban area, conducting building modeling and renovation, and integrating new energy systems, the problems of new energy production and consumption have been solved, achieving efficient green energy supply and economic benefits.
Patent Information
- Application Number
- CN202511316734.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-01-23
AI Technical Summary
In some regions, the inability to produce sufficient renewable energy and the inability to effectively utilize it lead to a heavy reliance on traditional energy sources, impacting both environmental and economic benefits.
By clarifying the change plan for electrical equipment, marking the supply points, conducting building modeling and renovation schemes, and integrating new energy systems into building construction, the local consumption of new energy and integrated construction can be achieved.
It has increased the proportion of new energy supply, reduced dependence on traditional energy, optimized the energy structure, reduced environmental pollution and costs, and promoted regional economic development and environmental protection.
Smart Images

Figure CN121390641A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of energy planning, and more specifically relates to a power planning method for renewable green new energy development. BACKGROUND
[0002] With the continuous development of cities, the number of electrical equipment in cities will be more and more, which leads to the gradual increase of the total power consumption in the whole region. The dependence on traditional power grid is getting larger and larger because of the above reasons. At present, the power of the traditional power grid is generated by the consumption of resources, which increases the damage to the environment to a certain extent.
[0003] In order to improve the supply of energy, improve the existing energy supply structure, and increase the proportion of green energy supply, distributed new energy has been developed to a very large extent in some areas at present. However, if these green renewable energy is directly connected to the grid, it will cause impact on the power grid and affect the supply of mainstream energy. Therefore, it is advocated to consume nearby. However, in some relatively developed areas such as cities, it is impossible to effectively and feasibly install a new energy system by using the traditional way, and it is impossible to produce more renewable energy and targeted consumption, resulting in a great dependence on traditional energy. SUMMARY
[0004] The purpose of the present application is to provide a power planning method for renewable green new energy development, which aims to solve the problem that it is impossible to produce more renewable energy and achieve targeted consumption in some areas, resulting in a great dependence on traditional energy.
[0005] To achieve the above purpose, the technical scheme adopted by the present application is to provide a power planning method for renewable green new energy development, comprising: The change plan of the electrical equipment owned by the electrical unit in the region is determined. According to the position of each electrical equipment in the region and the type of energy demand, and combined with the change plan, a plurality of supply points are marked in the region. Each building in the region is preliminarily modeled, and the energy demand and energy demand type designed by the supply point are used to deduce an energy transformation scheme. Through demonstration, the existing building is finally constructed according to the transformation scheme. The energy generated by the new energy system installed in the supply point is transmitted to the corresponding plurality of electrical equipment for consumption. The new energy system is integrated into the actual construction and the future building construction scheme, and the integration of the new energy system and the building is completed. Finally, the energy supply transformation of the building in the region is completed.
[0006] In one possible implementation, the change plan of the electrical equipment owned by the electrical unit in the region includes: determining the location and power consumption of the main power consumption units in the region, and refining the power and acceptable energy type of each power consumption device in the power consumption units; The change plan includes selling, buying, and changing of the power consumption devices.
[0007] In a possible implementation, the step of locating a plurality of supply points in the region according to the location and type of energy demand of each power consumption device in the current region and in combination with the change plan comprises: dividing the entire region in combination with the change plan and the power consumption of each power consumption device in the current region; and setting up a corresponding supply point in each divided block, which is used to generate new renewable energy and provide energy to the corresponding plurality of power consumption devices nearby.
[0008] In a possible implementation, the step of preliminarily modeling each building in the region comprises: constructing a model of each building in the region in proportion to the actual situation, and determining the overall light intensity, light angle, wind speed, and wind direction of the current region; determining the amount of light energy and wind energy that each location of the model can accept at each time period throughout the day.
[0009] In a possible implementation, the step of inferring an energy reconstruction scheme in combination with the energy demand amount and energy demand type designed for each supply point comprises: determining the type and amount of energy required to be generated by each supply point, and inferring the type and area of the new energy system required to be installed in combination with the historical data of the current region and the change plan.
[0010] In a possible implementation, the step of inferring an energy reconstruction scheme in combination with the energy demand amount and energy demand type designed for each supply point comprises: for existing buildings, determining the installation location and installation method that can be performed on the model, and then simulating and refining the reconstruction scheme.
[0011] In a possible implementation, the step of determining the installation location and installation method that can be performed on the model, and then simulating and refining the reconstruction scheme comprises: intelligently generating a plurality of feasible reconstruction schemes on the basis of the requirements set for the supply point in combination with big data and artificial intelligence; the reconstruction scheme includes overhead of the new energy system between different buildings, and partial structure removal and reconstruction of existing buildings.
[0012] In a possible implementation, the reconstruction scheme includes overhead of the new energy system between different buildings, and partial structure removal and reconstruction of existing buildings comprises: Firstly, the area required for installing the new energy system and the amount of energy required to be generated are determined, and a plurality of to-be-confirmed schemes are randomly generated in combination with the amount of energy received by each position of the model; The to-be-confirmed schemes are pre-installed in the model, the required cost and construction period are analyzed and inferred according to the pre-installation result, and then the feasibility is demonstrated, and finally the reconstruction scheme is generated.
[0013] In a possible implementation, the transmission of the energy generated by the new energy system required to be installed at the supply point to the corresponding plurality of power consumption devices for consumption includes: The plurality of reconstruction schemes are demonstrated and sorted in terms of economy and feasibility, and after finalization, the existing power transmission lines and systems are erected and improved, and the new lines are built.
[0014] In a possible implementation, the integration of the new energy system into the current actual construction and the building construction scheme to be carried out in the future includes: The installation process of the new energy system is integrated into the construction process at the beginning of building design, and the laying of related lines is completed at the same time to improve the consumption effect of energy, and finally increase the amount of energy generated by a single building.
[0015] The renewable green new energy development power planning method provided by the application has the beneficial effects that compared with the prior art, in the renewable green new energy development power planning method, first, the change plan of the power consumption unit in the region for the owned power consumption equipment is determined; according to the position and energy demand type of each power consumption equipment in the current region and in combination with the change plan, a plurality of supply points are marked in the region; each building in the region is preliminarily modeled, and the energy demand amount and energy demand type designed in combination with each supply point are inferred to obtain an energy reconstruction scheme.
[0016] In actual application, the energy generated by the new energy system required to be installed at the supply point is transmitted to the corresponding plurality of power consumption devices for consumption through the construction of the reconstruction scheme of the existing building. The application not only improves the new energy of the existing building in the region, but also integrates the new energy system into the current actual construction and the building construction scheme to be carried out in the future, completes the integrated construction of the new energy system and the building, and finally completes the energy supply reconstruction of the building in the region. Through the improvement of the new energy system of the existing building and the building under construction and to be constructed, the application can improve the proportion of new energy supply in the whole region, realize efficient and nearby consumption of energy, reduce the dependence on traditional energy, and optimize the limited new energy system structure. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort based on these drawings.
[0018] Figure 1 The flow chart of the power planning method for the development of renewable green new energy provided by the embodiments of the present application. DETAILED DESCRIPTION
[0019] In order to make the technical problems to be solved by the present application, technical solutions and beneficial effects more clearly, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.
[0020] Please refer to Figure 1 The power planning method for the development of renewable green new energy provided by the present application will be described. The power planning method for the development of renewable green new energy comprises the following steps: determining the change plan of the power consumption unit in the region for the power consumption equipment owned by the power consumption unit; demarcating a plurality of supply points in the region according to the positions of the power consumption equipment in the current region and the types of energy demand and combining the change plan; preliminarily modeling each building in the region, inferring an energy transformation scheme combining the energy demand amount and the energy demand type designed by each supply point, and finally constructing the transformation scheme of the existing building through demonstration, transmitting the energy generated by the new energy system installed in the supply point to the corresponding plurality of power consumption equipment for consumption; integrating the new energy system into the actual construction and the future building construction scheme, completing the integrated construction of the new energy system and the building; and finally completing the energy supply transformation of the building in the region.
[0021] The power planning method for the development of renewable green new energy provided by the present application has the beneficial effects that: compared with the prior art, the power planning method for the development of renewable green new energy in the present application firstly determines the change plan of the power consumption unit in the region for the power consumption equipment owned by the power consumption unit; demarcates a plurality of supply points in the region according to the positions of the power consumption equipment in the current region and the types of energy demand and combining the change plan; preliminarily models each building in the region, infers an energy transformation scheme combining the energy demand amount and the energy demand type designed by each supply point.
[0022] In practical application, through demonstration, the construction of the existing building modification scheme will supply the new energy system required to be installed in the power supply point to the corresponding multiple power consumption equipment for consumption. The application not only improves the new energy of the existing building in the region, but also integrates the new energy system into the current actual construction and the future building construction scheme, completes the integration of the new energy system and the building; finally completes the energy supply transformation of the buildings in the region. Through the improvement of the new energy system of the existing building and the building to be built, the proportion of new energy supply in the whole region can be improved, and the efficient local consumption of energy is realized, the dependence on traditional energy is reduced, and the limited new energy system structure is optimized.
[0023] In terms of economic benefits, the renewable green new energy development power planning method has obvious advantages. Through the new energy system transformation of existing buildings and newly built buildings, not only the procurement cost of traditional energy in the region is reduced, but also considerable economic benefits are brought to enterprises and society in the long run. On the one hand, the construction and operation of new energy system drive the development of related industries, create a large number of employment opportunities, and promote the growth of regional economy. On the other hand, with the increase of new energy supply proportion, the dependence on imported traditional energy is reduced, the risk of energy supply is reduced, and the stable development of regional economy is ensured. In addition, the efficient operation of new energy system and the local consumption of energy reduce the loss in the process of energy transmission, improve the energy utilization efficiency, and further reduce the energy cost. At the same time, the power planning method of the application can also optimize the structure of new energy system, improve the utilization rate of new energy equipment, prolong the service life of equipment, reduce the equipment maintenance cost, and save a lot of funds for enterprises and society.
[0024] From the perspective of environmental benefits, the power planning method has important significance for environmental protection. With the increase of new energy supply proportion, the use of traditional fossil energy in the region is greatly reduced, thereby significantly reducing the emission of pollutants such as carbon dioxide, sulfur dioxide and nitrogen oxides. Reduce air pollution caused by burning fossil energy, improve the air quality in the region, reduce the frequency of occurrence of haze and other adverse weather, and be beneficial to the health of residents. At the same time, the consumption of water resources is reduced, the waste water discharge in the process of energy exploitation and processing is reduced, and the water resource environment in the region is protected. In addition, the construction and operation of new energy system pay attention to the protection of ecological environment, try to reduce the damage to land, vegetation and other ecological systems, realize the coordinated progress of energy development and environmental protection, and lay a solid foundation for the sustainable development of the region.
[0025] In the face of increasingly severe climate and environmental problems, the past high-consumption and high-emission energy development model has become unsustainable, and establishing a renewable energy-based energy supply system and achieving clean and low-carbon transformation of energy development have become the trend. Since clean energy is mainly converted into electricity for use, in a sense, the power industry not only plays an important role in energy transformation, but is also a key link in promoting transformation and to some extent determines the success or failure of transformation.
[0026] Distributed new energy refers to small wind power and photovoltaic power placed in user sites or nearby. Distributed new energy for nearby power generation and decentralized power supply can effectively reduce user electricity bills, reduce power supply network losses, improve power supply quality and reliability, increase the proportion of clean energy use, improve the overall efficiency of energy resource use in society, reduce pollutant emissions, and bring huge economic and social benefits, which has very important positive significance for building a safe, stable, clean, and environmentally friendly energy supply system.
[0027] In recent years, to achieve the strategic goal of "energy saving and emission reduction" and promote high penetration and efficient use of new energy, scholars at home and abroad have paid great attention to emerging power system operation modes such as multi-energy complementation, microgrid, and energy internet to promote effective consumption of new energy.
[0028] In some embodiments of the renewable green new energy development power planning method provided in the present application, the change plan of the power consumption unit in the region for the power consumption equipment owned by the power consumption unit includes: The location and power consumption law of the main power consumption unit in the region are determined, and the power and acceptable energy types of each power consumption equipment in the power consumption unit are refined.
[0029] The change plan includes the sale, purchase, and change of the power consumption equipment.
[0030] The past simple reliance on power balance and power balance constraints cannot effectively respond to the rapid changes in net load, making the flexibility regulation capacity of the power system insufficient, and the safety of the power grid faces great risks. Therefore, it is necessary to reasonably plan flexible resources, finely model the partition load characteristics of high-proportion new energy systems, accurately consider the power regulation of partition sources, networks, loads, and storages, fully explore the flexibility potential of the source-network-load-storage sides and the supporting role of the power grid for flexibility transmission, to improve the flexibility and economy of the system.
[0031] The present application provides a renewable energy planning method, which needs to improve the existing installation and erection method, improve the degree of combination with urban buildings, and ultimately improve the laying area of new energy and increase the output of green energy, optimize the existing energy consumption, reduce the consumption of traditional resources, and protect the environment. Based on the above reasons, the development planning of the city and the laying and installation of new energy need to be considered comprehensively, and the proportion of new energy needs to be improved without affecting the aesthetics.
[0032] In some embodiments of the renewable green new energy development power planning method provided in the application, according to the positions of the current regional power consumption equipment and the types of energy demand and in combination with the change plan, a plurality of supply points are marked in the region, including: The entire region is divided in combination with the change plan and the power consumption situation of the current power consumption equipment; a corresponding supply point is set in each divided block, and the supply point is used to generate new renewable energy and simultaneously provide energy to the corresponding plurality of power consumption equipment nearby.
[0033] In order to achieve the above technical effects, it is first necessary to determine the type and corresponding proportion of the energy consumed in the current region, and also to determine the energy gap in the future period of time, including the maximum proportion of renewable energy and new energy, according to the existing energy structure, the number and type of power consumption equipment.
[0034] A specific embodiment is to determine the total energy consumption of the region in a period of time, and then analyze and refine the types and positions and types of the supplied power consumption equipment according to the total consumption in the above case. Then, according to the development of the existing equipment and the corresponding change plan, the proportion of various types of equipment in the future is calculated, and the demand for each energy can be determined according to the above speculation.
[0035] In some embodiments of the renewable green new energy development power planning method provided in the application, the buildings in the region are preliminarily modeled, including: According to the actual situation, the model of each building in the region is constructed in proportion, and the total illumination intensity, illumination angle, wind speed and wind direction of the current region are determined.
[0036] The amount of light energy and wind energy that each position of the model can accept in each time period of the day is determined.
[0037] After determining the consumption of energy at the current time point and the demand in the future period of time, the buildings in the region can be investigated and calculated accordingly, and the installation effect and final quality of different positions need to be verified. Specifically, in the implementation, the positions of the current regional power consumption equipment of different types and the future change plan need to be marked accordingly, because in the method of the application, the generated green renewable energy needs to be consumed nearby, because on the one hand it can reduce the cost of line laying and maintenance, and on the other hand it can reduce the impact on the existing power grid.
[0038] After modeling the buildings in the area and determining and investigating the relevant energy data, the next step is to develop targeted power planning schemes based on the information obtained. First, according to the light and wind energy received by buildings in different locations, combined with the location and change plan of energy consumption equipment, a reasonable energy collection and distribution path is planned. For example, for areas with sufficient light and high energy consumption, solar energy collection devices are preferred, and the power transmission line to the corresponding high-energy-consuming equipment is planned. At the same time, considering the intermittency of wind energy, energy storage devices such as batteries are reasonably matched to ensure continuous and stable power supply when wind energy is insufficient.
[0039] For different types of buildings, according to their functional characteristics and energy demand differences, further refine the power planning. For example, commercial buildings may have high daytime electricity demand, while residential homes have more concentrated electricity demand at night. According to these characteristics, energy supply strategies for different time periods are developed. In the planning process, we also need to fully consider the possible addition of buildings or energy consumption equipment in the region in the future, and reserve some power expansion space to ensure the flexibility and foresight of the power planning.
[0040] Then, the preliminary power planning scheme is simulated and verified. Using computer simulation technology, according to the actual light intensity, light angle, wind speed and direction, etc. Run the planning scheme, observe whether the energy supply and consumption of each building is balanced, and whether the entire regional power system is stable. According to the simulation results, the planning scheme is adjusted and optimized to ensure that it can run efficiently and stably under various actual conditions, achieving efficient use of renewable green new energy and reliable power supply.
[0041] Finally, the optimized power planning scheme is applied to actual construction and operation. Install solar panels, wind turbines and other energy collection equipment in the region, and lay power transmission lines according to the plan, connect energy storage devices and various energy consumption equipment. At the same time, a complete monitoring system is established to monitor the operation of the power system in real time, including energy collection, storage, consumption and equipment operating parameters, etc. so as to discover problems in time and make adjustments. With the development and changes of the region, continuously track the implementation effect of the power planning scheme, and optimize and improve it in a timely manner according to the actual situation, continuously improve the proportion of renewable green new energy in power supply, and promote the regional power system to develop in a cleaner, more efficient and sustainable direction.
[0042] After the above basic conditions are determined, energy supply points need to be set up in the system, and the purpose of setting up the supply points is to achieve the supply of a certain amount of electric energy to the electrical equipment, that is, after considering the energy demand of the electrical equipment in the region, the current available location and the actual construction of the building on the ground are combined to determine the supply point that can be used to generate new renewable energy.
[0043] In some embodiments of the renewable green new energy development power planning method provided in the application, the energy demand and the energy demand type of each supply point are combined to infer an energy transformation scheme, including: The type and amount of energy required by each supply point are determined, and the type and area of the new energy system required to be installed are inferred based on the historical data and change plan of the current region.
[0044] After the multiple supply points in the region are determined, the location and method of installing and erecting the new energy system at each supply point need to be determined. Based on the above reasons, the type of new energy required by the current supply point needs to be determined first, and then the type and area of the power generation equipment required to be erected can be determined.
[0045] In actual application, the demand for energy by each supply point, i.e., the type of energy that can be accepted, needs to be determined to determine the type and method of renewable energy and new energy. After the above conditions are determined, the buildings near the current supply point are investigated, and the main purpose of the investigation is to determine the location where the new energy system can be installed. That is, part of the purpose of the application is to transform the existing building to generate new energy, and more importantly, to directly complete energy consumption after generating new energy.
[0046] In some embodiments of the renewable green new energy development power planning method provided in the application, the energy demand and the energy demand type of each supply point are combined to infer an energy transformation scheme, including: For existing buildings, the installation location and installation method that can be performed on the model are determined, and then the transformation scheme is simulated and refined.
[0047] To explain in more detail, the existing buildings in the region need to be modeled first. The modeling does not need to be very precise, but only needs to determine the installation location of the supply point and approximately determine the area that can be laid before actual installation, and finally the amount of renewable new energy generated can be estimated accordingly.
[0048] In order to achieve the above technical effects, the installation position and method of each supply point are determined based on the light angle and intensity of the current area in combination with historical data and the current determined result after modeling, without affecting the aesthetics, and finally the erection is completed.
[0049] Through the above design, the laying area of new energy in the region can be improved, and the output of new energy renewable energy can be increased.
[0050] In some embodiments of the renewable green new energy development power planning method provided in the application, the installation position and installation method that can be performed on the model are determined, and then the reconstruction scheme is simulated and refined, including: A plurality of feasible reconstruction schemes are intelligently generated based on the requirements set at the supply point combining big data and artificial intelligence; the reconstruction scheme includes overhead of new energy systems between different buildings and partial structure removal and reconstruction of existing buildings.
[0051] Through the method of the application, on the one hand, the new energy reconstruction of existing buildings is realized, thereby increasing the amount of new energy that can be generated in the city, and on the other hand, during the construction of newly built buildings, the position and specific external shape are determined, and the final goal is to add the installation and construction of new energy power generation equipment during the construction process. Through the above method, the energy consumption of the entire building can be reduced at the beginning of the building design, and the proportion of the entire building in renewable energy supply can be improved, so that the new energy power generation device and equipment as a part of the building can generate new energy and supply energy after the completion of the entire building construction.
[0052] In some embodiments of the renewable green new energy development power planning method provided in the application, the reconstruction scheme includes overhead of new energy systems between different buildings and partial structure removal and reconstruction of existing buildings, including: First, the area required for installation of the new energy system and the amount of energy required to be generated are determined, and a plurality of to-be-confirmed schemes are randomly generated in combination with the amount of energy received by each position of the model.
[0053] The to-be-confirmed scheme is pre-installed in the model, the required cost and construction period are analyzed and inferred according to the pre-installation result, and then the feasibility is demonstrated, and finally the reconstruction scheme is generated after the feasibility demonstration.
[0054] To be more specific, first, in the process of building construction, the construction scheme of combining new energy system with infrastructure can be finally generated according to the expected effect and the actual location of the construction site combined with the local external environmental conditions. Through the above design, the laying of a larger area of new energy system on the building under construction can be realized, thereby saving a lot of subsequent installation costs. More importantly, by combining the new energy system with the actual infrastructure construction, the laying of the line is more convenient in this case, improving the aesthetics, and the laying of the line can directly and simply realize the on-site consumption of energy. More importantly, due to the convenience of installing various renewable new energy systems, the output of green energy within a single building will increase, ultimately reducing the dependence on traditional energy.
[0055] In addition, the power planning method also fully considers the operation stability of the new energy system under different weather conditions. Through long-term monitoring and analysis of regional meteorological data, possible extreme weather conditions such as heavy rain, strong wind, and snow are predicted in advance. In view of these special weather, corresponding countermeasures are formulated to ensure that the new energy system can still provide stable power support for electrical equipment under adverse conditions. For example, when designing the new energy supply point, the configuration of energy storage equipment is increased to supplement power in time when new energy power generation is insufficient; the layout of the new energy system is optimized to have better wind resistance when facing strong winds to avoid equipment damage affecting power supply. At the same time, intelligent monitoring and management of the new energy system are strengthened, advanced sensors and data analysis technology are used to master the running state of the system in real time, and potential problems are found and solved in time to further improve the reliability and stability of the new energy system and provide more reliable and efficient power protection for electrical units in the region.
[0056] In some embodiments of the renewable green new energy development power planning method provided in the present application, transmitting the energy generated by the new energy system installed at the supply point to the corresponding plurality of electrical equipment for consumption includes: The economic and feasibility of the multiple reconstruction schemes are demonstrated and sorted, and after finalizing, the existing power transmission line and system are erected and improved, and the new line is built.
[0057] In order to further improve the output of renewable energy, the laying area of new energy needs to be increased at this time. Although installing renewable new energy systems on the side wall or roof of the existing building can produce a certain amount of energy, the total laying area is still small. In order to solve this problem, the total area of the new energy system that needs to be laid can be finally determined according to the amount of electrical energy demand determined during the design of the supply point after modeling.
[0058] After the above situation is determined, a renovation plan needs to be proposed for the existing building based on the results of the previous scanning and modeling of the buildings in the area, and finally the laying of the system is completed.
[0059] In terms of social benefits, the power planning method of the present application helps to improve the overall image and competitiveness of the region. A region that actively promotes renewable green new energy can attract more green industries and innovative enterprises to settle down, promoting industrial upgrading and optimization of economic structure. These enterprises often have high environmental awareness and innovation ability, and their settlement will drive the gathering of talents and the development of technological innovation in the region, further improving the technological level and innovation ability of the region. At the same time, the widespread use of new energy can also enhance the environmental awareness and social responsibility of residents, forming a good atmosphere of social participation in environmental protection. Residents enjoy the convenience of clean and efficient energy while also paying more attention to energy sustainability issues and actively supporting and participating in environmental protection activities to contribute to the construction of a green and harmonious social environment. In addition, the power planning method of the present application can also provide experience and models for other regions to learn from, promoting the development of renewable green new energy in the country and even the world, and contributing to the solution of global energy and environmental protection problems.
[0060] In some embodiments of the power planning method for the development of renewable green new energy provided in the present application, integrating the new energy system into the current actual construction and the future construction plan includes: Integrating the installation process of the new energy system into the construction process at the beginning of building design and completing the laying of related lines to improve the energy consumption effect, and finally increasing the amount of energy that a single building can generate.
[0061] In order to make a more explicit description, first of all, after determining the required power of the current supply point, the required laying area can be determined. In the case of determining the laying area, it is necessary to combine big data and artificial intelligence to simulate various construction schemes based on the modeled building, not only that, but also to determine the cost and construction period information that each scheme may involve during the simulation process.
[0062] It should be noted that the above-mentioned renovation can be carried out between different buildings, that is, according to the difficulty and cost information of construction, the selection of different construction methods from the previous ones is realized, and finally the energy supply is met.
[0063] The above is only a preferred embodiment of the present application, and is not intended to limit the present application. Any modification, equivalent replacement and improvement made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A power planning method for the development of renewable green new energy, characterized by, The method comprises the following steps: Defining the change plan of the power consumption units in the specific area for the owned power consumption equipment; According to the location and energy demand type of each power consumption equipment in the current area, and in combination with the change plan, a plurality of supply points are marked in the area; A preliminary modeling of each building in the area is carried out, and the energy demand and energy demand type designed in combination with each supply point are used to deduce an energy reform scheme, through demonstration, the final construction of the existing building is carried out, and the energy generated by the new energy system installed in the supply point is transmitted to the corresponding plurality of power consumption equipment for consumption; The new energy system is integrated into the current actual construction and the future building construction scheme, and the integration of the new energy system and the building is completed; Finally, the energy supply reform of the buildings in the area is completed.
2. The renewable green new energy development power planning method of claim 1, wherein, The change plan of the power consumption units in the specific area for the owned power consumption equipment comprises: Determine the location and power consumption rule of the main power consumption units in the area, and refine the power and acceptable energy type of each power consumption equipment in the power consumption unit; The change plan includes the sale, purchase and change of the power consumption equipment.
3. The renewable green new energy development power planning method of claim 1, wherein, According to the location and energy demand type of each power consumption equipment in the current area, and in combination with the change plan, a plurality of supply points are marked in the area, which comprises: In combination with the change plan and the power consumption situation of each power consumption equipment in the current area, the whole area is divided; In each divided block, a corresponding supply point is set up, which is used to generate new renewable energy and provide energy to the corresponding plurality of power consumption equipment nearby.
4. The renewable green new energy development power planning method of claim 1, wherein, The preliminary modeling of each building in the area comprises: According to the actual situation, the model of each building in the area is constructed in proportion, and the overall illumination intensity, illumination angle, wind speed and wind direction of the current area are determined; Determine the amount of light and wind energy that each location of the model can accept at each time period throughout the day.
5. The renewable green new energy development power planning method of claim 4, wherein, The combination of the energy demand and energy demand type designed in combination with each supply point deduces the energy reform scheme, which comprises: Determine the type and amount of energy required by each supply point, and deduce the type and area of the new energy system required to be installed in combination with the historical data of the current area and the change plan.
6. The renewable green new energy development power planning method of claim 5, wherein, The combination of the energy demand and energy demand type designed in combination with each supply point deduces the energy reform scheme, which comprises: For existing buildings, determine the installation position and installation method that can be carried out on the model, and then simulate and refine the reform scheme.
7. The renewable green new energy development power planning method of claim 6, wherein, The determination of the installation position and installation method that can be carried out on the model, and then the simulation and refinement of the reform scheme comprise: In combination with big data and artificial intelligence, a plurality of feasible reform schemes are intelligently generated on the basis of the requirements set by the supply point; The reform scheme includes the overhead of the new energy system between different buildings and the partial structure removal and reconstruction of the existing building.
8. The renewable green new energy development power planning method of claim 7, wherein, The reform scheme includes the overhead of the new energy system between different buildings and the partial structure removal and reconstruction of the existing building, which comprises: Firstly, determine the area required for installation of the new energy system and the amount of energy required to be generated, combined with the amount of energy received by each location of the model to randomly generate a plurality of to-be-confirmed schemes; The to-be-confirmed scheme is pre-installed in the model, and the required cost and construction period are analyzed and inferred according to the pre-installation result, and then the feasibility is demonstrated, and the final reconstruction scheme is generated after the feasibility demonstration.
9. The renewable green new energy development power planning method of claim 1, wherein, The energy generated by the new energy system required to be installed at the supply point is transmitted to the corresponding plurality of power consumption equipment for consumption, which includes: The economic and feasibility demonstration of a plurality of reconstruction schemes is sorted out, and after the finalization, the existing power transmission line and system are erected and improved, and the new line is built.
10. The renewable green new energy development power planning method of claim 1, wherein, Integrating the new energy system into the current actual construction and the building construction scheme to be carried out in the future includes: Integrate the installation process of the new energy system into the construction process at the beginning of building design, and at the same time complete the laying of the related line to improve the energy consumption effect, and finally increase the amount of energy generated by a single building.