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The Optimization of Distributed Photovoltaic Comprehensive Efficiency Based on the Construction of Regional Integrated Energy Management System in China

机译:基于中国区域综合能源管理体系建设的分布式光伏综合效率优化

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In the context of energy crisis, environmental pollution, and energy abandoning in the large-scale centralized clean energy generation, distributed energy has become an inevitable trend in the development of China’s energy system. Distributed photovoltaic boasts great potential for development in China due to resource advantages and policy support. However, we need improve the efficiency of photovoltaic generation, which is restricted by technology and dislocation of supply and demand. With a view to optimizing the efficiency of distributed photovoltaic, based on the concept of comprehensive efficiency, this paper discusses the influencing factors and chooses the optimization direction according to system dynamics (SD). The optimizing content is further clarified on the basis of energy management system. From the perspective of technology, this paper puts forward optimization methods from resource side, energy conversion and demand side, and the simulation results of applying the three methods verify the feasibility of the method. Comprehensive efficiency would be improved as the result of regional integrated energy management system and policy mechanisms. The conclusions of this paper will provide theoretical basis and optimized reference for the improvement of distributed photovoltaic comprehensive utilization in China.
机译:在能源危机,环境污染和大规模集中式清洁能源发电中废弃能源的背景下,分布式能源已成为中国能源系统发展的必然趋势。由于资源优势和政策支持,分布式光伏在中国具有巨大的发展潜力。但是,我们需要提高光伏发电的效率,这受技术和供需错位的限制。为了优化分布式光伏的效率,基于综合效率的概念,讨论了影响因素,并根据系统动力学(SD)选择了优化方向。在能源管理系统的基础上进一步明确了优化内容。从技术的角度出发,从资源,能源转化和需求三个方面提出了优化方法,并通过三种方法的仿真结果验证了该方法的可行性。区域综合能源管理系统和政策机制的结果将提高综合效率。本文的结论将为改善我国分布式光伏综合利用提供理论依据和优化参考。

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