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THE ENERGY SYSTEM DEFINED BY PV: BALANCING GENERATION AND LOAD VIA ADEQUATE PLANT DESIGN AND LOAD ADAPTATION

机译:通过PV定义的能量系统:通过适当的工厂设计和负载适应平衡生成和负载

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In the foreseeable future, sustainable electrical energy systems should be capable to handle up to 100% of renewable energy contribution. Due to the recent price-drops, PV will play a major role in the global renewable energy portfolio. The technical implications of this development (also referred to as "energy transition" in Germany) in all areas electricity supply (generation, transmission, distribution, management) are manifold and consequently lead to a new system design. For the effective integration of PV the major challenges are volatile generation given by sun's position, actual weather conditions, and the load level. On one hand the article addresses the generation side by adapting the PV power plant layout to meet the load requirements (eg., via azimuth and tilt angle modification to achieve peak power output during periods of high demand and higher prices on the spot market, or via thermal conditioning of PV modules (e.g. more power output in the morning), and on the other hand the article discusses several possibilities of load management (e.g., load shifting, inducements, load adaptation, appropriate market design).
机译:在可预见的未来,可持续电能系统应能够处理高达100%的可再生能源贡献。由于最近的价格下降,PV将在全球可再生能源组合中发挥重要作用。在所有领域的电力供应(一代,传播,分配,管理)中,这种发展的技术含义(也称为德国能源转型“)是歧管,因此导致新的系统设计。对于PV的有效整合,主要挑战是Sun的位置,实际天气条件和负载水平给出的挥发性一代。一方面,物品通过调整光伏电站布局来满足负载要求(例如,通过方位角和倾斜角度修改,以实现高需求期间的峰值功率输出,或者通过PV模块的热调节(例如早上更多的功率输出),另一方面,文章讨论了若干负载管理的可能性(例如,负载转移,诱导,负载适应,适当的市场设计)。

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