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Concept study of microgrid dispatch strategy for solar thermal power plant with thermal storage

机译:带蓄热的太阳能热电厂微电网调度策略的概念研究

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摘要

Complex grid systems have been gradually replaced by smaller and simpler grid systems called Microgrids. Integration of a solar thermal power generation systems into Microgrids open a new horizon of renewable energy power generation to achieve the supply and demand balance of electricity. Microgrid dispatch strategy is a control method of energy balance between power generation and electricity consumption. A thermal storage integrated into the system buffers the intermittency of solar radiation used as the heat source of the power generation system. The daily starting time for the power generation is determined by the dispatch strategy in search of minimum power from the conventional grid and maximum electricity generation from the solar thermal power generation system. In the simulation stage, the heat energy available for power generation and amount of thermal energy saved in the thermal storage is calculated at each time step using measured solar radiation data as the heat source and load profile data as the consumption required. Based on the simulation result, the power generation starting time for the next day is determined. The effectiveness of the proposed dispatch strategy is demonstrated by obtaining the best starting time and identifying minimum power required from the conventional grid. The power supply from the conventional grid is reduced by 10% by applying the proposed methodology.
机译:复杂的网格系统已逐渐被更小的,更简单的网格系统(称为微网格)取代。将太阳能热发电系统集成到微电网中为可再生能源发电开辟了新的视野,以实现电力供需平衡。微电网调度策略是一种控制发电量和用电量之间能量平衡的方法。集成到系统中的蓄热器可缓冲用作发电系统热源的太阳辐射的间歇性。发电的每日开始时间由调度策略确定,以寻找常规电网的最小功率和太阳能热发电系统的最大发电量。在模拟阶段,使用测量的太阳辐射数据作为热源,并使用负荷曲线数据作为所需消耗量,在每个时间步长上计算可用于发电的热能和存储在热能中的热量。基于模拟结果,确定第二天的发电开始时间。通过获得最佳启动时间并确定常规电网所需的最小功率,可以证明所提出的调度策略的有效性。通过应用建议的方法,传统电网的电源减少了10%。

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