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AGC Asynchronous Tuning for Improving PV Consumption in the Energy Imbalance Market

机译:AGC异步调整可改善能源不平衡市场中的光伏消耗

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The soaring installation of volatile Photovoltaic (PV) source in both utility-scale and distributed scale renders power systems susceptible to solar dynamics. Automatic generation controls (AGC) parameters are normally determined without any further adaptation, making it a challenge for multi-area interconnected power systems balancing the frequency with the PV integration. Considering the synchronous updating issue of the multi-area power system, an asynchronous tuning method is proposed in this paper to help power systems refine their optimal AGC parameters for better power transfer control. The phasor measurement units (PMU) based data has been considered for the proposed tuning method as well as the other data format. A performance study with manual, two-step tuned and asynchronous tuned AGCs has been conducted on a five-area power system in real-time digital simulator (RTDS). Results present that the asynchronous method provides optimal AGCs for the test five-area power system with PV stations. Results also demonstrate a better frequency and tie-line power response performance with the proposed method.
机译:公用事业规模和分布式规模的挥发性光伏(PV)源的飙升安装使电力系统容易受到太阳动力的影响。自动发电控制(AGC)参数通常无需进一步调整即可确定,这对于平衡频率与PV集成的多区域互连电力系统来说是一个挑战。考虑到多区域电力系统的同步更新问题,本文提出了一种异步调整方法,以帮助电力系统优化其最佳AGC参数,以实现更好的电力传输控制。基于相量测量单元(PMU)的数据已被考虑用于所提出的调整方法以及其他数据格式。在实时数字模拟器(RTDS)的五区域电力系统上,进行了手动,两步调谐和异步调谐AGC的性能研究。结果表明,异步方法为具有光伏电站的测试五区域电力系统提供了最佳的AGC。结果还表明,所提出的方法具有更好的频率和联络线功率响应性能。

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