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Sample Entropy Based Net Load Tracing Dispatch of New Energy Power System

机译:基于样本熵的新能源电力系统净负荷跟踪调度

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The high-proportion of renewable energies is gradually becoming one of the main power supply sources and bringing strong uncertainties to the power grid. In this paper, a sample entropy (SampEn) based net load tracing dispatch strategy with a specific thermal generating mode is proposed. In this strategy, renewable energies are fully and preferentially consumed by electric loads, turned to net loads, to maximize the utilization of renewable energies. SampEn theory is utilized to evaluate the complexity of net load time series, based on which, the traditional power generators trace the complexity of the net load flexibly. According to the SampEn, a specific generating model of thermal generators is determined and the cooperation between thermal generators and pumped storage is realized, aiming at reducing the ramp power of thermal generators and increasing the throughput of pumped storage. The experiment simulation is developed on the 10-unit test system. Results show that the ramping power of the thermal generators are reduced 43% and 13% in the two cases together with the throughput of pumped storage is increased 44% and 27% on the premise that the economy of the system is maintained and renewable energies are fully consumed. Therefore, the efficiency and reasonability of the proposed dispatch strategy are confirmed.
机译:高比例的可再生能源正逐渐成为主要的供电来源之一,给电网带来了很大的不确定性。本文提出了一种基于样本熵(SampEn)的具有特定生热模式的净负荷跟踪调度策略。在此策略中,可再生能源被电力负荷充分优先消耗,转为净负荷,以最大程度地利用可再生能源。利用SampEn理论评估净负荷时间序列的复杂度,在此基础上,传统的发电机可以灵活地追踪净负荷的时间序列。根据SampEn,确定了特定的热力发电机发电模型,并实现了热力发电机与抽水蓄能器之间的协作,旨在降低热力发电机的斜坡功率并提高抽水蓄能器的吞吐量。实验仿真是在10个单元的测试系统上开发的。结果表明,在保持系统经济性和可再生能源为前提的情况下,两种情况下,热发电机的斜坡功率分别降低了43%和13%,抽水蓄能的吞吐量分别提高了44%和27%。完全消耗。因此,确认了所提出的调度策略的效率和合理性。

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