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On critical timescale of real-time power balancing in power systems with intermittent power sources

机译:具有间歇性电源的电力系统中实时功率平衡的关键时间尺度

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From the perspective of power balancing, we consider in this paper the timescale of real-tithe dispatch in power systems with high penetration of intermittent power sources. Due to the integration of intermittent power sources, real-time dispatch must be employed in the process of power balancing. The hierarchy of power system operation is typically comprised of the short-term scheduling, the real-time dispatch, and the automatic generation control (AGC). Therein, the AGC is the last-level defense of the systemwide power balancing, which has limited power adjustment capability. Consequently, the real-time dispatch must eliminate as much power imbalance as possible, and its capability of doing so depends on its timescale. Based on the statistical forecast uncertainty functions, a quantified relation between the uncertainty level of the power system and the critical timescale for real-time dispatch is established in this paper. Simulations demonstrate the effectiveness of the proposed formula. (C) 2017 Elsevier B.V. All rights reserved.
机译:从功率平衡的角度,我们考虑了间歇性电源的高渗透率的电力系统中实时调度的时间尺度。由于集成了间歇性电源,因此在功率平衡过程中必须采用实时调度。电力系统运行的层次结构通常包括短期调度,实时调度和自动发电控制(AGC)。其中,AGC是全系统功率平衡的最后一道防线,功率调整能力有限。因此,实时调度必须消除尽可能多的功率不平衡,其能力取决于其时间范围。基于统计预测不确定性函数,建立了电力系统不确定性水平与实时调度关键时标之间的量化关系。仿真证明了所提出公式的有效性。 (C)2017 Elsevier B.V.保留所有权利。

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