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Stability Constrained Day Ahead Unit Commitment with Maximizations of Spinning Reserve for A PV Embedded Electric Grid

机译:稳定性约束一天的旋转储备最大限度的一天承诺为光伏嵌入式电网的最大化

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Unit commitment grows to be a complex issue because of the restructuring of the power system and the escalation of the inclusion of different types of distribution generation sources are increasingly restricted. These sources are significantly lower than conventional sources. They also synchronize grid problems as electricity cannot be transmitted over long distances and therefore deliver localized energy consumption. In this paper, unit commitment (UC) has been carried out with the integration solar photovoltaic (PV) into the power system with optimum allocation of spinning reserves and an assessment of reliability and load loss. The ‘Loss of Load Probability’ (LOLP) index is used to determine the reliability level of the results obtained in UC calculations, the Spinning Reserve (SR) is a constant value and is not differing in terms of variation in the solar generation. Here, the analysis has been carried out for measuring the optimal spinning reserve with respect to the power injection variation. The integration of solar energy into the power system, two systems (four generators and ten generating systems) uses dynamic programming techniques and compares the results with the results obtained without considering optimal LOLP, SR and solar energy sources.
机译:由于电力系统的重组,单位承诺增长是一个复杂的问题,并且升级不同类型的分布生成来源的升级越来越受到限制。这些来源明显低于传统来源。它们还将电网问题同步为电力不能长距离传输,因此提供局部能耗。在本文中,单位承诺(UC)已经通过集成太阳能光伏(PV)进行到电力系统中,具有纺纱储备的最佳分配和可靠性和负载损失的评估。 “负载概率损失”(LOLP)索引用于确定在UC计算中获得的结果的可靠性水平,旋转储备(SR)是恒定值,并且在太阳能发生的变化方面没有差异。这里,已经进行了分析,用于测量相对于功率注射变化的最佳纺丝储备。太阳能集成到电力系统中,两个系统(四个发生器和十个生成系统)使用动态编程技术,并将结果与​​在不考虑最佳LOLP,SR和太阳能源的情况下获得的结果进行比较。

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