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A Novel Multi-Stage Fuel Cost Minimization in a VSC-Based Microgrid Considering Stability, Frequency, and Voltage Constraints

机译:考虑稳定性,频率和电压约束的基于VSC的微电网中的新型多阶段燃料成本最小化

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This paper presents a multi-stage fuel consumption minimization method in an autonomous voltage source converter (VSC)-based microgrids considering microgrid small signal stability (SSS) margin, frequency and voltage regulation, and the minimum and maximum allowable range of active and reactive output power of VSCs. In VSC-based microgrid, the parameters of each VSC power sharing controller have significant influence on microgrid SSS margin, frequency and voltage regulation, and the ratio of active and reactive power shared between VSCs. Considering all of these effects in fuel consumption minimization method with straightforward technique leads to having a complicated constrained optimization problem, which cannot be solved in a short time. The computation time of solving this optimization problem is very important in practical applications. In order to eliminate this problem, a multi-stage method is developed in this paper. This method can optimize the fuel consumption and consider the output active and reactive power limit, SSS margin, and frequency and voltage regulation in different stages without significant interactions on each other. Hence, the computation time is strongly reduced. The simulation results in a microgrid, which has a wind turbine, two gas turbines, and a micro-turbine with heat load, demonstrate the effectiveness of the proposed method.
机译:本文提出了一种基于自主电压源转换器(VSC)的微电网中的多级燃料消耗最小化方法,该方法考虑了微电网小信号稳定性(SSS)裕度,频率和电压调节以及有功和无功输出的最小和最大允许范围VSC的力量。在基于VSC的微电网中,每个VSC功率共享控制器的参数都会对微电网SSS裕度,频率和电压调节以及VSC之间共享的有功功率和无功功率的比率产生重大影响。以简单的技术考虑燃料消耗最小化方法中的所有这些效果导致具有复杂的约束优化问题,这不能在短时间内解决。解决此优化问题的计算时间在实际应用中非常重要。为了消除这个问题,本文提出了一种多阶段的方法。这种方法可以优化燃料消耗,并考虑输出有功功率和无功功率极限,SSS裕度以及不同阶段的频率和电压调节,而彼此之间没有明显的相互作用。因此,大大减少了计算时间。在具有风力涡轮机,两个燃气涡轮机和带有热负荷的微型涡轮机的微电网中的仿真结果证明了该方法的有效性。

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