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Distributed virtual inertia based control of multiple photovoltaic systems in autonomous microgrid

机译:基于分布虚拟惯性的自治微电网中多个光伏系统的控制

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The large inertia of a traditional power system slows down system U+02BC s frequency response but also allows decent time for controlling the system. Since an autonomous renewable microgrid usually has much smaller inertia, the control system must be very fast and accurate to fight against the small inertia and uncertainties. To reduce the demanding requirements on control, this paper proposes to increase the inertia of photovoltaic U+0028 PV U+0029 system through inertia emulation. The inertia emulation is realized by controlling the charging U+002F discharging of the direct current U+0028 DC U+0029-link capacitor over a certain range and adjusting the PV generation when it is feasible and U+002F or necessary. By well designing the inertia, the DC-link capacitor parameters and the control range, the negative impact of inertia emulation on energy efficiency can be reduced. The proposed algorithm can be integrated with distributed generation setting algorithms to improve dynamic performance and lower implementation requirements. Simulation studies demonstrate the effectiveness of the proposed solution.
机译:传统电力系统的大惯性减慢了系统U + 02BC的频率响应,但也留出了足够的时间来控制系统。由于自主可再生微电网通常具有小得多的惯性,因此控制系统必须非常快速和准确,以对抗小的惯性和不确定性。为了降低对控制的苛刻要求,本文提出通过惯性仿真来增加光伏U + 0028 PV U + 0029系统的惯性。通过在一定范围内控制直流U + 0028 DC U + 0029-link电容器的充电U + 002F放电并在可行的情况下以及在需要U + 002F的情况下调整PV生成,来实现惯性仿真。通过精心设计惯性,直流母线电容器参数和控制范围,可以减少惯性仿真对能源效率的负面影响。所提出的算法可以与分布式发电设置算法集成,以提高动态性能并降低实现要求。仿真研究证明了所提出解决方案的有效性。

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