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Virtual Synchronous Generator with Self-adaptive Power Regulation Ability in Microgrid

机译:虚拟同步发电机具有微电网的自适应功率调节能力

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The concept of virtual synchronous generator (VSG) is regarded to be a friendly grid-connected method for renewable energies. As the VSG can participate in grid power regulation automatically as conventional generators, a reserve capacity is needed when the VSG operates at rated power, and the stronger power regulation ability of the VSG, the larger reserve capacity is needed. However, a large reserve capacity will result in low hardware utilization because the VSGs used for renewable energies connection can only operate at rated power in few time. In this paper, a modified VSG with self-adaptive power regulation ability is proposed by adopting a variable unit power regulation coefficient based on fuzzy logical controller. The modified VSG can regulate its power regulation ability automatically according to its output power and the deviation value of the system frequency, thus, a small reserve capacity is needed when the VSG operates at rated power to improve its hardware utilization, meanwhile, the VSG will get a stronger power regulation ability when it operates on light-load to improve the transient characteristics of the microgrid. A microgrid model was built based on Matlab/Simulink and simulation results proved the modified VSG to be effective.
机译:虚拟同步发电机(VSG)的概念被认为是可再生能源的友好网格连接方法。由于VSG可以随着传统发电机自动参与电网功率调节,当VSG在额定功率下运行时,需要储备容量,并且VSG的功率调节能力较强,因此需要更大的储备容量。但是,大量储备容量将导致硬件利用率低,因为用于可再生能量连接的VSG只能在几个时间内以额定功率运行。本文通过采用基于模糊逻辑控制器采用可变单元功率调节系数提出了一种具有自适应功率调节能力的改进的VSG。改进的VSG可以根据其输出功率和系统频率的偏差值自动调节其功率调节能力,因此,当VSG以额定功率运行以提高其硬件利用率时,需要小储备容量,同时,VSG将当它在轻负载下运行时,获得更强的功率调节能力,以提高微电网的瞬态特性。基于Matlab / Simulink的微电网模型建立了模拟结果,证明了修改的VSG有效。

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