虚拟同步发电机电压闭环控制分步控制器设计

Xinran Chen, X. Ruan, Dongsheng Yang, Heng Wu, Wenxin Zhao
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引用次数: 13

摘要

虚拟同步发电机(Virtual synchronous generator, VSG)是一种通过模拟同步发电机的行为来控制分布式发电机组逆变器以支持电力系统稳定的控制方案。人们对VSG的功率级控制进行了大量的研究,但对VSG的波形质量却没有进行充分的讨论。本文分析了一种内置电压环的VSG,用于衰减死区效应对波形畸变的影响。电压环的主要组成部分是稳压器和LCL滤波器的主动阻尼。一般来说,稳压器衰减了死区效应的影响,主动阻尼抑制了LCL滤波器产生的谐振峰,使整个系统更容易稳定。基于比例谐振(PR)补偿器和电容电流反馈有源阻尼器,提出了一种分步设计电压环控制器参数的方法。通过仔细处理稳压器与主动阻尼之间的相互作用,得到了控制器参数满足系统要求的满意区域,从中可以很容易地挑选出控制器参数。仿真结果验证了内电压环的有效性。
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Step-by-step controller design of voltage closed-loop control for virtual synchronous generator
Virtual synchronous generator (VSG) is a control scheme applied to the inverter of a distributed generating unit in order to support power system stability by imitating the behavior of a synchronous generator. A lot of effort has been dedicated to investigating the power stage control of VSG, but the waveform quality of VSG is not fully discussed. This paper analyses a VSG with an inner voltage loop to attenuate waveform distortion influenced by dead-time effect. And main parts of the voltage loop are voltage regulator and active damping of the LCL filter. Generally speaking, the voltage regulator attenuates the influence of dead-time effect, and the active damping suppresses the resonance peak caused by the LCL filter and makes it easier to stabilize the whole system. Based on the proportional-resonant (PR) compensator together with capacitor-current-feedback active damping which is widely used for their effectiveness and simple implementations, a step-by-step design method of the controller parameters for voltage loop is proposed. By carefully dealing with the interaction between the voltage regulator and active damping, the satisfactory regions of the controller parameters for meeting the system specifications are obtained, from which the controller parameters can be easily picked out. Simulation results verify the effectiveness of inner voltage loop.
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