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Advanced vector control for voltage source converters connected to weak grids

机译:连接到弱电网的电压源转换器的高级矢量控制

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This paper addresses an advanced vector current control for a voltage source converter (VSC) connected to a weak grid. The proposed control methodology permits high-performance regulation of the active power and the voltage for the feasible VSC range of operation. First, the steady state characteristics for a power converter connected to a very weak system with a short circuit ratio (SCR) of 1 are discussed in order to identify the system limits. Then, the conventional vector control (inner loop) and the conventional power/voltage control (outer loop) stability and frequency responses are analyzed. From the analysis of the classic structure, an enhanced outer loop based on a decoupled and gain-scheduling controller is presented and its stability is analyzed. The proposed control is validated by means of dynamic simulations and it is compared with classic vector current control. Simulation results illustrate that the proposed control system could provide a promising approach to tackle the challenging problem of VSC in connection with weak AC grids.
机译:本文介绍了用于连接到弱电网的电压源转换器(VSC)的高级矢量电流控制。所提出的控制方法允许在可行的VSC操作范围内对有功功率和电压进行高性能调节。首先,讨论了连接到短路比(SCR)为1的非常弱的系统的功率转换器的稳态特性,以便确定系统极限。然后,分析了传统的矢量控制(内环)和常规的电源/电压控制(外环)的稳定性和频率响应。通过对经典结构的分析,提出了一种基于解耦和增益调度控制器的增强型外环,并对其稳定性进行了分析。通过动态仿真验证了所提出的控制方法,并将其与经典的矢量电流控制方法进行了比较。仿真结果表明,所提出的控制系统可以提供一种有希望的方法来解决与弱交流电网有关的VSC的挑战性问题。

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