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A Current Controlled Virtual Synchronous Machine Adapted for Operation under Unbalanced Conditions

机译:适用于不平衡条件下运行的电流控制虚拟同步机

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This paper presents a comprehensive evaluation of control strategies for operation of a Virtual Synchronous Machine (VSM) under unbalanced conditions in both grid-connected and islanded mode. The basis for the evaluation is a Current Controlled VSM where a quasi-stationary virtual impedance emulates a simplified positive sequence electrical model of a synchronous machine. It is shown how three general strategies can be selected for controlling the negative sequence currents: 1) calculation of the negative sequence current references according to the desired active and reactive power flow characteristics, 2) applying a negative sequence virtual impedance resulting in unbalanced currents as in the steady-state response of a synchronous machine, or 3) operation with a negative sequence voltage controller for eliminating unbalances in the locally measured voltages. For the first approach, three objectives for shaping the power flow characteristics can be selected: I) balanced three-phase currents, II) constant instantaneous active power flow, or III) constant instantaneous reactive power flow. Comprehensive simulation results are presented to evaluate the performance and applicability under grid connected and islanded operation. The results demonstrate how utilization of the negative sequence currents to control the power flow characteristics is only applicable for grid connected operation, while the other two approaches can be utilized in both islanded and grid-connected modes. However, closed loop control for balancing the local voltages depends on a high equivalent grid impedance and is not suitable for operation in strong grid conditions.
机译:本文提出了对虚拟同步机(VSM)在不平衡条件下并网和孤岛模式下运行的控制策略的综合评估。评估的基础是电流控制的VSM,其中的准静态虚拟阻抗模拟了同步电机的简化正序电气模型。它显示了如何选择三种通用策略来控制负序电流:1)根据所需的有功和无功潮流特性计算负序电流参考,2)应用负序虚拟阻抗导致电流不平衡,如在同步电机的稳态响应中,或3)使用负序电压控制器进行操作以消除本地测量电压的不平衡。对于第一种方法,可以选择三个塑造功率流特性的目标:I)平衡的三相电流,II)恒定的瞬时有功功率流,或III)恒定的瞬时无功功率流。给出了综合仿真结果,以评估并网和孤岛运行下的性能和适用性。结果表明,如何利用负序电流来控制潮流特性仅适用于并网运行,而其他两种方法都可以在孤岛和并网模式下使用。但是,用于平衡局部电压的闭环控制取决于较高的等效电网阻抗,因此不适合在强电网条件下运行。

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