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State-space model and PQ operating zone analysis of hybrid MMC

机译:混合MMC的状态空间模型和PQ操作区分析

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A steady-state time-invariant (SSTI) state-space model is proposed in this paper for the hybrid modular multilevel converter (hybrid MMC). To analyze the internal dynamics of the hybrid MMC, the phasor modelling method is employed with considering three different frequency components in modulation signals. Originating from the state-space model, the steady-state model is obtained for analytically illustrating operating characteristics of the hybrid MMC. A 'scan and check' method is proposed to determine the feasible PQ operating zone of the hybrid MMC with considering multiple operating constraints, especially the requirement for successful voltage balancing of half-bridge sub-modules (HBSMs). The accuracy of the state-space model is verified by comparing the time-domain response with the equivalent electromagnetic model of a hybrid MMC in PSCAD/ EMTDC. Feasible operating zones of the tested system under different DC terminal voltages are calculated. The effects of different operating constraints on limiting the PQ operating zone are analyzed. The impact of converter parameters such as the sub-module ratio, the arm reactance and the sub-module capacitance on the operating zone is presented in detail.
机译:针对混合模块化多电平转换器(混合MMC),提出了稳态时不变(SSTI)状态空间模型。为了分析混合MMC的内部动力学,采用了相量建模方法,同时考虑了调制信号中的三个不同频率分量。从状态空间模型出发,获得了稳态模型,用于分析性地说明混合MMC的工作特性。提出了一种“扫描和检查”方法来确定混合MMC的可行PQ工作区,其中考虑了多个操作约束,尤其是对半桥子模块(HBSM)成功实现电压平衡的要求。通过将时域响应与PSCAD / EMTDC中混合MMC的等效电磁模型进行比较,可以验证状态空间模型的准确性。计算了在不同的直流端子电压下,被测系统的可行工作区。分析了不同操作约束对限制PQ操作区域的影响。详细介绍了转换器参数(例如子模块比率,臂电抗和子模块电容)对操作区域的影响。

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