四腿电源变换器的预测控制

V. Yaramasu, M. Rivera, Bin Wu, José R. Rodríguez
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引用次数: 14

摘要

本文研究了二电平和三电平四支路电压源变换器的有限控制集模型预测控制。分别针对并网分布式发电和单机分布式发电的应用,提出了预测电流控制和预测电压控制方案。根据四脚变换器的开关状态,建立了负载电流、负载电压、直流电容电压和VSC端子电压的离散时间模型。利用PCC方案定义了一个代价函数,以最小化参考电流与预测电流之间的误差。同样,在PVC方案中,代价函数处理参考电压与预测负载电压之间误差的最小化。考虑了三电平四脚VSCs对直流链路分路电容电压的平衡。选择成本函数最小的最优开关状态,并直接应用于四腿VSC,而不涉及线性调节器和调制阶段。通过考虑单/三相、平衡/不平衡和线性/非线性负载的仿真结果验证了所提出的PCC和PVC策略。
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Predictive control of four-leg power converters
In this paper, finite control-set model predictive control of two-level and three-level four-leg voltage source converters (VSCs) is presented. The predictive current control (PCC) and predictive voltage control (PVC) schemes are presented considering grid-connected and standalone distributed generation applications respectively. The discrete-time model of load currents, load voltages, DC-link capacitors voltage and VSC terminal voltages is formulated in terms of four-leg converter switching states. A cost function is defined with the PCC scheme to minimize the error between reference and predicted load currents. Similarly, in PVC scheme, the cost function deals with the minimization of error between reference and predicted load voltages. The balancing of split DC-link capacitors voltage is considered with the three-level four-leg VSCs. The optimal switching states which minimize the cost function are chosen and applied to the four-leg VSC directly without involving linear regulators and modulation stage. The proposed PCC and PVC strategies are verified through simulation results considering single-/three-phase, balanced/unbalanced and linear/nonlinear loads.
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