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Model predictive control of DSTATCOM employing a single DC source cascaded H-bridge multilevel inverter in a weak distribution system

机译:一种模型预测控制DSTATCOM在弱分配系统中采用单直流源级联H桥多晶逆变器的模型预测控制

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This paper presents the performance of distribution static compensator (DSTATCOM) for load compensation in a weak distribution system. The DSTATCOM topology is realized using a single DC source based cascaded H-bridge multilevel inverter (SDCHBMLI). In SDCHBMLI, the multilevel waveform is generated by cascading the output of the transformers connected to individual full-bridge cells. The use of single DC source eliminates the requirement for capacitor voltage balancing, which is one of the limitations of diode-clamped and flying-capacitor based multilevel inverters. Also, the transformers in SDCHBMLI provide inbuilt isolation between the DSTATCOM and the distribution system. In a weak distribution system, feeder impedances make the voltages at point of common coupling (PCC) susceptible to distortions. To improve the PCC voltage waveform, shunt filter capacitors are incorporated in each phase, which make the system more complex to control. In this paper, the DSTATCOM is controlled using Finite Control Set Model Predictive Control (FCS-MPC) technique, which can independently ensure desired compensator current tracking and PCC voltage improvement simultaneously. The operation of proposed DSTATCOM has been verified using PSCAD/EMTDC. The system behavior is simulated for load step changes and voltage sag condition. The robustness of the control algorithm is also validated with variations in model parameters.
机译:本文介绍了分布静态补偿器(DSTATCOM)在弱分配系统中的负载补偿的性能。使用基于单个DC源的级联H桥多级逆变器(SDCHBMLI)实现DSTATCOM拓扑。在SDCHBMLI中,通过级联连接到各个全桥电池的变压器的输出来生成多级波形。单个DC源的使用消除了电容器电压平衡的要求,这是二极管夹紧和基于飞级多级逆变器的限制之一。此外,SDCHBMLI中的变压器在DSTATCOM和分配系统之间提供内置隔离。在弱分配系统中,进料器阻抗使得易于扭曲的共同耦合点(PCC)的电压。为了提高PCC电压波形,在每个相中并入并联滤波器电容器,使系统更加复杂以控制。在本文中,使用有限控制设定模型预测控制(FCS-MPC)技术来控制DSTATCOM,其可以独立地确保所需的补偿器电流跟踪和同时PCC电压改进。使用PSCAD / EMTDC验证了所提出的DSTATCOM的操作。为负载步骤变化和电压下滑条件模拟系统行为。控制算法的鲁棒性也具有模型参数的变化。

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