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A predictive control scheme for minimizing power losses in flexible Shunt Switching Compensator system

机译:一种预测控制方案,可实现柔性分流切换补偿器系统中功率损耗

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A scalable predictive controller is proposed for coordinating multiple Shunt Switching Compensators (SSCs) to serve flexible compensation objectives while minimizing the power losses. A strategy utilizing Current Physical Component (CPC) theory and Recursive Discrete Fourier Transformation is used to orthogonally decompose the SSC reference currents into individual physical components. These components are associated with scaling coefficients which define the percentage of each desired component within the SSC compensated current, and therefore, providing flexibility and controllability for different compensation objectives. The proposed supervisory controller aims at computing each individual SSC's contribution to the compensation task based on their power ratings and then reflects the interaction of SSCs on the scaling coefficients. The proposed Model-Based Predictive control scheme provides automatic, fast, and real time computation of the reference current coefficients to ensure that energy management application employing this control scheme gives maximum power effectiveness in distributed power compensators system, such as electric shipboard system. MATLAB/Simulink simulation results of a two SSC system are presented and discussed.
机译:提出了一种可伸缩的预测控制器,用于协调多个分流切换补偿器(SSC),以提供灵活的补偿目标,同时最小化功率损耗。利用当前物理分量(CPC)理论和递归离散傅里叶变换的策略用于正交将SSC参考电流分解为单独的物理分量。这些组件与缩放系数相关联,该系数定义了SSC补偿电流内的每个所需组件的百分比,因此为不同的补偿目标提供了灵活性和可控性。拟议的监督控制员旨在根据其电力额定值计算每个单独的SSC对补偿任务的贡献,然后反映SSCS对缩放系数的交互。所提出的基于模型的预测控制方案提供了基于基于模型的预测控制方案,提供了参考电流系数的自动,快速,实时计算,以确保采用该控制方案的能量管理应用在分布式功率补偿器系统(如电船舶系统)中提供最大功率效率。提出和讨论了两个SSC系统的MATLAB / SIMULINK仿真结果。

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