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Low frequency operation of modular multilevel matrix converter using optimization-oriented predictive control scheme

机译:基于面向优化的预测控制方案的模块化多电平矩阵转换器的低频操作

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In power converters, common challenge for current reference tracking employing model predictive control (MPC) is the high computational burden. This issue is more obvious when solving optimal control problems over prediction horizons. To manage and enhance the computational efficiency of widely used control strategies, an integrated perturbation analysis and sequential quadratic programming (IPA-SQP) solver is used to achieve the system constrained optimization and lower sampling times, hence reducing the computational complexity. A Finite-Control-Set Model Predictive Control (FCS-MPC) for current control in cascaded H-bridge Modular Multilevel Matrix Converter (M3C) is also developed. The M3C is connected to a low frequency AC system, which has an operating frequency less than 20 Hz. The proposed control scheme is therefore introducing an alternative for practical implementation. Simulation results for a closed-loop system with low frequency output side for a 9-level M3C is included to validate the main findings.
机译:在功率转换器中,采用模型预测控制(MPC)进行电流参考跟踪的共同挑战是计算量大。在预测范围内解决最优控制问题时,此问题更加明显。为了管理和提高广泛使用的控制策略的计算效率,使用集成的扰动分析和顺序二次规划(IPA-SQP)求解器来实现系统约束的优化和较短的采样时间,从而降低了计算复杂性。还开发了用于级联H桥模块化多电平矩阵转换器(M3C)中电流控制的有限控制模型预测控制(FCS-MPC)。 M3C连接到低频AC系统,该系统的工作频率小于20 Hz。因此,提出的控制方案正在为实际实施引入替代方案。包含了针对9级M3C的具有低频输出侧的闭环系统的仿真结果,以验证主要发现。

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