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Linear and Sliding-Mode Control Design for Matrix Converter-Based Unified Power Flow Controllers

机译:基于矩阵转换器的统一电力流量控制器的线性和滑模控制设计

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摘要

This paper presents the design and compares the performance of linear, decoupled and direct power controllers (DPC) for three-phase matrix converters operating as unified power flow controllers (UPFC). A simplified steady-state model of the matrix converter-based UPFC fitted with a modified Venturini high-frequency pulse width modulator is first used to design the linear controllers for the transmission line active (P) and reactive (Q) powers. In order to minimize the resulting cross coupling between P and Q power controllers, decoupled linear controllers (DLC) are synthesized using inverse dynamics linearization. DPC are then developed using sliding-mode control techniques, in order to guarantee both robustness and decoupled control. The designed P and Q power controllers are compared using simulations and experimental results. Linear controllers show acceptable steady-state behaviour but still exhibit coupling between P and Q powers in transient operation. DLC are free from cross coupling but are parameter sensitive. Results obtained by DPC show decoupled power control with zero error tracking and faster responses with no overshoot and no steady-state error. All the designed controllers were implemented using the same digital signal processing hardware.
机译:本文介绍了设计和比较线性的性能,去耦并如统一潮流控制器(UPFC)操作三相矩阵变换器直接功率控制器(DPC)。所述基于转换器矩阵UPFC的简化稳态模型装配有改性范德瑞尼高频脉冲宽度调制器被首先用于设计传输线路活性(P)和无功(Q)提供电源的线性控制器。为了最大限度地减少P和Q功率控制器之间所产生的交叉耦合,去耦线性控制器(DLC)使用逆动力学线性化合成。然后DPC使用滑模控制技术的发展,以保证双方的鲁棒性和解耦控制。所设计的P和Q功率控制器使用的模拟和实验结果进行比较。线性控制器显示可接受的稳态行为,但仍表现出过渡运转P和Q功率之间的耦合。 DLC是由交叉耦合免费的,但有参数敏感。通过DPC获得的结果显示去耦,没有过冲和无稳态误差零误差跟踪和更快的响应功率控制。所有设计的控制器使用相同的数字信号处理硬件实现。

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