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Passivity-Based Control by Series/Parallel Damping of Single-Phase PWM Voltage Source Converter

机译:单相PWM电压源转换器的串联/并联阻尼基于无源的控制

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摘要

This paper describes a detailed design procedure for passivity-based controllers developed using the Brayton–Moser (BM) framework. Several passivity-based feedback designs are presented for the voltage-source converter, specifically for the H-bridge converter, since nowadays it is one of the preferred solutions to connect direct current (dc) loads or distributed sources to the alternating current (ac) grid. Independent of the operating mode, namely, the rectifier and regenerative operating mode, the achieved control aims are: high power factor correction in the ac-side and optimal dc voltage regulation capability in the dc-side. The proposed controllers can use series or parallel damping-based solutions for the error dynamics, naturally providing the conditions for stability and tuning of control parameters. In addition, the BM structure facilitates the addition of virtual resistance-inductance-capacitance (RLC) filter circuits to the control design for the rejection of low frequency harmonics. The effectiveness of series/parallel damping is investigated in case of abrupt changes in the load, using conductance estimators. Simulation and experimental results validate the analysis.
机译:本文介绍了使用Brayton-Moser(BM)框架开发的基于无源性的控制器的详细设计过程。针对电压源转换器,特别是针对H桥转换器,提出了几种基于无源性的反馈设计,因为如今,它是将直流(dc)负载或分布式电源连接到交流(ac)的首选解决方案之一。网格。与操作模式(即整流器和再生操作模式)无关,所实现的控制目标是:交流侧的高功率因数校正和直流侧的最佳直流电压调节能力。提出的控制器可以使用基于串联或并联阻尼的解决方案来解决误差动态变化,自然为稳定性和控制参数的调整提供了条件。此外,BM结构有助于在控制设计中增加虚拟电阻-电感-电容(RLC)滤波器电路,以抑制低频谐波。使用电导估算器,可以在负载突然变化的情况下研究串联/并联阻尼的有效性。仿真和实验结果验证了该分析。

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