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Stability analysis and design of stable DC distribution systems through positive feed-forward control using a novel passivity-based stability criterion

机译:使用基于无源性的新型稳定准则通过正前馈控制进行稳定直流配电系统的稳定性分析和设计

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摘要

DC distribution systems, consisting of several feedback-controlled converters integrated together to form a complex interconnected system, suffer from potential degradation of stability caused by negative incremental impedances due to the presence of constant power loads. Due to the complexity of integrated DC distribution systems, analysis and design of such systems to guarantee system stability and performance is a difficult problem. As an active technique to solve subsystem interaction problem and improve system stability, the Positive Feed-Forward (PFF) Control is proposed in combination with a novel Passivity-Based Stability Criterion. In particular, the PFF control is designed based on imposing passivity of the overall bus impedance. If passivity of the overall DC bus impedance is ensured, stability is guaranteed as well. The design formulation for the PFF controller, so that both stability and performance are guaranteed, is discussed in detail. The approach results in greatly improved stability and damping of transients on the DC bus voltage and is validated by both simulations and experimental results.
机译:直流配电系统由几个反馈控制的转换器组成,这些转换器集成在一起形成一个复杂的互连系统,由于存在恒定的功率负载,因此会因负增量阻抗而导致稳定性潜在下降。由于集成直流配电系统的复杂性,要​​保证系统稳定性和性能,对此类系统进行分析和设计是一个难题。作为解决子系统交互问题和提高系统稳定性的一种主动技术,提出了一种正向前馈(PFF)控制,并结合一种基于被动性的新型稳定性准则。特别是,PFF控制是基于施加于整个总线阻抗的无源性而设计的。如果确保整个直流母线阻抗的无源性,那么也将保证稳定性。详细讨论了PFF控制器的设计公式,以确保稳定性和性能。该方法可大大提高稳定性和对直流母线电压瞬变的阻尼,并通过仿真和实验结果进行了验证。

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