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Multiconverter Medium Voltage DC Power Systems on Ships: Constant-Power Loads Instability Solution Using Linearization via State Feedback Control

机译:船用多转换器中压直流电源系统:通过状态反馈控制使用线性化的恒定功率负载不稳定性解决方案

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摘要

Bus voltage stability is a key issue in future medium-voltage DC (MVDC) power systems on ships. The presence of high-bandwidth controlled load converters (Constant Power Load, CPL) may induce voltage instabilities. A control design procedure is presented which starts at the modeling level and comes to control implementation. A control method based on a Linearization via State Feedback (LSF), is proposed to face the CPL destabilizing effect and to ensure the MVDC bus voltage stability. A multiconverter shipboard DC grid is analyzed by means of a new comprehensive model, which is able to capture the overall behavior in a second-order nonlinear differential equation. Exploiting DC–DC converters that interface power sources to the bus, LSF technique is able to compensate for system nonlinearities, obtaining a linear system. Then, traditional linear control techniques can be applied to obtain a desired pole placement. With reference to system parameters mismatch, LSF control design is verified by means of a sensitivity analysis, evaluating the possibility of an over-linearization strategy. Time-domain numerical simulations are used to validate the proposed control, in presence of relevant perturbations by means of a two-way comparison (average value model and detailed switching model).
机译:总线电压的稳定性是未来船上中压DC(MVDC)电力系统的关键问题。高带宽受控负载转换器(恒定功率负载,CPL)的存在可能会引起电压不稳定。提出了一种控制设计程序,该程序从建模级别开始并用于控制实现。提出了一种基于状态反馈线性化(LSF)的控制方法,以面对CPL不稳定的影响并确保MVDC母线电压的稳定性。利用新的综合模型分析了多转换器船载直流电网,该模型能够捕获二阶非线性微分方程的整体行为。 LSF技术利用将电源连接到总线的DC-DC转换器,能够补偿系统非线性,从而获得线性系统。然后,可以应用传统的线性控制技术来获得所需的极点位置。参照系统参数不匹配,通过灵敏度分析验证了LSF控制设计,评估了过线性化策略的可能性。在存在相关扰动的情况下,使用时域数值模拟通过双向比较(平均值模型和详细的切换模型)来验证所提出的控制。

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