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Toward Stabilization of Constant Power Loads Using IDA-PBC for Cascaded LC Filter DC/DC Converters

机译:使用IDA-PBC稳定恒定功率负载,用于级联LC滤波器DC / DC转换器

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摘要

This article proposes a modified interconnection and damping assignment passivity-based control (IDA-PBC) for dc/dc converter cascaded with an LC filter. The plant is modeled using the port-controlled Hamiltonian (PCH) form. The main objective is to stabilize the cascaded system in case the system supplies constant power load (CPL). To solve the instability issues caused by tightly controlled cascaded systems, the IDA-PBC based on an overall PCH model, including LC input filter and dc/dc converter, is established. Moreover, to ensure that the proposed IDA-PBC admits one unique solution, an adaptive interconnection matrix is designed to build the internal links in the PCH model. Furthermore, in order to improve the implementation on an onboard dc microgrid application with time-varying CPLs, a modified IDA-PBC algorithm is proposed based on the error between the state vector and the desired operating point, which might be variable. The closed-loop Hamiltonian function is chosen as the Lyapunov candidate function to guarantee that the system operates in a stable manner. The virtual damping assignment technique is addressed to tune the dynamic characteristic of the closed-loop system. Simulation and experimental results are carried out to illustrate the proposed method's effectiveness.
机译:本文提出了一种具有LC滤波器的DC / DC转换器的改进的互连和阻尼分配被动控制(IDA-PBC)。该工厂采用端口控制的汉密尔顿(PCH)形式进行建模。主目的是在系统提供恒定功率负载(CPL)的情况下稳定级联系统。为了解决由紧密控制的级联系统引起的不稳定问题,建立了基于整体PCH模型的IDA-PBC,包括LC输入滤波器和DC / DC转换器。此外,为了确保所提出的IDA-PBC承认一个唯一的解决方案,设计自适应互连矩阵以构建PCH模型中的内部链路。此外,为了改善具有时变CPLS的车载DC微电网应用的实现,基于状态矢量和所需操作点之间的误差来提出修改的IDA-PBC算法,这可能是可变的。选择闭环汉密尔顿函数作为Lyapunov候选功能,以保证系统以稳定的方式运行。虚拟阻尼分配技术被解决以调整闭环系统的动态特性。进行了模拟和实验结果,以说明所提出的方法的有效性。

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