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Robust Passivity-Based Controllers for Fast Output Voltage Regulated, Non-Ideal DC-DC Boost Converter in Hamiltonian Representation

机译:基于鲁棒性的基于钝度的控制器,用于哈密顿表示中的快速输出电压调节,非理想DC-DC Boost转换器

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This paper presents all possibilities of the interconnection and damping assignment (IDA) procedure of passivity-based (PB) controller synthesis for DC-DC boost converter. In order to receive a universal control system, have been used all tree control parameters of damping and interconnection. Especially, introduction the interconnection allowed to dynamically modify the object's structure instead of forming control signal as external influence in current system. That leads to better results of speed response of the output voltage in transient and its error in steady state than only damping actions. Obtained dynamic feedback PB controllers have been compared by computer simulation with others, in particular cascaded structures based on flatness and sliding mode control. Developed control system shows a robustness to system non-ideality, which have not considered during a controller synthesis. Furthermore, because of the signal of the duty ratio is forming with the use of dynamically obtained reference signal of the inductor current, there is the possibility of saturation of the latter that was realized.
机译:本文介绍了DC-DC升压转换器的基于无源(PB)控制器综合的互连和阻尼分配(IDA)程序的所有可能性。为了接收通用控制系统,已经使用了阻尼和互连的所有树控制参数。特别是,引入互连允许动态修改对象的结构,而不是将控制信号形成为当前系统中的外部影响。与仅阻尼作用相比,这导致输出电压在瞬态中的速度响应及其在稳态下的误差更好的结果。通过计算机仿真已将获得的动态反馈PB控制器与其他控制器进行了比较,尤其是基于平坦度和滑模控制的级联结构。所开发的控制系统显示出对系统非理想性的鲁棒性,在控制器综合过程中未曾考虑过。此外,由于利用动态获得的电感电流参考信号形成占空比的信号,因此有可能使电感电流饱和。

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