基于虚拟阻抗的直流-直流变换器恒功率负载Lyapunov控制器

Saumya Karan, K. Mandal, S. Chattopadhyay
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引用次数: 0

摘要

本文介绍了一种新型的基于虚拟阻抗的李雅普诺夫控制器的设计和分析,该控制器用于直流-直流升压变换器永磁直流电驱动。电机驱动作为恒功率负载(CPL),使系统在开环状态下不稳定。升压变换器的非最小相位特性使其动态变慢,限制了传统电压模式控制方法的使用。双环控制提供主动阻尼,使系统在闭环中保持稳定。另一方面,虚拟阻抗(VI)控制以更有效的方式为系统提供主动阻尼,具有宽占空比工作,改善暂态性能和效率的优点。在李雅普诺夫控制器(LC)的情况下,实现了改进的电源和负载抗干扰性。该控制器对电机直流电压和速度具有良好的动力学和控制性能。它还提供了更好的瞬态性能,并且对大信号扰动不敏感。对传统的双环控制、虚拟阻抗控制、李雅普诺夫控制器和所提出的控制器进行了比较。仿真结果验证了理论分析的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual Impedance based Lyapunov Controller for DC-DC Converter-fed Constant Power Load
This paper demonstrates the design and analysis of a novel Virtual Impedance based Lyapunov Controller for DC-DC boost converter fed Permanent Magnet Direct Current (PMDC) drive. The motor drive acts as Constant Power Load (CPL) destabilizing the system in open loop condition. The non-minimum phase nature of boost converter restricts the use of conventional Voltage Mode Control (VMC) method due to slowed dynamics. Two Loop Control provides an active damping to stabilize the system in closed loop. On the other hand, the Virtual Impedance (VI) Control provides active damping to the system in a more effective way with advantages of wide duty-ratio operation, improved transient performance and efficiency. In case of Lyapunov Controller (LC), an improved supply and load disturbance rejection is achieved. The proposed controller offers excellent dynamics and control of dc-link voltage and speed of motor. It also offers way better transient performance and is insensitive to large-signal perturbations. The comparison for conventional Two Loop Control, Virtual Impedance Control, Lyapunov Controller and the proposed controller has been carried out. The theoretical analysis is validated by simulation results.
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