Compensation Methods for Regulating Parameters of Switch Voltage Converters

V. Alexandrov, S. A. Kalashnikov, L. Markova
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Abstract

Introduction. Approaches to the introduction of negative feedback in pulse control systems regulating the parameters of electricity flow with pulse-width modulation (PWM) continue to attract research attention in the field of switch power amplifiers (SPA) and switch voltage converters (SVC). Evaluation of the potential of compensation methods is of importance when selecting power electronics devices for various purposes.Aim. To review compensation methods for parameter regulation and to investigate conditions for the operational stability of SVC with feedback on output voltage and current.Materials and methods. The research methodology included the theory of pulsed automatic control systems, the method of harmonic linearization with stability assessment according to Nyquist criteria, and the generating filter method based on multiple frequencies.Results. An analysis of operational stability conditions was carried out.  Analytical dependences and graphical representation of the limit feedback values from the modulation parameters and the switch transformation scheme were proposed.Conclusion. The conducted study of the feedback depth in SVC, limited by the penetration of high-frequency components into the path of a width-modulated signal and its delay, due to the peculiarities of the terminal stage of the SPA, demonstrates that the limit value of the voltage feedback depth at typical circuit parameters does not exceed 12 dB, while the depth of the current feedback of the filter choke of the low frequencies can be fundamentally (more than 20 dB) higher. At the same time, the implementation of voltage stabilization and output current limitation modes for maintaining reliable operation in start-up and overload modes is possible only with the use of combined feedback.
开关电压变换器参数调节的补偿方法
介绍。在脉冲控制系统中引入负反馈的方法,利用脉宽调制(PWM)调节电流参数,一直是开关功率放大器(SPA)和开关电压变换器(SVC)领域的研究热点。在选择各种用途的电力电子器件时,评估补偿方法的潜力是很重要的。回顾了参数调节的补偿方法,研究了输出电压和电流反馈的SVC运行稳定性的条件。材料和方法。研究方法包括脉冲自动控制系统理论、基于奈奎斯特准则的谐波线性化稳定性评估方法和基于多频率的生成滤波方法。对运行稳定性条件进行了分析。给出了调制参数和开关变换方案的极限反馈值的解析依赖关系和图形表示。SVC的反馈深度进行了研究,限制了高频成分的渗透进的道路宽调制信号及其延迟,由于水疗的终端阶段的特点,表明电压反馈深度的极限值典型电路参数不超过12 dB,虽然当前反馈的深度过滤窒息的低频可以从根本上(超过20 dB)更高。同时,只有使用联合反馈才能实现电压稳定和输出电流限制模式,以便在启动和过载模式下保持可靠的运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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