数字控制回路中非线性的补偿

G. Abbas, M. Abid, U. Farooq, J. Gu, M. Asad
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引用次数: 2

摘要

本文重点介绍了数字控制在控制器设计过程中存在的问题,并提出了解决这些问题的方法。为此,将基于数字再设计或仿真技术设计的数字控制器应用于工作在连续导通模式下的降压变换器。在控制回路中引入了由ADC和DAC量化器、环路延迟等引起的非线性,并研究了它们对性能的不利影响。通过回调数字控制器来抑制非线性。控制器的顺序可能会增加,需要更多的资源来实现它。量化器的非线性将量化噪声添加到环路中,并可能引起偏移和极限环振荡(LCOs)。由于延迟,总体相位裕度减小,从而保持带宽有限并导致系统不稳定。当忽略非线性时,整定后的环路保持渐近稳定。使用MATLAB/Simulink环境来解决所有问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compensation of the nonlinearities present in the digital control loop
This paper highlights the digital control problems and issues during the controller design and suggests the solutions to resolve them. For this purpose, digital controller designed on the basis of digital redesign or emulation technique is applied to a buck converter working in continuous conduction mode. Nonlinearities due to the ADC and DAC quantizers, loop-delay, etc. are introduced into the control loop and their adverse effects on performance are interrogated. The nonlinearities are suppressed by retuning the digital controller. The order of the controller may increase and require more resources for its implementation. The quantizers' nonlinearities add quantization noise into the loop and may cause offsets and limit cycle oscillations (LCOs). The overall phase margin gets reduced due to the delay thus keeping the bandwidth limited and leading the system towards instability. The well-tuned loop remains asymptotically stable if the nonlinearities are neglected. MATLAB/Simulink environment is used to address all the issues.
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