引用本文:安巧静,朱长青,赵月飞,谷志锋,严雪飞,杨清熙.基于周期观测的幅值可变双抛物线电流控制技术研究[J].控制理论与应用,2017,34(9):1215~1221.[点击复制]
AN Qiao-jing,ZHU Chang-qing,ZHAO Yue-fei,GU Zhi-feng,YAN Xue-fei,YANG Qing-xi.The control of dual parabola algorithm technology with variable amplitude based on period observation[J].Control Theory and Technology,2017,34(9):1215~1221.[点击复制]
基于周期观测的幅值可变双抛物线电流控制技术研究
The control of dual parabola algorithm technology with variable amplitude based on period observation
摘要点击 2013  全文点击 1012  投稿时间:2016-12-13  修订日期:2017-06-28
查看全文  查看/发表评论  下载PDF阅读器
DOI编号  10.7641/CTA.2017.60943
  2017,34(9):1215-1221
中文关键词  电流控制  牛顿–双抛物线  状态观测  幅值可变  开关周期
英文关键词  current control  Newton-dual parabola current control (Newton-DPCC)  state observation  amplitude variable  switching period
基金项目  国家自然科学基金项目(51407196), 河北省自然科学基金项目(E2017506007)资助.
作者单位E-mail
安巧静* 军械工程学院车辆与电气工程系 anqjoec@163.com 
朱长青 军械工程学院车辆与电气工程系  
赵月飞 军械工程学院无人机工程系  
谷志锋 军械工程学院车辆与电气工程系  
严雪飞 军械工程学院静电与电磁防护研究所  
杨清熙 军械工程学院静电与电磁防护研究所  
中文摘要
      为了使PWM变换器能够实时精准控制输入电流, 在能馈型电子负载的实际应用中, 针对前级电流跟踪控 制中采用的双抛物线电流控制算法, 分析了引起双抛物线幅值波动的不同因素, 进而影响电流的跟踪效果, 提出了 一种基于观测补偿的幅值可变的双抛物线电流控制方法. 本文采用了牛顿迭代法实现对下一周期值的观测估计, 并且通过周期和幅值的关系来确定反馈值, 对下一时刻的幅值进行补偿. 最后本文通过仿真验证了该方法的有效 性, 实现了周期恒定的电流实时跟踪.
英文摘要
      In order to make the current track the reference current accurately in real-time for PWM converter current control technology, the different factors were analyzed what impact the amplitude fluctuations applying on actually engineering project of energy-feedback electronic load based on the dual parabolic current control (DPCC) algorithm. The amplitude fluctuations of DPCC caused control deviation, and an amplitude variable of DPCC control method was proposed. With state observation based on Newton iteration realized the next cycle value estimated, and the feedback value compensated the amplitude at the next period so that the relationship between amplitude and period was determined. At the end of the paper, the proposed method was verified through the simulation, and realized real-time tracking the current with constant period.