引用本文: | 谷志锋,王会勇,朱长青,王文婷.并联脉宽调制整流器非线性L2增益环流抑制控制[J].控制理论与应用,2017,34(12):1614~1620.[点击复制] |
GU Zhi-feng,WANG Hui-yong,ZHU Chang-qing,WANG Wen-ting.Circulating-current nonlinear L2-gain attenuation control of parallel pulse width modulation rectifiers[J].Control Theory and Technology,2017,34(12):1614~1620.[点击复制] |
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并联脉宽调制整流器非线性L2增益环流抑制控制 |
Circulating-current nonlinear L2-gain attenuation control of parallel pulse width modulation rectifiers |
摘要点击 2442 全文点击 1470 投稿时间:2017-02-11 修订日期:2017-07-13 |
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DOI编号 10.7641/CTA.2017.70075 |
2017,34(12):1614-1620 |
中文关键词 最优L2增益控制 非线性L2增益控制 并联PWM整流器 环流抑制 双闭环控制 零序电流抑制 |
英文关键词 optimal L2-gain control nonlinear L2-gain control parallel PWM rectifiers circulating-current restrain two loop control zero sequence current restrain |
基金项目 国家自然科学基金项目(51407196), 河北省自然科学基金面上项目(E2017506007) |
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中文摘要 |
针对由于模型参数分散和外部干扰引起的并联脉宽调制(pulse width modulation, PWM)整流器环流问题,
提出了最优L2增益电流内环控制与非线性L2增益零序环流外环控制相结合的控制方法. 最优L2增益电流内环控
制不仅可以实现干扰对输出的增益最小, 还可以灵活实现并联PWM整流器之间的功率平移. 非线性L2增益零序环
流外环控制可以有效抑制由于模型参数不确定和外部干扰引起的环流问题. 并联PWM整流器双环L2增益控制仿
真结果表明: 相对于传统的比例积分控制方法, 该方法可以明显降低并联PWM整流器之间的环流, 并可提高并
联PWM 整流器的供电品质, 对于增强系统的稳定性具有重要意义. |
英文摘要 |
For the circulating-current restrain in parallel pulse width modulation (PWM) rectifiers caused by the uncertain
model parameters and external disturbances, the new control method, composed by the optimal L2-gain current inner
loop control and the zero sequence current outer loop control, is proposed. The optimal L2-gain current inner loop control
not only can realize the minimum gain of the disturbance to the output, but also can achieve the power transfer between
the parallel PWM rectifiers. The zero sequence current outer loop control can retrain the circulating-current caused by the
uncertain parameters and the disturbances. The simulation results of the parallel PWM rectifiers shows that comparing
with the traditional proportional-integral control method, the new two loop L2-gain control method can significantly reduce
circulating-current between the parallel PWM rectifiers and improve the power supply quality, which is important to
improve the stability of the power system. |
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