Discrete time integral sliding mode control for discrete pulse modulated converters

G. Venkataramanan, D. Divan
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引用次数: 19

Abstract

Sliding mode control for resonant link converters is introduced in a formal manner through a specific example of a buck resonant link DC-DC converter. The use of variable structure systems theory as a valuable tool to characterize the dynamic behavior of discrete pulse modulated systems in demonstrated. The suboptimal steady-state behavior of discrete pulse modulated converters under conventional control methods is brought out. The discrete time integral sliding mode control as an alternative control method with better performance attributes is proposed. It is demonstrated that the sliding mode control methods developed for the control of a PWM (pulse width modulation) power converter can be extended to the resonant link converter operating under discrete pulse modulation, and the performance can be improved by adding the integral-error term to the sliding surface. The conditions for sliding mode to exist under integral sliding control are obtained. All the results are verified by simulation, and experimental results confirming the concepts are presented.<>
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离散脉冲调制变换器的离散时间积分滑模控制
通过buck谐振链路DC-DC变换器的具体实例,正式介绍了谐振链路变换器的滑模控制。利用变结构系统理论作为一种有价值的工具来表征离散脉冲调制系统的动态行为。分析了离散脉冲调制变换器在常规控制方法下的次优稳态特性。提出了离散时间积分滑模控制作为一种具有更好性能属性的替代控制方法。结果表明,用于控制PWM(脉宽调制)功率变换器的滑模控制方法可以推广到工作在离散脉宽调制下的谐振链路变换器,并且通过在滑动表面加入积分误差项可以改善其性能。得到了在积分滑动控制下滑模存在的条件。通过仿真验证了所有结果,并给出了验证这些概念的实验结果。
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