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Digital current-limited sliding-mode control for synchronous buck converter with curved switching surface

机译:用于弯曲开关表面的同步降压转换器的数字电流限制滑动模式控制

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摘要

In this paper, a digital current-limited sliding-mode control (DCLSMC) for synchronous buck converter with curved switching surface is proposed. First, by discretizing the derivatives of a hybrid switching surface (SS) (consisting of second-order and first-order SS) and utilizing the reaching law method, a discrete-time sliding-mode control (SMC) is derived. Then, this SMC is integrated with a current-limited control to construct the DCLSMC. Simulation results show that it can provide a current-limited near-time-optimal dynamic response. The proposed SMC is implemented by pulse-width modulation (PWM) technique, so it can provide a fixed switching frequency and has a low sampling requirement. The reachability of the SS for the proposed SMC and the stability of the quasi-sliding mode motion is proven. Moreover, an additional PI control is introduced to eliminate the steady-state error, and some implementation issues are discussed. Experimental results are given to verify the high dynamic performance and practical value of the proposed method.
机译:本文提出了一种用于具有弯曲切换表面的同步降压转换器的数字电流限制滑动模式控制(DCLSMC)。首先,通过将混合切换表面(SS)的衍生物分开并利用到达法方法,衍生离散时间滑模控制(SMC)。然后,该SMC与电流有限的控制集成到构建DCLSMC。仿真结果表明它可以提供电流限制近代最佳动态响应。所提出的SMC由脉冲宽度调制(PWM)技术实现,因此它可以提供固定的开关频率并具有低采样要求。证明了SS对所提出的SMC的可达性和准滑模运动的稳定性。此外,引入了额外的PI控制以消除稳态误差,并讨论了一些实现问题。给出了实验结果验证了所提出的方法的高动态性能和实用价值。

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