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A Hybrid Control Algorithm for Voltage Regulation in DC–DC Boost Converter

机译:DC-DC Boost转换器中用于电压调节的混合控制算法

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A new switching control algorithm based on state trajectory approximation is proposed to regulate the output voltage of a representative second-order dc–dc converter—the boost converter. The essence of the proposed algorithm is to trap the system into a stable limit cycle while ensuring the required voltage regulation. Unlike some of the earlier algorithms, the concept is applicable to both continuous and discontinuous current modes of operation, making it viable over a wide operating range under various load and line disturbances. A hybrid-automaton representation of the converter is used to perform the analysis, and the control problem is simplified to a guard-selection problem. Guard conditions, governing the transition of the converter operation from one discrete state to the other in a hybrid-automaton representation, are derived. The hybrid-automaton-based control system is implemented by using the state flow chart feature of MATLAB, and extensive simulations are carried out to check the suitability of the algorithm. The hybrid control law is also validated in real time by using a laboratory prototype. The experimental and simulation results prove the effectiveness of the proposed control law under varying line and load conditions.
机译:提出了一种基于状态轨迹近似的新开关控制算法,以调节代表性的二阶dc-dc转换器(升压转换器)的输出电压。所提出算法的本质是在确保所需的电压调节的同时,将系统陷入一个稳定的极限周期。与某些早期算法不同,该概念适用于连续和不连续电流操作模式,使其在各种负载和线路干扰下的宽工作范围内都可行。转换器的混合自动机表示用于执行分析,控制问题简化为保护选择问题。得出保护条件,以混合自动机的形式控制转换器操作从一个离散状态到另一种离散状态的过渡。利用MATLAB的状态流程图功能实现了基于混合自动机的控制系统,并进行了广泛的仿真以验证算法的适用性。混合控制律也通过使用实验室原型进行实时验证。实验和仿真结果证明了所提出的控制律在变化的线路和负载条件下的有效性。

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