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A Study on Effect of Dynamic Quantized Resolution on MPC Based DC-DC Converter with Combinatorial Optimization

机译:动态量化分辨率对基于MPC的DC-DC变换器组合优化影响的研究

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In recent years, there is a demand for energy conservation as energy problems have become more serious and renewable energy attracts attention. This paper focuses on model predictive control (MPC) for DC-DC converters that contribute to the realization of accurate operation for renewable energy systems. Digital control dc-dc converter performs its control calculation within one control cycle, however, MPC may not complete the calculation since it includes an optimization problem. To avoid such a computation burden, we propose an enumeration based MPC method using dynamic quantized resolution for PWM dc-dc converters. In the step-down dc-dc converter using the proposed method, the resolution of the control input is dynamically changed to maintain stable steady-state control, and coarse resolution control to improve the response in the transient state. The proposed method is evaluated by simulation and it is revealed that our method maintains superior characteristics with a fixed amount of calculation.
机译:近年来,随着能源问题变得越来越严重以及可再生能源引起人们的注意,对节能的需求不断增加。本文关注于DC-DC转换器的模型预测控制(MPC),这些模型有助于实现可再生能源系统的精确运行。数字控制dc-dc转换器在一个控制周期内执行控制计算,但是MPC可能无法完成计算,因为它包含优化问题。为了避免这种计算负担,我们针对PWM dc-dc转换器提出了一种使用动态量化分辨率的基于枚举的MPC方法。在使用提出的方法的降压型dc-dc转换器中,控制输入的分辨率会动态更改以维持稳定的稳态控制,而粗分辨率控制则可以改善瞬态响应。通过仿真对提出的方法进行了评估,结果表明,该方法在计算量固定的情况下仍能保持较好的特性。

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