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Graphical Evaluation of Time-Delay Compensation Techniques for Digitally Controlled Converters

机译:数控转换器的延时补偿技术的图形评估

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摘要

A main design constraint of the digitally controlled power electronics converters is the time delay of control systems, which may lead to the reduced control loop bandwidth and even unstable dynamics. Numerous time-delay compensation methods have been developed, of which the model-free schemes are independent to model accuracy whereas the model-based alternatives are sensitive to system modeling. This paper first presents a graphical illustration of four model-free delay compensation techniques, where their principles and performances are intuitively elaborated and compared by means of the impulse area equivalence method. An improved time-delay compensation approach is then proposed based on additional area insertion, which provides a wider frequency of phase compensation. Finally, the dynamic response of an LCL-filtered grid-connected inverter was tested with the studied delay compensation methods. Simulations and experimental test results validate the effectiveness of the graphical comparisons and the proposed approach.
机译:数控功率电子转换器的主要设计约束是控制系统的时间延迟,这可能会导致控制环带宽减小甚至动态不稳定。已经开发了许多时间延迟补偿方法,其中无模型方案与模型精度无关,而基于模型的替代方案对系统建模敏感。本文首先以图形方式说明了四种无模型的延迟补偿技术,其中,它们的原理和性能可以通过脉冲面积等效方法直观地进行阐述和比较。然后,基于额外的区域插入,提出了一种改进的延时补偿方法,该方法提供了更宽的相位补偿频率。最后,采用研究的延迟补偿方法对LCL滤波并网逆变器的动态响应进行了测试。仿真和实验测试结果验证了图形比较和所提出方法的有效性。

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