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Effect of control method on impedance-based interactions in a buck converter

机译:控制方法对降压转换器中基于阻抗的相互作用的影响

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摘要

All the interconnected regulated systems are prone to impedance-based interactions making them sensitive to instability and transient-performance degradation. The applied control method affects significantly the characteristics of the converter in terms of sensitivity to different impedance interactions. This paper provides for the first time the whole set of impedance-type internal parameters and the formulas according to which the interaction sensitivity can be fully explained and analyzed. The formulation given in this paper can be utilized equally either based on measured frequency responses or on predicted analytic transfer functions. Usually, the distributed dc-dc systems are constructed by using ready-made power modules without having thorough knowledge on the actual power-stage and control-system designs. As a consequence, the interaction characterization has to be based on the frequency responses measureable via the input and output terminals. A buck converter with four different control methods is experimentally characterized in frequency domain to demonstrate the effect of control method on the interaction sensitivity. The presented analytical models are used to explain the phenomena behind the changes in the interaction sensitivity.
机译:所有相互连接的调节系统都易于发生基于阻抗的相互作用,从而使其对不稳定和瞬态性能下降敏感。在对不同阻抗相互作用的敏感性方面,所应用的控制方法会显着影响转换器的特性。本文首次提供了整套阻抗型内部参数和公式,据此可以充分解释和分析相互作用灵敏度。根据测得的频率响应或预测的分析传递函数,可以同等地利用本文给出的公式。通常,分布式dc-dc系统是使用现成的电源模块构建的,而没有对实际功率级和控制系统设计的全面了解。因此,交互特性必须基于可通过输入和输出端子测量的频率响应。在频域上对具有四种不同控制方法的降压转换器进行了实验表征,以证明控制方法对交互灵敏度的影响。提出的分析模型用于解释相互作用敏感性变化背后的现象。

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