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Low-frequency dynamic modelling and control of matrix converter for power system applications

机译:电力系统应用矩阵变换器的低频动态建模与控制

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摘要

High-power density of a matrix converter (MC) necessarily introduces tight dynamic input??output coupling, which complicates controller design for high bandwidth applications. Strong contemporary interest in MC-based solutions for synchronous, power system applications demands high dynamic performance out of the MC, operated as a closed-loop system. The requisite system models reported either treat the MC - with its input and output filters - as a 'black-box' characterised by a set of eigenvalues, derived from linearised analysis around an equilibrium point. Alternatively, large-signal system analysis was reported for a feed-forward control approach with prescription of a throughput power boundary for stable operation. This study provides a designer??s insight into MC modelling, based on linearised analysis, clearly establishing the influence of individual physical sub-systems on the overall dynamic performance. Onset of a cluster of right-half zeros, decided solely by the input filter, power factor, source voltage and power throughput, is shown to be the only factor threatening closed-loop stability. Subsequently, a controller with output feedback is designed to ensure stable operation well beyond the throughput power limit prescribed earlier. Comprehensive simulation and experimental results are provided to validate the analytical model and controller design.
机译:矩阵转换器(MC)的高功率密度必然会引入紧密的动态输入-输出耦合,这会使高带宽应用的控制器设计复杂化。当代人们对于基于MC的解决方案在同步,电力系统应用中的解决方案产生了浓厚的兴趣,要求MC作为闭环系统运行,从而要求其具有较高的动态性能。报告的必需系统模型将带有输入和输出过滤器的MC视为“黑匣子”,其特征是一组特征值,这些特征值是从围绕平衡点进行线性化分析得出的。备选地,报告了针对大前馈控制方法的大信号系统分析,其中规定了吞吐量功率边界以稳定运行。这项研究为设计师提供了基于线性化分析的MC建模洞察力,从而清楚地确定了各个物理子系统对整体动态性能的影响。仅由输入滤波器,功率因数,电源电压和功率通过量决定的一组右半零的出现是威胁闭环稳定性的唯一因素。随后,设计了带有输出反馈的控制器,以确保稳定运行,远远超过了先前规定的吞吐功率极限。提供了全面的仿真和实验结果,以验证分析模型和控制器设计。

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