Control of high-performance AC power supplies using adaptive digital filters

P. Mattavelli
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引用次数: 2

Abstract

This paper investigates the use of adaptive digital. filters for improving the performance of the inverter stage control of AC power supplies. In the proposed solution a conventional multi-loop control is used in order to ensure a fast dynamic response due to step load changes and a feedforward control based on adaptive filters is used in order to reduce the output voltage distortion in steady-state. One of the main properties of the proposed approach is the automatic tuning of the control coefficients so as to minimize the steady-state errors on the output voltage due to system disturbances, such as dead-times, DC link voltage ripple, and load variations. Because of the use of only few coefficients in the digital filters, the control remains quite simple and fully compatible with commercial μC or low cost DSP. One of the main disadvantages is the lack of analytical tools for stability analysis so that an accurate control parameter tuning is needed to ensure stability in any operating conditions. Experimental results on a single-phase 2 kVA prototype show the properties and limitations of the proposed approach.
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使用自适应数字滤波器控制高性能交流电源
本文研究了自适应数字的应用。用于改善交流电源的逆变级控制性能的滤波器。该方案采用传统的多环控制,以保证负载阶跃变化时的快速动态响应;采用基于自适应滤波器的前馈控制,以减小稳态输出电压畸变。该方法的主要特性之一是控制系数的自动调谐,从而最大限度地减少由于系统干扰(如死区时间、直流链路电压纹波和负载变化)对输出电压的稳态误差。由于在数字滤波器中只使用很少的系数,因此控制仍然非常简单,并且完全兼容商用μC或低成本DSP。主要缺点之一是缺乏稳定性分析的分析工具,因此需要精确的控制参数调整以确保在任何操作条件下的稳定性。在单相2kva样机上的实验结果表明了该方法的特性和局限性。
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