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Delta operator digital filters for high performance inverter applications

机译:Delta运算符数字滤波器,用于高性能逆变器应用

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Most infinite impulse response (IIR) digital filter implementations in power electronic inverter applications are based on the time shift operator q and its associated z-transform. But for higher sampling frequencies where the sample period approaches zero for z-transform discrete systems, their dynamic response does not converge smoothly to the continuous counterpart, causing substantial implementation problems. In contrast, the response of filters based on the delta operator does converge to the continuous counterpart for smaller sample periods, and hence they are much better suited for digital control applications where sampling frequencies are much higher than the system poles. This paper describes the basis of the delta operator, its use for IIR digital filter systems, and shows how the technique can be used in power electronic inverter applications to achieve substantial performance benefits compared to equivalent shift-based implementations. A brief review of shift based IIR filtering is presented and the required conversions to the delta form given. The specific examples of an active filter and a P + Resonant current regulator are used to illustrate the improvements that can be expected. The superior performance of the delta operator for digital control of inverter applications has been verified in both simulation and experiment.
机译:电力电子逆变器应用中的大多数无限冲激响应(IIR)数字滤波器实现都是基于时移算子q及其相关的z变换的。但是对于z变换离散系统的采样周期接近零的较高采样频率,其动态响应不能平滑地收敛到连续副本,从而导致严重的实现问题。相比之下,基于增量算子的滤波器的响应在较小的采样周期内确实会收敛到连续的对应项,因此它们更适合于采样频率远高于系统极点的数字控制应用。本文介绍了delta运算符的基础,其在IIR数字滤波器系统中的使用,并展示了与等效的基于位移的实现相比,该技术如何可用于电力电子逆变器应用中,从而获得可观的性能优势。简要介绍了基于移位的IIR滤波,并给出了所需的转换为增量形式。有源滤波器和P +谐振电流调节器的特定示例用于说明可以预期的改进。在仿真和实验中均已验证了增量算子在逆变器应用数字控制中的优越性能。

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