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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Hardware Implementation of Polyphase-Decomposition-Based Wavelet Filters for Power System Harmonics Estimation
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Hardware Implementation of Polyphase-Decomposition-Based Wavelet Filters for Power System Harmonics Estimation

机译:基于多相分解的小波滤波器在电力系统谐波估计中的硬件实现

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摘要

Computational time and hardware resource are key issues in hardware implementation of any signal-processing algorithm. This paper presents the design and implementation of a polyphase-decomposition-based new architecture of wavelet filter for power system harmonics estimation using discrete wavelet packet transform (DWPT). Usually, DWPT provides coefficients as the output; however, the proposed architecture also includes provision for providing root mean square values directly. The proposed method reduces computational requirements and save memory resources. Xilinx system generator, a higher abstraction level tool, has been used to simulate and implement the proposed scheme on the Xilinx Artix-7 field-programming gate array AC701 board. Performance of the proposed architecture has been validated and compared through hardware cosimulation with variety of synthetic and experimental signals.
机译:计算时间和硬件资源是任何信号处理算法的硬件实现中的关键问题。本文提出了一种基于多相分解的小波滤波器新架构的设计和实现,该架构利用离散小波包变换(DWPT)估计电力系统谐波。通常,DWPT提供系数作为输出。但是,提出的体系结构还包括直接提供均方根值的规定。所提出的方法减少了计算需求并节省了存储器资源。 Xilinx系统生成器是一种更高抽象级别的工具,已被用于在Xilinx Artix-7现场编程门阵列AC701板上模拟并实现该方案。通过对各种合成和实验信号进行硬件协同仿真,已验证并比较了所提出架构的性能。

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