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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Discrete-Time Complex Bandpass Filters for Three-Phase Converter Systems
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Discrete-Time Complex Bandpass Filters for Three-Phase Converter Systems

机译:三相转换器系统的离散时间复数带通滤波器

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摘要

In this paper, a first-order complex bandpass filter (CBF) derived in the discrete frequency domain is proposed as a building block for the complex signal processing unit in three-phase converter systems. The first-order discrete CBF can be directly implemented in a digital system, is stable at all center frequencies, and has a low computational burden. The first-order CBF is extended to a pth-order discrete CBF. A normalized frequency-locked loop (FLL) is then developed that allows the frequency adaption to satisfy a desired settling time regardless of the input signal magnitude or discrete CBF form. The pth-order discrete CBF-FLL was tested on an FPGA in the form of two industrial applications: voltage synchronization under grid fault and extraction of an unknown frequency component. The second-order discrete CBF-FLL offered significantly improved stop-band attenuation and frequency estimation relative to the first-order discrete CBF-FLL, for a small increase in computational burden.
机译:本文提出了在离散频域中导出的一阶复带通滤波器(CBF),作为三相转换器系统中复信号处理单元的基础。一阶离散CBF可以直接在数字系统中实现,在所有中心频率下都稳定,并且计算负担低。一阶CBF扩展为p阶离散CBF。然后,开发出归一化的锁频环(FLL),无论输入信号幅度或离散CBF形式如何,均可以使频率自适应满足所需的建立时间。在FPGA上以两种工业应用的形式对p阶离散CBF-FLL进行了测试:电网故障下的电压同步和未知频率分量的提取。相对于一阶离散CBF-FLL,二阶离散CBF-FLL提供了显着改善的阻带衰减和频率估计,只增加了一点计算负担。

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