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An improved coefficient decimation based reconfigurable low complexity FIR channel filter for cognitive radios

机译:基于改进的基于系数抽取的基于系数抽取的认知无线电的可重新配置的低复杂性FIR通道滤波器

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Multi-standard channel adaptation is a critical function in cognitive radio handsets which involves the transmission/reception of individual frequency channels of multiple wireless communication standards at different intervals of time. This needs dynamically reconfigurable, low complexity and high speed digital channel filters. In this paper, we present a reconfigurable finite impulse response (FIR) channel filter design technique based on the combination of the conventional coefficient decimation method (CDM) and a modified CDM. Our method enhances the frequency response flexibility of the filter and doubles the center frequency resolution when compared to the conventional CDM. The proposed channel filter has a significantly lower multiplication complexity and achieves superior stopband and transition band characteristics when compared to the channel filters based on the conventional CDM. Design example shows that a 57.1% reduction in multiplication complexity is achieved if the proposed channel filter is designed instead of the conventional CDM based channel filter.
机译:多标准通道适配是认知无线电手机中的关键函数,其涉及以不同的时间间隔传输/接收多个无线通信标准的各个频率信道。这需要动态可重新配置,低复杂度和高速数字信道滤波器。本文介绍了一种基于传统系数抽取方法(CDM)和改进的CDM的组合的可重构有限脉冲响应(FIR)信道滤波器设计技术。我们的方法提高了滤波器的频率响应灵活性,与传统CDM相比,中央频率分辨率加倍。当基于传统CDM相比,所提出的信道滤波器具有显着较低的乘法复杂性,并且在与信道滤波器相比时实现卓越的止血区和转换带特性。设计示例表明,如果设计了建议的信道滤波器而不是传统的CDM基于CDM的信道滤波器,则实现乘法复杂性的减少57.1%。

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