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Design and FPGA Implementation of Reconfigurable Linear-Phase Digital Filter With Wide Cutoff Frequency Range and Narrow Transition Bandwidth

机译:具有宽截止频率范围和窄过渡带宽的可重构线性相位数字滤波器的设计和FPGA实现

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摘要

Reconfigurable filters based on the spectral parameter approximation (SPA) technique and its combination with other techniques provide a control over the cutoff frequency . However, when very wide range and narrow transition bandwidth is desired, these filters either fail to satisfy some of the specifications or have extremely high complexity. In this brief, we propose an interpolated SPA (ISPA) filter that overcomes the limitations of the existing SPA technique based filters, and achieves very wide range (equal to approximately the entire Nyquist band) and narrow transition bandwidth along with small passband ripple and high stopband attenuation. Comparison with the state-of-the-art reconfigurable filters is provided via a design example, which shows that the ISPA filter achieves more than 50% savings in the number of multipliers compared to the filter based on the combination of SPA and modified coefficient decimation techniques. The field-programmable gate array implementation results show that the ISPA filter has much lesser group delay and much higher operating speed, but incurs moderate penalty in terms of area compared to the filter based on the combination of frequency transformation and interpolation techniques.
机译:基于频谱参数逼近(SPA)技术及其与其他技术的组合的可重配置滤波器提供了对截止频率的控制。但是,当需要非常宽的范围和狭窄的过渡带宽时,这些滤波器要么无法满足某些规格,要么具有极高的复杂度。在本文中,我们提出了一种插值SPA(ISPA)滤波器,该滤波器克服了现有基于SPA技术的滤波器的局限性,并实现了非常宽的范围(大约等于整个奈奎斯特频带)和窄的过渡带宽以及较小的通带纹波和较高的噪声。阻带衰减。通过一个设计示例与最新的可重配置滤波器进行比较,结果表明,与基于SPA和修正系数抽取的组合的滤波器相比,ISPA滤波器的乘法器数量节省了50%以上技术。现场可编程门阵列的实现结果表明,与基于频率变换和内插技术相结合的滤波器相比,ISAP滤波器具有更低的群延迟和更高的工作速度,但在面积方面却产生中等程度的损失。

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