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LMS Adaptive Filters Using Distributed Arithmetic for High Throughput

机译:使用高通量分布式算法的LMS自适应滤波器

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We present a new hardware adaptive filter architecture for very high throughput LMS adaptive filters using distributed arithmetic (DA). DA uses bit-serial operations and look-up tables (LUTs) to implement high throughput filters that use only about one cycle per bit of resolution regardless of filter length. However, building adaptive DA filters requires recalculating the LUTs for each adaptation which can negate any performance advantages of DA filtering. By using an auxiliary LUT with special addressing, the efficiency and throughput of DA adaptive filters can be of the same order as fixed DA filters. In this paper, we discuss a new hardware adaptive filter structure for very high throughput LMS adaptive filters. We describe the development of DA adaptive filters and show that practical implementations of DA adaptive filters have very high throughput relative to multiply and accumulate architectures. We also show that DA adaptive filters have a potential area and power consumption advantage over digital signal processing microprocessor architectures.
机译:我们为使用分布式算术(DA)的超高吞吐量LMS自适应滤波器提供了一种新的硬件自适应滤波器体系结构。 DA使用位串行操作和查找表(LUT)来实现高吞吐量过滤器,该过滤器每位分辨率仅使用大约一个周期,而与过滤器长度无关。但是,构建自适应DA滤波器需要为每个自适应重新计算LUT,这可能会抵消DA滤波的任何性能优势。通过使用具有特殊寻址的辅助LUT,DA自适应滤波器的效率和吞吐量可以与固定DA滤波器的数量级相同。在本文中,我们讨论了用于超高吞吐量LMS自适应滤波器的新的硬件自适应滤波器结构。我们描述了DA自适应滤波器的开发,并表明相对于乘法和累加架构,DA自适应滤波器的实际实现具有很高的吞吐量。我们还表明,与数字信号处理微处理器体系结构相比,DA自适应滤波器具有潜在的面积和功耗优势。

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