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首页> 外文期刊>EURASIP journal on advances in signal processing >Complexity-aware quantization and lightweight VLSI implementation of FIR filters
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Complexity-aware quantization and lightweight VLSI implementation of FIR filters

机译:FIR滤波器的复杂度感知量化和轻量级VLSI实现

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摘要

The coefficient values and number representations of digital FIR filters have significant impacts on the complexity of their VLSI realizations and thus on the system cost and performance. So, making a good tradeoff between implementation costs and quantization errors is essential for designing optimal FIR filters. This paper presents our complexity-aware quantization framework of FIR filters, which allows the explicit tradeoffs between the hardware complexity and quantization error to facilitate FIR filter design exploration. A new common subexpression sharing method and systematic bit-serialization are also proposed for lightweight VLSI implementations. In our experiments, the proposed framework saves 4951 additions of the filters with 2's complement coefficients and 1020 of those with conventional signed-digit representations for comparable quantization errors. Moreover, the bit-serialization can reduce 3335 silicon area for less timing-critical applications.
机译:数字FIR滤波器的系数值和数字表示形式对其VLSI实现的复杂性以及系统成本和性能都有重大影响。因此,在实现成本和量化误差之间取得良好的折衷对于设计最佳FIR滤波器至关重要。本文介绍了我们的FIR滤波器的感知复杂度的量化框架,该框架允许在硬件复杂度和量化误差之间进行明确的权衡,以促进FIR滤波器设计的探索。还针对轻量级VLSI实现提出了一种新的通用子表达式共享方法和系统的位序列化。在我们的实验中,为可比较的量化误差,所提出的框架节省了2951个补码系数的4951个滤波器,而使用了常规符号表示的1020个滤波器。此外,位串行化可以减少3335硅面积,以减少对时序要求不高的应用。

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