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Technology-Dependent Optimization of FIR Filters based on Carry-Save Multiplier and 4:2 Compressor unit

机译:基于进位保留乘数和4:2压缩器单元的FIR滤波器的技术相关优化

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This work presents an FPGA implementation of FIR filter based on 4:2 compressor and CSA multiplier unit. The hardware realizations presented in this paper are based on the technology-dependent optimization of these individual units. The aim is to achieve an efficient mapping of these isolated units on Xilinx FPGAs. Conventional filter implementations consider only technology-independent optimizations and rely on Xilinx CAD tools to map the logic onto FPGA fabric. Very often this results in inefficient mapping. In this paper, we consider the traditional CSA-4:2 compressor based FIR filters and restructure these units to achieve improved integration levels. The technology optimized Boolean networks are then coded using instantiation based coding strategies. The Xilinx tool then uses its own optimization strategies to further optimize the networks and generate circuits with high logic densities and reduced depths. Experimental results indicate a significant improvement in performance over traditional realizations. An important property of technology-dependent optimizations is the simultaneous improvement in all the performance parameters. This is in contrast to the technology-independent optimizations where there is always an application driven trade-off between different performance parameters.
机译:这项工作提出了一种基于4:2压缩器和CSA乘法器单元的FIR滤波器的FPGA实现。本文介绍的硬件实现基于这些独立单元的技术相关优化。目的是在Xilinx FPGA上实现这些隔离单元的有效映射。常规的滤波器实现仅考虑与技术无关的优化,并依靠Xilinx CAD工具将逻辑映射到FPGA架构。通常,这会导致映射效率低下。在本文中,我们考虑了基于传统CSA-4:2压缩器的FIR滤波器,并对这些单元进行了重组,以提高集成度。然后,使用基于实例化的编码策略对经过技术优化的布尔网络进行编码。 Xilinx工具然后使用其自己的优化策略来进一步优化网络,并生成逻辑密度高且深度减小的电路。实验结果表明,与传统实现相比,性能有了显着提高。与技术有关的优化的一个重要属性是所有性能参数的同时提高。这与独立于技术的优化相反,后者在不同的性能参数之间始终存在应用程序驱动的权衡。

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