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Fast convergent pipelined adaptive DFE architecture using post-cursor processing filter technique

机译:使用后光标处理滤波器技术的快速收敛流水线自适应DFE架构

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Among existing works of high-speed pipelined adaptive decision feedback equalizers (ADFE), the pipelined ADFE using relaxed look-ahead technique results in a substantial hardware saving than the parallel processing or other look-ahead approaches. For example, Shanbhag and Partiz derived three pipeline ADFE structures (PIPEADFE1, 2, 3), where PIPEADFE2 yields very good performance in terms of convergence rate and hardware cost. Nevertheless, the PIPEADFE2 employs Approximation Methods in deriving the Preprocessing Unit (PP). In this paper, a new pipelining ADFE architecture is developed. We derive a new updating ADFE scheme based on the Principle of Orthogonality. By employing the postcursor processing filter (PCF) to cancel the most significant postcursor Intersymbol interference (ISI) terms, the proposed PCFADFE architecture can significantly improve the convergence rate of the ADFE. Compared with PIPEADFE2, it has better convergence rate while at similar hardware cost. Hence, it provides an alternative approach for the design of high-speed pipelining ADFE with arbitrary speedup factor.
机译:在高速流水线自适应决策反馈均衡器(ADFE)的现有工作中,使用宽松的超前技术的流水线ADFE比并行处理或其他超前方法可节省大量硬件。例如,Shanbhag和Partiz派生了三个管道ADFE结构(PIPEADFE1、2、3),其中PIPEADFE2在收敛速度和硬件成本方面产生了非常好的性能。尽管如此,PIPEADFE2在推导预处理单元(PP)时仍采用了近似方法。在本文中,开发了一种新的流水线ADFE体系结构。我们基于正交原理得出了一个新的更新ADFE方案。通过使用后光标处理滤波器(PCF)消除最重要的后光标符号间干扰(ISI)项,所提出的PCFADFE体系结构可以显着提高ADFE的收敛速度。与PIPEADFE2相比,它具有更高的收敛速度,而硬件成本却差不多。因此,它为具有任意加速因子的高速流水线ADFE设计提供了另一种方法。

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