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Pipeline interleaving and parallelism in recursive digital filters. I. Pipelining using scattered look-ahead and decomposition

机译:递归数字滤波器中的管道交织和并行性。 I.使用分散的前瞻和分解的流水线

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摘要

A look-ahead approach (referred to as scattered look-ahead) to pipeline recursive loops is introduced in a way that guarantees stability. A decomposition technique is proposed to implement the nonrecursive portion (generated due to the scattered look-ahead process) in a decomposed manner to obtain concurrent stable pipelined realizations of logarithmic implementation complexity with respect to the number of loop pipeline stages (as opposed to linear). The upper bound on the roundoff error in these pipelined filters is shown to improve with an increase in the number of loop pipeline stages. Efficient pipelined realizations are studied of both direct-form and state-space-form recursive digital filters. Based on the scattered look-ahead technique, fully pipelined and fully hardware efficient linear bidirectional systolic arrays for recursive digital filters are presented. The decomposition technique is extended to time-varying recursive systems.
机译:引入流水线递归循环的前瞻方法(称为分散前瞻)以保证稳定性的方式引入。提出了一种分解技术,以分解的方式实现非递归部分(由于分散的超前过程而生成),以获得与循环流水线级数(相对于线性)相对的对数实现复杂度的并发稳定流水线实现。这些循环滤波器中舍入误差的上限显示为随着循环管线级数的增加而提高。研究了直接形式和状态空间形式的递归数字滤波器的有效流水线实现。基于分散的前瞻技术,提出了用于递归数字滤波器的全流水线和全硬件高效线性双向脉动阵列。分解技术扩展到时变递归系统。

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