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Finite word-length effects of pipelined recursive digital filters

机译:流水线递归数字滤波器的有限字长效应

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Scattered look-ahead (SLA) pipelining is a new IIR filter structure that can achieve very high throughput, regardless of multiplier latency. However, the numerical properties of SLA have been largely unexplored. The authors analyze the finite word-length (FWL) performance of SLA filters under fixed-point arithmetic. To support this analysis, two new state variable descriptions (SVD) are introduced. First, a state variable based description especially suited for analysis of certain SLA structures, called the sectioned K and W description (SKWD), is defined by sectioning the noise contributions of the nonrecursive nodes. Second, a noncanonic state variable description (NCSVD) is introduced, which explicitly includes the pipelined delay variables in the state space. Roundoff noise (RON) and statistical coefficient quantization noise (SCQN) are derived under an independent pseudonoise source model, SCQN is shown to be interpretable as RON under the single length accumulation model, which enables the unification of RON and SCQN analysis. Analytic closed form solutions for first- and second-order direct form (DF) SLA filters are derived and compared to results from SLA minimum roundoff noise (MRON) structures. The SLA structures are all found to have generally good numerical properties, except that the DF SLA structure performs poorly in certain regions near the unit circle. However, the DF SLA structure actually performs better than the MRON form over much of the unit disk at a far smaller implementation cost.
机译:分散前瞻(SLA)流水线是一种新的IIR滤波器结构,无论乘数延迟如何,都可以实现非常高的吞吐量。但是,SLA的数值特性尚未得到充分探索。作者分析了定点算法下SLA滤波器的有限字长(FWL)性能。为了支持此分析,引入了两个新的状态变量描述(SVD)。首先,通过分段非递归节点的噪声贡献来定义基于状态变量的描述,该描述特别适用于某些SLA结构的分析,称为分段K和W描述(SKWD)。其次,引入了非规范状态变量描述(NCSVD),该描述明确包含状态空间中的流水线延迟变量。舍入噪声(RON)和统计系数量化噪声(SCQN)是在独立的伪噪声源模型下得出的,在单长度累积模型下SCQN可解释为RON,从而使RON和SCQN分析得以统一。推导了用于一阶和二阶直接形式(DF)SLA滤波器的解析闭合形式解,并将其与SLA最小舍入噪声(MRON)结构的结果进行比较。除了DF SLA结构在单位圆附近的某些区域中的性能较差外,所有SLA结构都具有良好的数值特性。但是,DF SLA结构实际上在许多单位磁盘上的性能要优于MRON形式,且实现成本要小得多。

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