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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A two-stage angle-rotation architecture and its error analysis for efficient digital mixer implementation
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A two-stage angle-rotation architecture and its error analysis for efficient digital mixer implementation

机译:高效实现数字混频器的两阶段角度旋转架构及其误差分析

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An efficient angle-rotation architecture, suitable for use in a digital mixer, is presented. The architecture employs a decomposition of the high-precision rotation-angle into a coarse angle and a fine angle, and employs two processing stages, coarse and fine. Only the coarse stage employs a ROM, and that ROM is extremely small. Small multipliers are shown to suffice while providing full accuracy at the system output. A systematic development of the architecture and its supporting theory and assumptions is given, along with the rationale for determining its structure. A rigorous analysis of its error sources is presented, as well as the computation of bounds for the various errors they induce at the system output. This error analysis is shown to lead to a straightforward means of designing an efficient two-stage angle-rotation unit for a digital mixer, given input/output bitwidths and performance specifications
机译:提出了一种适用于数字混频器的有效角度旋转架构。该体系结构将高精度旋转角分解为粗角和细角,并采用粗加工和精加工两个处理阶段。仅粗糙阶段使用ROM,并且该ROM非常小。小型乘法器足以满足要求,同时可以在系统输出端提供完整的精度。给出了体系结构及其支持理论和假设的系统开发,以及确定其结构的原理。提出了对其误差源的严格分析,以及它们在系统输出处引起的各种误差的边界的计算。在给定输入/输出位宽和性能规格的情况下,这种误差分析显示出一种直接的方法可以为数字混频器设计高效的两级角度旋转单元。

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