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Robust Filter Design for Uncertain 2-1 Sigma-Delta Modulators via the Central Polynomial Method

机译:通过中央多项式方法为不确定的2-1 Sigma-Delta调制器设计鲁棒滤波器

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Uncertainty in the integrators of 2-1 sigma-delta modulators causes imperfect cancellation of first stage quantization noise, and reduces signal-to-noise ratio in analogue-to-digital converters. Design of robust matching filters based on convex optimization over uncertain linearized statespace representations gives complicated models and high-order designs. This letter describes a polynomial design method leading to simpler multilinear models and fixed-order filters. The modulators are cast as a polynomial polytope, and filters satisfying an $H_{infty}$ bound arise from solving linear matrix inequalities (LMIs). Results at low frequency show the proposed filter outperforming the nominal one, with a performance close to the estimated optimum.
机译:2-1 sigma-delta调制器积分器的不确定性会导致不完全消除第一级量化噪声,并降低模数转换器中的信噪比。基于不确定线性状态空间表示的凸优化的鲁棒匹配滤波器设计给出了复杂的模型和高阶设计。这封信描述了一种多项式设计方法,可简化多线性模型和固定阶数滤波器。调制器被转换为多项式多态性,并且通过求解线性矩阵不等式(LMI)可以产生满足$ H_ {infty} $界线的滤波器。低频结果表明,所提出的滤波器性能优于标称滤波器,性能接近估计的最佳值。

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