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Conjecture on the absence of limit cycles in second-order digital filters with minimum L2-sensitivity subject to L2-scaling constraints

机译:关于在L 2 缩放约束下具有最小L 2 灵敏度的二阶数字滤波器中没有极限环的猜想

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This paper gives conjecture on the absence of limit cycles of second-order digital filters with minimum L-sensitivity subject to L-scaling constraints. We evaluate a sufficient condition for the absence of limit cycles of second-order digital filters with minimum L-sensitivity subject to L-scaling constraints from their filter coefficient matrices. We next design second-order digital filters for various pole-zero configurations, synthesize the minimum L-sensitivity realizations, and confirm if their coefficient matrices satisfy the sufficient condition for the absence of limit cycles. Experimental results show the minimum L-sensitivity realizations subject to L-scaling constraints of second-order digital filters satisfy a sufficient condition for the absence of limit cycles in the range of practical pole radii.
机译:本文提出了一个假设,即在L缩放约束下,具有最小L灵敏度的二阶数字滤波器没有极限环。我们从其滤波器系数矩阵中评估了一个最小的L灵敏度受到L缩放约束的二阶数字滤波器没有极限环的充分条件。接下来,我们将设计用于各种零极点配置的二阶数字滤波器,综合最小的L灵敏度实现,并确认其系数矩阵是否满足没有极限环的充分条件。实验结果表明,受到二阶数字滤波器的L缩放约束的最小L灵敏度实现满足了在实际极半径范围内不存在极限环的充分条件。

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