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Optimal Design of Nonuniform FIR Transmultiplexer Using Semi-Infinite Programming

机译:基于半无限规划的非均匀FIR多路复用器的优化设计

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This correspondence considers an optimum nonuniform finite impulse response (FIR) transmultiplexer design problem subject to specifications in the frequency domain. Our objective is to minimize the sum of the ripple energy for all the individual filters, subject to the specifications on amplitude and aliasing distortions, and to the passband and stopband specifications for the individual filters. This optimum nonuniform transmultiplexer design problem can be formulated as a quadratic semi-infinite programming problem. The dual parametrization algorithm is extended to this nonuniform transmultiplexer design problem. If the lengths of the filters are sufficiently long and the set of decimation integers is compatible, then a solution exists. Since the problem is formulated as a convex problem, if a solution exists, then the solution obtained is unique, and the local solution is a global minimum.
机译:该对应关系考虑了在频域中受规范影响的最佳非均匀有限冲激响应(FIR)多路复用器设计问题。我们的目标是根据振幅和混叠失真的规范以及各个滤波器的通带和阻带规范,使所有单个滤波器的纹波能量总和最小化。这个最优的非均匀多路复用器设计问题可以表述为二次半无限编程问题。将双重参数化算法扩展到此非均匀的多路复用器设计问题。如果滤波器的长度足够长,并且抽取整数集兼容,则存在解决方案。由于问题被表述为凸问题,因此,如果存在解,则获得的解是唯一的,而局部解是全局最小值。

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