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Maximin Joint Optimization of Transmitting Code and Receiving Filter in Radar and Communications

机译:雷达和通信中Maximin发射码和接收滤波器的联合优化

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摘要

In this paper, we conduct the joint design of transmitting sequence(s) and receiving filters subject to the Peak-to-Average Ratio (PAR) constraint in radar and communications applications. We consider optimizing the worst-case performance and the resulting optimization problem takes a maximin format. We propose two algorithms based on the MM (Majorization–Minimization or Minorization–Maximization) method as opposed to the traditional epigraph-based smooth reformulation. On top of that, both algorithms are guaranteed to converge to a B(oulingand)-stationary solution, and B-stationarity is the appropriate stationarity condition for problems with a nonconvex constraint set. The proposed algorithms successively solve a series of simple convex problems that enjoy low computational complexity. Numerical simulations have shown that the proposed algorithms empirically achieve slightly higher objective values and converge faster in terms of CPU time than the existing methods.
机译:在本文中,我们在雷达和通信应用中进行了受峰均比(PAR)约束的发射序列和接收滤波器的联合设计。我们考虑优化最坏情况下的性能,并且所产生的优化问题采用maximin格式。我们提出了两种基于MM(主要化-最小化或最小化-最大化)方法的算法,这与传统的基于题词的平滑重构不同。最重要的是,两种算法都保证收敛到B(oulingand)平稳解,并且B平稳性是具有非凸约束集的问题的合适平稳性条件。所提出的算法相继解决了一系列具有低计算复杂度的简单凸问题。数值仿真表明,与现有方法相比,所提出的算法在经验上达到了稍高的目标值,并且在CPU时间方面收敛得更快。

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