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首页> 外文期刊>Science in China, Series F. Information Sciences >Optimal design and verification of temporal and spatial filters using second-order cone programming approach
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Optimal design and verification of temporal and spatial filters using second-order cone programming approach

机译:使用二阶锥规划方法对时空滤波器进行优化设计和验证

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摘要

Temporal filters and spatial filters are widely used in many areas of signal processing. A number of optimal design criteria to these problems are available in the literature. Various computational techniques are also presented to optimize these criteria chosen. There are many drawbacks in these methods. In this paper, we introduce a unified framework for optimal design of temporal and spatial filters. Most of the optimal design problems of FIR filters and beamformers are included in the framework. It is shown that all the design problems can be reformulated as convex optimization form as the second-order cone programming (SOCP) and solved efficiently via the well-established interior point methods. The main advantage of our SOCP approach as compared with earlier approaches is that it can include most of the existing methods as its special cases, which leads to more flexible designs. Furthermore, the SOCP approach can optimize multiple required performance measures, which is the drawback of earlier approaches. The SOCP approach is also developed to optimally design temporal and spatial two-dimensional filter and spatial matrix filter. Numerical results demonstrate the effectiveness of the proposed approach.
机译:时间滤波器和空间滤波器广泛用于信号处理的许多领域。文献中提供了针对这些问题的许多最佳设计准则。还提出了各种计算技术来优化选择的这些标准。这些方法有很多缺点。在本文中,我们介绍了用于时空滤波器最佳设计的统一框架。 FIR滤波器和波束形成器的大多数最佳设计问题都包含在框架中。结果表明,所有设计问题都可以作为凸优化形式重新构造为二阶锥规划(SOCP),并且可以通过完善的内点方法有效地解决。与早期方法相比,我们的SOCP方法的主要优点是它可以将大多数现有方法作为特殊情况包括在内,从而可以实现更灵活的设计。此外,SOCP方法可以优化多个所需的性能指标,这是早期方法的缺点。还开发了SOCP方法来优化设计时空二维滤波器和空间矩阵滤波器。数值结果证明了该方法的有效性。

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