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On the local minima in phase reconstruction algorithms

机译:关于相位重构算法中的局部极小值

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摘要

Signal reconstruction from phaseless data occurs in electromagnetics both in the diagnostics of large reflector antennas and in the near-field testing of microwave and millimeter wave antennas. The main difficulty in solving such problems arises from its inherent nonlinearity. Because of the latter, in fact, the solution procedure can converge to a function which has nothing to deal with the actual solution. In this paper we review and summarize the properties of a recently proposed approach to phase retrieval problems which allows to understand and possibly avoid the false solution problem. To this end, ill-posedness of the problem is briefly recalled, and a convenient generalized solution is introduced as the global minimum of a proper functional whose local minima are indeed the false solutions of the problem. Then the geometrical meaning of such a functional is considered, and properties of the solution are discussed according to the formulation of the problem as a quadratic inverse one. In particular, the relevance of using nonredundant representations for the unknown of the problem and as many independent data as possible are discussed in full detail from both a theoretical and a numerical point of view. Finally, it is shown how the proposed solution procedure, descending from the adopted formulation based on a weaker nonlinearity with respect to the other ones, has indeed a better behavior as far as local minima problem is concerned.
机译:无相位数据的信号重建在大型反射器天线的诊断以及微波和毫米波天线的近场测试中都发生在电磁学中。解决此类问题的主要困难来自其固有的非线性。由于有了后者,实际上,求解过程可以收敛到一个与实际求解无关的函数。在本文中,我们回顾并总结了最近提出的相位检索问题方法的性质,该方法可以理解并可能避免错误的解决问题。为此,简短地回顾了问题的不适定性,并引入了一种便捷的广义解决方案,作为适当函数的全局最小值,该函数的局部最小值确实是问题的错误解决方案。然后考虑了该函数的几何意义,并根据问题的二次方程式讨论了该解的性质。特别是,从理论和数值的角度都详细讨论了使用非冗余表示来解决问题的未知性以及尽可能多的独立数据的相关性。最后,表明了所建议的求解程序是如何从基于相对于其他方法的较弱非线性的已采用公式派生而来的,在涉及局部极小值问题方面确实具有更好的性能。

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