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Method for optimization of plane waves in the near field

机译:优化近场平面波的方法

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Optimized array processing techniques have been effectively used to achieve acceptable plane wave uniformity throughout a volume in the near field that is necessary for in-situ array calibration and testing purposes and for conducting experiments such as scattering measurements on a large target in a controlled environment. A near field array design is validated for the linear array based on the least squares method. A more useful Near Field Optimized Array (NFOA) based on stochastic algorithms is designed to improve the signal intensity drastically at the designated near field plane wave region while maintaining very good quality of the synthesized plane wave. When used as a projector with the optimized weights, the NFOA produces a nearly uniform plane wave over a large volume in its near field and over a large frequency range. When the same shading coefficients are used at the receiver side, the NFOA becomes a plane wave filter for the field radiation originating from within the plane wave volume which is critical in target scattering analysis. Numerical implementation based on Least Squares (LS) technique, Simulated Annealing (SA) and Genetic Algorithm (GA) are used to obtain the optimum shading coefficients for the individual elements in the NFOA, and the results are compared in terms of intensity of the plane wave and its quality factors.
机译:已经有效地使用优化的阵列处理技术来实现在近场中的近场中的容积中的可接受平面波均匀性,这对于原位阵列校准和测试目的是必要的,并且用于在受控环境中对大目标进行散射测量的实验。基于最小二乘法的线性阵列验证了近场阵列设计。基于随机算法的近场优化阵列(NFOA)更有用的近场优化阵列(NFOA)旨在在指定的近场平面波区域上急剧提高信号强度,同时保持合成平面波的非常好的质量。当用作具有优化重量的投影仪时,NFOA在其近场和大频率范围内产生几乎均匀的平面波。当在接收器侧使用相同的着色系数时,NFOA成为源自在靶散射分析中至关重要的平面波容积内的场辐射的平面波滤波器。基于最小二乘(LS)技术,模拟退火(SA)和遗传算法(GA)的数值实现用于获得NFOA中各个元素的最佳阴影系数,并且在平面的强度方面比较结果波浪及其质量因素。

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