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On Chebyshev Array Design Using Particle Swarm Optimization

机译:基于粒子群算法的切比雪夫阵列设计

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In this paper, the evolutionary algorithm of particle swarm optimization (PSO) is applied to synthesis an optimal linear array in the Chebychev sense. Equiripple radiation patterns may be obtained by synthesizing the excitation currents feeding the array or by carefully choosing the interelement spacing. The desired equal side lobes level is achieved simultaneously with the narrowest possible beamwidth (high directivity). Though the optimization problem may become nonlinear, convex and/or sometimes nonconvex, it can be handled using an efficient, a robust and a nongradient based particle swarm optimizer algorithm. In order to effectively utilize this algorithm it is important to define an appropriate objective, or cost, function that return a single number to enable the PSO algorithm minimizing it. In this paper, the objective function is formulated taking into consideration the level of the side lobes as well as the main beam width. In addition to satisfy the objective function, the obtained results using the proposed technique are in agreement with those available in the literature.
机译:本文将粒子群优化算法(PSO)的进化算法应用于切比雪夫意义上的最优线性阵列的合成。可以通过合成馈入阵列的激励电流或通过仔细选择元素间距来获得等幅辐射图。同时以尽可能窄的波束宽度(高指向性)同时获得所需的相等旁瓣电平。尽管优化问题可能会变成非线性,凸和/或有时是非凸的,但可以使用高效,鲁棒和基于非梯度的粒子群优化算法来处理该问题。为了有效利用此算法,重要的是定义一个适当的目标或成本函数,该函数返回单个数字以使PSO算法将其最小化。在本文中,目标函数的制定考虑了旁瓣的水平以及主波束宽度。除了满足目标函数,使用所提出的技术获得的结果与文献中可获得的结果一致。

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