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Design of Linear Phased Array for Interference Suppression Using Array Polynomial Method and Particle Swarm Optimization

机译:基于阵列多项式和粒子群算法的线性相控阵干扰抑制设计

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In this work, a linear phased array pattern design with null steering is achieved using the array polynomial technique and the Particle Swarm Optimization (PSO) algorithm. The null steering for interference suppression is obtained by controlling some of the roots on the Schelkunoff's unit circle while keeping the roots responsible for the main beam unchanged. The rest of the roots are controlled to minimize the Side Lobe Level (SLL) of the array pattern using the PSO algorithm. It has been demonstrated that this technique achieved more than 50% reduction in the parameters needed to be optimized compared with the conventional complex coefficients optimization techniques. Consequently, the fitness function is only responsible for the SLL as the prescribed controlled nulls and the mainbeam characteristics are solved analytically. The simulated results show the effectiveness of the proposed technique.
机译:在这项工作中,使用阵列多项式技术和粒子群优化(PSO)算法,实现了具有空转向的线性相控阵图案设计。通过控制Schelkunoff单位圆上的一些根,同时保持负责主光束的根不变,可以获得用于抑制干扰的零转向。使用PSO算法控制其余的根,以最小化阵列模式的旁瓣电平(SLL)。已经证明,与传统的复系数优化技术相比,该技术将需要优化的参数减少了50%以上。因此,适应度函数仅负责SLL,因为规定的受控零点和主光束特性通过解析得到解决。仿真结果表明了该技术的有效性。

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