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Exponential Log-Periodic Antenna Design Using Improved Particle Swarm Optimization with Velocity Mutation

机译:基于速度变异的改进粒子群优化的指数对数周期天线设计

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摘要

An improved particle swarm optimization (PSO) method applied to the design of a new wideband log-periodic antenna (LPA) geometry is introduced. This new PSO variant, called PSO with velocity mutation (PSOvm), induces mutation on the velocities of those particles that cannot improve their position. The proposed LPA consists of wire dipoles with lengths and distances varied according to an exponential rule, which is defined by two specific parameters called length factor and spacing factor. The LPA is optimized for operation in 790-6000MHz frequency range, in order to cover the most usual wireless services in practice, and also to provide in this range the highest possible forward gain, gain flatness below 2dB, secondary lobe level below –20dB with respect to the main lobe peak, and standing wave ratio below 2. To demonstrate its superiority in terms of performance, PSOvm is compared to well-known optimization methods. The comparison is performed by applying all the methods on several test functions and also on the LPA optimization problem defined by the above-mentioned requirements. Furthermore, the radiation characteristics of the PSOvm-based LPA give prominence to the effectiveness of the proposed exponential geometry compared to the traditional Carrel’s geometry.
机译:介绍了一种改进的粒子群优化(PSO)方法,该方法适用于新型宽带对数周期天线(LPA)几何设计。这种新的PSO变体,称为具有速度突变的PSO(PSOvm),可在无法提高其位置的那些粒子的速度上引起突变。提出的LPA由线偶极组成,线偶极的长度和距离根据指数规则变化,该指数规则由两个特定的参数(长度因子和间隔因子)定义。 LPA已针对790-6000MHz频率范围内的运行进行了优化,以覆盖实践中最常用的无线服务,并在此范围内提供尽可能高的前向增益,低于2dB的增益平坦度,低于–20dB的副瓣电平,以及相对于主瓣峰,驻波比低于2。为了证明其在性能方面的优越性,将PSOvm与著名的优化方法进行了比较。通过将所有方法应用于几个测试功能以及上述要求定义的LPA优化问题来执行比较。此外,与传统的Carrel几何相比,基于PSOvm的LPA的辐射特性突出了建议的指数几何的有效性。

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