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Optimum design of axial mode helical antenna with nonlinear pitch profile modeled using Catmull-Rom spline and Particle Swarm Optimization

机译:使用Catmull-ROM花键和粒子群优化建模的非线性俯仰曲线轴向模式螺旋天线的优化设计

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摘要

This paper presents a novel method for design of circularly polarized axial mode helical antenna with maximum directive gain. In this work helical antenna is compactly modeled by the following parameters - helix radius (a), number of turns (N) and nonlinear pitch profile represented by a Catmull-Rom spline curve. This spline curve consists of six pitch angles α1, α2, α3, α4, α5 and α6 at six equidistant points along the axial length of the helix. For a given number of turns, optimum values of radius and pitch profile are determined for maximizing the gain subject to unity axial ratio. The gain and axial ratio are determined using NEC2 (Numerical Electromagnetics Code) simulation and optimization is performed using Particle Swarm Optimization (PSO). The original NEC2 source code has been modified to incorporate Catmull-Rom spline modeling and PSO to suite the requirement of this work. Simulated and experimental results show that there is significant improvement in gain characteristics compared to design based on Kraus method which uses constant pitch profile.
机译:本文介绍了一种设计具有最大指示增益的圆极化轴向模式螺旋天线的新方法。在该工作中,螺旋天线由以下参数紧凑地建模 - 螺旋半径(a),由Catmull-ROM样条曲线表示的匝数(n)和非线性间距轮廓。该样条曲线由六个俯仰角α 1 ,α 3 ,α 4 ,α INF> 5 和α 6 在六个等距点沿螺旋的轴向长度。对于给定的匝数,确定半径和俯仰轮廓的最佳值,用于最大化受统一轴向比的增益。使用NEC2(数值电磁码)测定增益和轴向比率,使用粒子群优化(PSO)进行仿真和优化。原始的NEC2源代码已被修改为包含Catmull-ROM样条型建模和PSO以延示这项工作的要求。模拟和实验结果表明,与使用恒定间距曲线的Kraus方法的设计相比,增益特性有显着改善。

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