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3D-MIMO beamforming realised by AQPSO algorithm for cylindrical conformal phased array

机译:AQPSO算法实现的圆柱共形相控阵3D-MIMO波束形成

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Three-dimensional (3D)-MIMO beamforming realised by adaptive quantum particle swarm optimisation (AQPSO) algorithm for the 36-element cylindrical conformal phased array is proposed in this study. The cylindrical conformal phased array consists of 36 circularly polarised microstrip antenna elements with ultra-wideband and high gain characteristics. The conformal array is divided into 12 subarrays using reconfigurable technology, and each subarray produces six beams to cover the corresponding spatial area. The 3D-MIMO beam is formed by AQPSO, and the active element pattern data of array elements is introduced to AQPSO to improve the accuracy of the algorithm. The simulated and measured results show that the cylindrical conformal phased array can achieve 3D-MIMO beam coverage from 0 degrees to 360 degrees in the azimuth plane and from 67.5 degrees to 112.5 degrees in the elevation plane. It can be applied for satellite communication and fifth-generation base station communication.
机译:提出了通过自适应量子粒子群算法(AQPSO)实现的36元圆柱共形相控阵三维(3D)-MIMO波束成形。圆柱共形相控阵由36个具有超宽带和高增益特性的圆极化微带天线元件组成。使用可重构技术将共形阵列分为12个子阵列,每个子阵列产生六束光束以覆盖相应的空间区域。通过AQPSO形成3D-MIMO波束,并将阵列元素的有源元素模式数据引入AQPSO,以提高算法的准确性。仿真和测量结果表明,圆柱共形相控阵可以在方位角平面从0度到360度以及在仰角平面从67.5度到112.5度实现3D-MIMO波束覆盖。它可以用于卫星通信和第五代基站通信。

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