A Pattern Shaping Approach for Distributed Collaborative Beamforming

Michael V. Lipski, S. Kompella, R. Narayanan
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Abstract

Collaborative transmit beamforming using coherent distributed arrays is a method by which multiple wireless nodes synchronize their transmissions in order to synthesize a virtual antenna array. Assuming a high degree of inter-node synchronization in frequency, phase, and location, wireless transmitters can synthesize a beam with a power gain of $N^{2}$ towards any arbitrary direction. Using a planar model, we examine the use of global optimization algorithms to add additional beams or nulls to the transmit pattern of a distributed array. Using simulations, we show that adjusting the positions of array nodes can reliably create multiple side beams or nulls in desired azimuth locations. Simulated annealing and pattern search optimization methods are explored for both beam forming and nulling and are compared across the average side beam intensity, node displacement, and algorithm running time.
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分布式协同波束形成的模式整形方法
利用相干分布式阵列协同发射波束形成是一种利用多个无线节点同步发射以合成虚拟天线阵列的方法。假设节点间在频率、相位和位置上高度同步,无线发射机可以向任意方向合成功率增益为$N^{2}$的波束。使用平面模型,我们研究了使用全局优化算法向分布式阵列的发射方向图添加额外波束或空点。通过仿真,我们证明了调整阵列节点的位置可以可靠地在期望的方位角位置产生多个侧波束或空波束。研究了模拟退火和模式搜索优化方法对光束形成和零化的影响,并对平均侧束强度、节点位移和算法运行时间进行了比较。
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