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Cooperative Beamforming with Multi-Relay Selection for Wireless Ad Hoc Networks

机译:用于无线临时网络的多继电器选择合作波束成形

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Cooperative beamforming is an energy-efficient cooperative transmission technique that cophases multiple received signals to increase received power at the destination. With perfect synchronization, a deterministic mainlobe in the direction of the destination can be guaranteed for any distribution of nodes. However, the sidelobes appear to be probabilistic in other directions. A high-power-level sidelobe may cause an unacceptable interference at an unintended receiver, thereby decreasing network capacity. In this paper, we propose a multi-relay selection scheme to control the sidelobes in cooperative beamforming systems. An optimization problem is formulated to minimize the average power over all unintended directions with a constraint of unit power gain pointing to the destination. To solve the problem efficiently, we propose a suboptimal solution that first finds the best reference relay and then selects the remaining relays accordingly. Simulation results show that the proposed multi-relay selection algorithm has lower average power over all unintended directions than both the nearest- and farthest-relays cases, where the performance is close to that of the exhaustive search approach.
机译:协作波束成形是一种节能的协作传输技术,其开入多个接收信号以增加目的地的接收功率。通过完美同步,可以保证目的地方向的确定性MainLobe以获得节点的任何分布。然而,侧面梭形似乎是其他方向的概率。高功率级Sidelobe可能会在非预期的接收器处导致不可接受的干扰,从而降低网络容量。在本文中,我们提出了一种多继电器选择方案来控制合作波束形成系统中的侧面。配制优化问题,以最小化所有意外方向上的平均功率,其限制指向目的地的单位功率增益。为了有效地解决问题,我们提出了一个次优的解决方案,首先找到最佳的参考继电器,然后相应地选择其余的继电器。仿真结果表明,所提出的多继电器选择算法的平均电量较低,而不是最接近的 - 和较远的继电器案例,其中性能接近详尽的搜索方法。

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