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Mobile beamforming spatially controlled relay communications

机译:移动波束成形和空间控制中继通信

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We consider stochastic motion planning in single-source singledestination robotic relay networks, under a cooperative beamforming framework. Assuming that the communication medium constitutes a spatiotemporal stochastic field, we propose a 2-stage stochastic programming formulation of the problem of specifying the positions of the relays, such that the expected reciprocal of their total beamforming power is maximized. Stochastic decision making is made on the basis of random causal CSI. Recognizing the intractability of the original problem, we propose a lower bound relaxation, resulting to a nontrivial optimization problem with respect to the relay locations, which is equivalent to a small set of simple, tractable subproblems. Our formulation results in spatial controllers with a predictive character; at each time slot, the new relay positions should be such that the expected power reciprocal at the next time slot is maximized. Quite remarkably, the optimal control policy to the relaxed problem is purely selective; under a certain sense, only the best relay should move.
机译:我们考虑在协作波束成形框架下的单源单目标机器人中继网络中的随机运动计划。假设通信介质构成了一个时空随机场,我们提出了一个两阶段随机编程公式,该公式指定了继电器的位置,从而使它们的总波束成形能力的预期倒数最大化。随机决策是基于随机因果CSI进行的。认识到原始问题的难解性,我们提出了一个下界松弛,从而导致了关于中继位置的非平凡优化问题,这等效于一小组简单,易于处理的子问题。我们的公式化导致具有预测特征的空间控制器;在每个时隙,新的继电器位置应使得在下一个时隙的预期功率倒数最大。非常明显的是,对松弛问题的最优控制策略是纯选择性的。在某种意义上,只有最好的继电器才能移动。

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