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A Decomposition Principle for Link and Relay Selection in Dual-hop 60 GHz Networks

机译:双跳60 GHz网络中的链路和中继选择的分解原理

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We investigate the scheduling problem in a centralized dual-hop 60 GHz network with multiple Source-Destination (SD) pairs, relays, and a PicoNet Coordinator (PNC). The objective is to minimize the Maximum Expected Delivery Time (MEDT) among all SD pairs by jointly optimizing relay and link selection, while exploiting reflected mmWave transmissions and considering link blockage dynamics. We develop a Decomposition Principle to transform this problem into two sub-problems, one for link selection and the other for relay assignment when there is enough replays. We prove that the proposed scheme can achieve an optimality gap of just 1 time slot at greatly reduced complexity. We also develop a heuristic scheme to handle the case when there is no enough relays. The proposed schemes are validated with simulations, where their superior performance is observed.
机译:我们在具有多个源目的地(SD)对,继电器和微微网协调器(PNC)中的集中式双跳60GHz网络中调查调度问题。目的是通过联合优化继电器和链路选择,在利用反射MMWAVE传输并考虑链路阻断动态的同时最小化所有SD对中所有SD对中的最大预期输送时间(MEDT)。我们开发了一个分解原则,将这个问题转化为两个子问题,一个用于链接选择,另一个用于在有足够的重放时的中继分配。我们证明了所提出的方案可以在大大降低复杂性的情况下实现仅1个时间槽的最优性差距。我们还开发了一种启发式方案,在没有足够的继电器时处理这种情况。所提出的方案用仿真验证,其中观察到其卓越的性能。

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