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首页> 外文期刊>IEEE communications letters >Game-Theoretic Mode Scheduling for Dynamic TDD in 5G Systems
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Game-Theoretic Mode Scheduling for Dynamic TDD in 5G Systems

机译:5G系统动态TDD的游戏理论模式调度

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摘要

Dynamic time-division duplexing (TDD) enables independent uplink/downlink mode scheduling at each cell, based on the local traffic. However, this creates cross-interference among cells. Thus, the joint power allocation and scheduling problem becomes mixed-integer non-convex and turns out to be NP-hard. We propose a low-complexity and decentralized solution, where power allocation and scheduling are decoupled. First, power is allocated in a decentralized fashion, and then modes are scheduled by a non-cooperative game to achieve the mixed-strategy Nash equilibrium. We consider two possible approaches to compute the payoffs in the game, according to the cross-interference power model and the entailed communication overhead among cells. Simulation results are presented for an outdoor dense small-cell scenario, showing that our approaches outperform static TDD significantly.
机译:动态时分双工(TDD)基于本地业务,在每个小区中启用在每个小区处的独立上行链路/下行链路模式调度。 但是,这会产生细胞之间的交叉干扰。 因此,接合功率分配和调度问题变为混合整数非凸起,并结果为np-chill。 我们提出了一种低复杂性和分散的解决方案,其中功率分配和调度分离。 首先,以分散的方式分配电力,然后通过非协作游戏调度模式以实现混合策略的纳什均衡。 根据交叉干扰功率模型和细胞中需要的通信开销,我们考虑两种可能的方法来计算游戏中的收益。 仿真结果显示为室外密集的小型电池情景,表明我们的方法显着优于静态TDD。

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