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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Multi-Player Multi-Armed Bandits for Stable Allocation in Heterogeneous Ad-Hoc Networks
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Multi-Player Multi-Armed Bandits for Stable Allocation in Heterogeneous Ad-Hoc Networks

机译:异构Ad-Hoc网络中稳定分配的多层多层武装土匪

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摘要

Next generation networks are expected to be ultra-dense and aim to explore spectrum sharing paradigm that allows users to communicate in licensed, shared as well as unlicensed spectrum. Such ultra-dense networks will incur significant signaling load at base stations leading to a negative effect on spectrum and energy efficiency. To minimize signaling overhead, an ad-hoc approach is being considered for users communicating in the unlicensed and shared spectrums. For such users, decisions need to he completely decentralized as: 1) No communication between users and signaling from the base station is possible which necessitates independent channel selection at each user. A collision occurs when multiple users transmit simultaneously on the same channel, 2) Channel qualities may be heterogeneous, i.e., they are not same across all users, and moreover, are unknown, and 3) The network could he dynamic where users can enter or leave anytime. We develop a multi-armed bandit based distributed algorithm for static networks and extend it for the dynamic networks. The algorithms aim to achieve stable orthogonal allocation (SOC) in finite time and meet the above three constraints with two novel characteristics: 1) Low complexity narrowband radio compared to wideband radio in existing works, and 2) Epoch-less approach for dynamic networks. We establish convergence of our algorithms to SOC and validate via extensive simulation experiments.
机译:下一代网络有望成为超密集网络,旨在探索频谱共享模式,使用户可以在许可,共享和非许可频谱中进行通信。这样的超密集网络将在基站处引起很大的信令负载,从而导致对频谱和能量效率的负面影响。为了使信令开销最小化,正在为在未许可和共享频谱中通信的用户考虑一种即席方法。对于这样的用户,需要将决策完全下放为:1)用户之间的通信和来自基站的信令都是不可能的,这需要在每个用户处进行独立的信道选择。当多个用户在同一信道上同时传输时发生冲突; 2)信道质量可能是异构的,即,所有用户之间的信道质量都不相同,而且未知,并且3)用户可以进入或进入的网络可能会动态变化。随时离开。我们为静态网络开发了一种基于多武装强盗的分布式算法,并将其扩展到了动态网络。该算法旨在在有限时间内实现稳定的正交分配(SOC),并满足上述三个具有两个新颖特征的约束:1)与现有工作中的宽带无线电相比,低复杂度的窄带无线电;以及2)动态网络的无时空方法。我们建立了算法与SOC的融合,并通过广泛的仿真实验进行了验证。

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