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首页> 外文期刊>IEEE transactions on mobile computing >On Uplink Virtual MIMO with Device Relaying Cooperation Enforcement in 5G Networks
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On Uplink Virtual MIMO with Device Relaying Cooperation Enforcement in 5G Networks

机译:5G网络中具有设备中继协作执行功能的上行虚拟MIMO研究

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摘要

In this paper, a novel protocol is proposed in which mobile terminals (MT) form a virtual Multiple-input Multiple-output (MIMO) uplink by means of device relaying on Device to Device (D2D) tier in 5G Cellular Network. The competitive scenario is considered in which each of the selfish MTs tries to transmit its own data and not relay others' data in the formed virtual MIMO. The main focus is to design an incentive for MTs to form the virtual MIMO and cooperate in relaying others data. A direct revelation on-line mechanism for the BS is designed, in order to assist forming a stable virtual MIMO. A self-punishment mechanism is also proposed in which MTs autonomously punish malicious MTs that do not cooperate in relaying. We prove that our designed direct revelation on-line mechanism and proposed self-punishment mechanism enforce all-cooperation (all-C) profile as a Nash equilibrium (NE), under uncertainty in the presence of MTs in the formed virtual MIMO. Our simulation results confirm that the proposed protocol, even in the competitive scenario, increases the bit rate and decreases power consumption at the same time. The proposed protocol can improve the energy efficiency up to 35 percent compared to a non-cooperative case, i.e., Single-Input Multiple-Output (SIMO) uplink. Moreover, if the multi-user MIMO transmission is used for the uplink medium access layer, the proposed protocol can improve the energy efficiency up to 42 percent compared to SIMO uplink with multi-user MIMO transmission. Under the proposed OCVM protocol with Shapley value fairness, the price of anarchy reaches to 0.78 in the competitive scenario. In addition, the energy efficiency improvement of our proposed protocol is almost robust to the preferences of MTs. Simulation results show that if BS employs our on-line mechanism and MTs autonomously punish malicious MTs, the malicious MTs cannot gain by defecting from relaying other MTs' data.
机译:在本文中,提出了一种新颖的协议,其中移动终端(MT)通过在5G蜂窝网络中的设备到设备(D2D)层上进行设备中继来形成虚拟多输入多输出(MIMO)上行链路。考虑了竞争情况,其中每个自私的MT尝试传输自己的数据,而不在形成的虚拟MIMO中中继其他人的数据。主要重点是设计一种激励机制,以鼓励MT形成虚拟MIMO并合作中继其他数据。设计用于BS的直接启示在线机制,以帮助形成稳定的虚拟MIMO。还提出了一种自我惩罚机制,其中MT自主惩罚不合作进行中继的恶意MT。我们证明,在已形成的虚拟MIMO中存在MT的不确定性下,我们设计的直接启示在线机制和建议的自惩罚机制将所有协作(all-C)配置文件作为纳什均衡(NE)强制执行。我们的仿真结果证实,即使在竞争激烈的情况下,所提出的协议也可以提高比特率并同时降低功耗。与非协作情况(即单输入多输出(SIMO)上行链路)相比,该协议可将能源效率提高多达35%。此外,如果将多用户MIMO传输用于上行链路媒体访问层,则与具有多用户MIMO传输的SIMO上行链路相比,所提出的协议可以将能源效率提高多达42%。在提出的具有Shapley价值公平性的OCVM协议下,在竞争情况下,无政府状态的价格达到0.78。另外,我们提出的协议的能效改进对MT的偏好几乎是健壮的。仿真结果表明,如果BS采用我们的在线机制,并且MT自主地惩罚恶意MT,则恶意MT无法通过中继其他MT数据而产生缺陷。

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