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Efficient transmission strategy selection algorithm for M2M communications: An evolutionary game approach

机译:M2M通信的有效传输策略选择算法:一种进化博弈方法

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Device-to-device (D2D) communications, one of the major component of the evolving 5G networks, is showing promising advantages on supporting machine-to-machine (M2M) communications. In this paper, we consider the design of efficient transmission strategy selection algorithm for M2M communications underlaying cellular networks. First, a group of machine type-devices (MTDs) is matched with a particular user equipment (UE). MTDs belonging to the same group can access the same spectrum within its matched UE while the latter quality of service (QoS) is maintained. Next, we propose an efficient evolutionary game based transmission strategy selection algorithm for M2M communications using D2D mode. Specifically, MTDs switch opportunistically from a non-cooperative strategy to a cooperative strategy. Initially, we consider a non-cooperative scenario due to the selfish behavior of devices. In case the latter QoS is not satisfied, MTDs switch to a cooperative game. In a cooperative game, we propose two alternative power control schemes: a fixed mixed-strategy power control scheme where each MTD willing to play cooperatively selects the power strategy from a discrete level of powers and an adaptive mixed-strategy power control scheme. The latter technique enables to set efficiently the discrete power levels using a fuzzy logic and a proportional-integral-derivative (PID) controllers aiming to assure the desired QoS of UEs while maximizing the efficiency of M2M communications. Simulation results show that the evolutionary game based transmission strategy selection algorithm avoids significant degradation of traditional human-to-human (H2H) services in terms of throughput and fairness compared to a single non-cooperative game strategy. Besides, the adaptive mixed-strategy power control scheme outperforms the fixed mixed-strategy power control scheme by saving the battery life of MTDs while guaranteeing the latter QoS.
机译:设备到设备(D2D)通信是不断发展的5G网络的主要组成部分之一,在支持机器对机器(M2M)通信方面显示出令人鼓舞的优势。在本文中,我们考虑了用于蜂窝网络下的M2M通信的高效传输策略选择算法的设计。首先,一组机器类型设备(MTD)与特定的用户设备(UE)相匹配。属于同一组的MTD可以在其匹配的UE内访问相同的频谱,同时保持后者的服务质量(QoS)。接下来,我们为使用D2D模式的M2M通信提出了一种高效的基于演化游戏的传输策略选择算法。具体来说,MTD会从非合作策略向合作策略投机。最初,由于设备的自私行为,我们考虑了非合作方案。如果不满足后者的QoS,则MTD会切换到合作游戏。在合作游戏中,我们提出了两种可选的功率控制方案:一种固定的混合策略功率控制方案,其中每个MTD愿意合作玩耍,以从离散的功率水平中选择功率策略;以及一种自适应的混合策略功率控制方案。后一种技术能够使用模糊逻辑和比例积分微分(PID)控制器有效地设置离散功率电平,目的是确保UE的所需QoS,同时最大化M2M通信的效率。仿真结果表明,与单个非合作博弈策略相比,基于演化博弈的传输策略选择算法在吞吐量和公平性方面避免了传统人对人(H2H)服务的显着降低。此外,自适应混合策略功率控制方案通过节省MTD的电池寿命,同时又保证了后者的QoS,优于固定混合策略功率控制方案。

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