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Application Research of Multi-Mode Relay in Future Heterogeneous Networks

机译:多模继承在未来异构网络中的应用研究

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The fast increase of users in existing mobile networks requires more base stations (BSs) to bear more communication traffic. Future heterogeneous network is considered to be a promising candidate architecture to meet the demands of wireless networks under scarcity of radio frequency (RF) resources. In this paper, we present a multi-mode relay (MMR) model based on two-way relay technology, which is applied to heterogeneous hierarchical wireless networks (HHWN), and set up a system model of HHWN with 3 tiers, 2 users between the macrocell, and the picocell as the multi-mode relay (MMR). Specifically, we consider the new system with unequal relay emission power situation, which is usually researched in the traditional literature with equal relay emission powers. Based on this idea, we define the two-way SINR ratio, derive the mathematical formulas of outage error probability with channel estimation errors, and verify theoretical expressions by data simulations. For further comparison, several experiments are implemented to illuminate the effect on outage probability among different levels of relay emission power, noise power, and signal power. Furthermore, several conclusions are obtained, which have some meanings for implementing MMR in future heterogeneous networks.
机译:现有移动网络中的用户的快速增加需要更多的基站(BSS)来承担更多通信流量。未来的异构网络被认为是有希望的候选架构,以满足无线网络的需求,在射频(RF)资源的缺点下。在本文中,我们介绍了一种基于双向继电器技术的多模继继电器(MMR)模型,该技术应用于异构分层无线网络(HHWN),并建立了带有3层的HHWN的系统模型,其中2个用户宏小区,以及微微电池作为多模式继电器(MMR)。具体而言,我们认为新系统具有不等的中继排放功率情况,通常在传统文献中研究具有相同的继电器排放权力。基于此思想,我们定义了双向SINR比率,通过信道估计错误导出中断误差概率的数学公式,并通过数据仿真验证理论表达式。为了进一步比较,实施了几个实验,以照亮不同水平的中继发射功率,噪声功率和信号功率的消失概率的影响。此外,获得了几种结论,这对于在未来的异构网络中实现MMR的一些意义。

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