中上衰落信道下毫米波集成设备对设备通信系统的中断分析

Ratnakant Dinraj Govenker, Atharva Phatak, Rahul Bajpai, Naveen Gupta
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引用次数: 4

摘要

毫米波(mmWave)通信已成为满足高密度室内环境下下一代蜂窝网络容量需求的有希望的候选者。利用定向毫米波设备到设备(D2D)通信系统提供低功耗、高数据速率传输和可控干扰。本文推导了毫米波综合D2D通信系统在Nakagami-m衰落信道下的速率和中断概率。在多个蜂窝或D2D用户干扰毫米波集成D2D传输的情况下,通过获得D2D用户中断概率的封闭表达式来分析该模型的性能。研究了扇形波束形成增益概率和干扰节点距离等系统参数对D2D中断概率的影响。结果表明,D2D中断概率随着主瓣增益的增大而减小,而随着副瓣增益的增大而增大。
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Outage Analysis of mmWave Integrated Device-to-Device Communication System under Nakagami Fading Channel
Millimeter-wave (mmWave) communication has emerged as a promising candidate to meet the capacity demand in highly dense indoor environments for the next-generation cellular networks. Utilization of directional mmWave for Device to Device (D2D) communication systems provides low powered, high data rate transmission with manageable interference. In this paper, the rate and outage probability for mmWave integrated D2D communication system under Nakagami-m fading channel are derived. The performance of the model is analyzed by obtaining the closed-form expressions for the outage probability of a D2D user, wherein multiple cellular or D2D users are interfering with a mmWave integrated D2D transmission. The impact of various system parameters such as sectored beamforming gain probabilities and distance from interfering nodes on D2D outage probability are also investigated. Results show that the D2D outage probability decreases with an increase in main lobe gain, whereas increases with an increase in side lobe gain.
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