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Connectivity Analysis of Millimeter-Wave Device-to-Device Networks with Blockage

机译:毫米波设备间网络的连通性分析

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We consider device-to-device (D2D) communications in millimeter-wave (mm Wave) for the future fifth generation (5G) cellular networks. While the mm Wave systems can support multiple D2D pairs simultaneously through beamforming with highly directional antenna arrays, the mm Wave channel is significantly more susceptible to blockage compared to microwave; mm Wave channel studies indicate that if line-of-sight (LoS) paths are blocked, reliable mm Wave communications may not be achieved for high data-rate applications. Therefore, assuming that an outage occurs in the absence of the LoS path between two wireless devices by obstructions, we focus on connectivity of the mm Wave D2D networks. We consider two types of D2D communications: direct and indirect schemes. The connectivity performances of the two schemes are investigated in terms of (i) the probability to achieve a fully connected network P-FC and (ii) the average number of reliably connected devices gamma. Through analysis and simulation, we show that, as the network size increases, P-FC and gamma decrease. Also, P-FC and gamma decrease, when the blockage parameter increases. Moreover, simulation results indicate that the hybrid direct and indirect scheme can improve both P-FC and gamma up to about 35% compared to the nonhybrid scheme.
机译:我们考虑将毫米波(mm Wave)用于未来的第五代(5G)蜂窝网络中的设备到设备(D2D)通信。尽管毫米波系统可以通过具有高度定向性的天线阵列通过波束成形同时支持多个D2D对,但是毫米波通道与微波相比明显更容易受到阻塞;毫米波通道研究表明,如果视线(LoS)路径被阻塞,则对于高数据速率应用,可能无法实现可靠的毫米波通信。因此,假设由于障碍而在两个无线设备之间没有视距路径时发生中断,我们将重点放在毫米波D2D网络的连接上。我们考虑两种类型的D2D通信:直接方案和间接方案。根据(i)实现完全连接的网络P-FC的概率和(ii)可靠连接的设备的平均数量γ来研究这两种方案的连接性能。通过分析和仿真,我们表明,随着网络规模的增加,P-FC和伽马会减小。同样,当阻塞参数增加时,P-FC和伽玛值也会降低。此外,仿真结果表明,与非混合方案相比,混合直接方案和间接方案可以将P-FC和伽玛值提高约35%。

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  • 来源
    《International journal of antennas and propagation 》 |2016年第3期| 7939671.1-7939671.9| 共9页
  • 作者

    Jung Haejoon; Lee In-Ho;

  • 作者单位

    Incheon Natl Univ, Dept Informat & Telecommun Engn, Inchon 22012, South Korea;

    HankyongNatl Univ, Dept Elect Elect & Control Engn, Ansong 456749, South Korea;

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