Spectrum sharing between cellular and mobile ad hoc networks: Transmission-capacity tradeoff

Kaibin Huang, V. Lau, Yan Chen
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引用次数: 37

Abstract

Spectrum sharing between wireless networks improves the usage efficiency of radio spectrums. This paper addresses spectrum sharing between a cellular uplink and a mobile ad hoc networks. These networks use either all uplink frequency subchannels or their disjoint subsets, called spectrum underlay and spectrum overlay, respectively. Given these methods, the capacity tradeoff between the coexisting networks is analyzed in terms of transmission capacity. For a network with Poisson distributed transmitters, this metric is defined as the maximum density of transmitters subject to an outage constraint for a given signal-to-interference ratio (SIR). Using stochastic geometry, the transmission-capacity tradeoff between the coexisting networks is derived, where both spectrum overlay and underlay as well as successive interference cancelation (SIC) are considered. In particular, for small target outage probability, the transmission capacities of the coexisting networks are proved to satisfy a linear equation. Its coefficients depend on the spectrum sharing method and whether SIC is applied. This linear equation shows that spectrum overlay is more efficient than spectrum underlay.
蜂窝和移动自组织网络之间的频谱共享:传输容量权衡
无线网络之间的频谱共享提高了无线电频谱的使用效率。本文讨论了蜂窝上行链路和移动自组织网络之间的频谱共享。这些网络要么使用所有上行频率子信道,要么使用它们不相交的子集,分别称为频谱底层和频谱覆盖。根据这些方法,从传输容量的角度分析了共存网络之间的容量权衡。对于泊松分布发射机的网络,该度量被定义为给定信号干扰比(SIR)下受中断约束的发射机的最大密度。利用随机几何,推导了共存网络之间的传输容量权衡,其中考虑了频谱覆盖和底层以及连续干扰消除(SIC)。特别地,在目标中断概率较小的情况下,证明了共存网络的传输容量满足线性方程。其系数取决于频谱共享方法和是否应用SIC。该线性方程表明,频谱叠加比频谱底层更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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