通过MISO技术提高基于集群的网络效率

P. Bithas, Athanasios S. Lioumpas, A. Alexiou
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引用次数: 0

摘要

在实现物联网(IoT)的过程中,蜂窝网络有望发挥基础性作用,提供无处不在的覆盖和全球互联。然而,由于许多这些对象的物理限制,即能量消耗或硬件复杂性,阻碍了与蜂窝基础设施的直接通信。从这个意义上讲,基于集群的网络作为一种有效的解决方案被引入,它提供了覆盖扩展和节能。如果设备可以在连接到基础设施的两个或多个簇头之间进行选择,则可以进一步提高这些网络的能源效率和性能。在本文中,我们提出了一种新的簇头(CH)选择算法,其中节点可以根据相应的信号强度在不同的簇头(CH)之间切换,以保持预定义的服务质量约束。我们表明,网络可靠性显著提高,特别是在考虑移动场景时,由于阴影,连接到CH可能不可行。此外,CHs配备了多个天线以增强性能。从理论上研究了该方案在相关Nakagami-m多径衰落信道上的性能。通过考虑Gamma分布阴影效应,得到了重要统计指标的简便表达式。理论分析附有具有代表性的性能评价结果,并辅以等效的计算机模拟结果,验证了所提分析的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing the efficiency of cluster-based networks through MISO techniques
Towards the realization of the Internet of Things (IoT), cellular networks are expected to play a fundamental role, providing the ubiquitous coverage and global internetworking. However, due to the physical limitations, namely energy consumption or hardware complexity, of many of these objects, the direct communication with the cellular infrastructure is hindered. In this sense, cluster-based networks have been introduced as an efficient solution, offering coverage extension and energy savings. The energy efficiency and performance of these networks can be further enhanced if the devices can choose between two or more cluster-heads towards their connection to the infrastructure. In this paper, we propose a novel cluster-head (CH) selection algorithm, where the nodes can switch between different CHs, according to the corresponding signal strength, in order to maintain a predefined quality of service constraint. We show that the network reliability significantly increases, especially when considering mobile scenarios, where the connection to a CH may be not feasible, due to shadowing. In addition, the CHs are equipped with multiple antennas for enhanced performance. The performance of this scheme is theoretically investigated over correlated Nakagami-m multipath fading channels, subject also to shadowing. By considering Gamma distributed shadow effects, convenient expressions for important statistical metrics are obtained. The theoretical analysis is accompanied by representative performance evaluation results, complemented by equivalent computer simulated ones, which validate the accuracy of the proposed analysis.
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