基于自适应优先级的无线网络物联网通信设计

R. Prabha, Senthil G. A, N. N. Saranya, A. M, K. Somasundaram, K. C
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引用次数: 7

摘要

未来的异构无线网络必须能够满足不断增长的需求,同时也要充分利用可用资源。中继物联网接触已经成为一种新的有前途的方法,可以提高覆盖范围,降低功耗,减少停电的可能性。支持节点间的合作可以显著提高多跳异构无线系统的吞吐量,从而提供最佳的物联网通信。在最近的物联网通信发展中,中继选择对网络性能有重大影响。物联网通信,特别是在基于监视的无线网络中,与传统的直接通信相比具有许多优势,中继选择被广泛认为是提高容量效率的一种智能方法。对众多依赖方法的观察促使创造了一种更好的方法,通过使用基于优先级的自适应中继选择决策来解决无线网络的不精确性。在这项工作中,在多跳终端场景下,物联网通信开发了一种在每个物联网设备中选择更好的中继的有效方法,并研究了中继选择参数的各种用户选项。结果是使用NS2(网络模拟器)进行实验,并测试了吞吐量,分组投递率(PDR)和端到端延迟性能的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Adaptive Priority Based IoT Communication in Wireless Network
Heterogeneous wireless networks of the future must be able to satisfy ever increasing demands while also making the best use of available resources. Relaying IoT contact has emerged as a novel promising approach for improving coverage, lowering power consumption, and reducing the possibility of outages. Enabling cooperation among nodes significantly increases throughput in a multi-hop heterogeneous wireless system to provide optimal IoT communication. In recent IoT communication developments, relay selection has a significant impact on network performance. IoT communication, particularly in surveillance-based wireless networks, has a number of advantages over traditional direct communication, and relay selection is widely regarded as a smart way to increase capacity efficiency. The observation of numerous relying approaches prompted the creation of a better way to solve the imprecise nature of wireless networks by using adaptive priority-based relay selection decisions. In this work, a multi-hop terminal scenario, IoT communication to develop an efficient method for selecting a better relay in each IoT device, as well as to investigate the various user options for relay selection parameters. The results is experiments using NS2 (Network simulator) and implementation of Throughput, Packet Delivery Ratio (PDR) and End-to-End Delay performance are tested.
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