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Header Compression and Neighbor Discovery in 6LoWPAN based IoT - a survey

机译:基于6LoWPAN的IoT中的报头压缩和邻居发现-调查

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摘要

The Internet of Things (IoT) is the next generation technology which is expected to bring a major revolution in the art of creating smarter environments. In order to uniquely identify each device in smart environment, a new protocol using IPv6 over Low-power Wireless Personal Area Network (6LoWPAN) has been developed which supports management of sleep cycles of device for power management. However issues in a LoWPAN networks include bountiful utilization of bandwidth due to over dissemination of packets during Neighbor Discovery (ND) and headers with larger size lead to prodigal power consumption leading to short network life. This paper is a survey on state-of-art of ND techniques like ND++, Context Aware Resource Discovery (CARD) & HC techniques like Generic Header Compression, compressed DTLS in 6LoWPAN. The outcomes of the survey show that there is a prospect of optimization in ND and HC, with a clear aim to enhance the efficiency of 6LoWPAN for the low power and low processing capabilities of IoT devices.
机译:物联网(IoT)是下一代技术,有望在创建更智能环境的技术上带来一场重大革命。为了在智能环境中唯一地标识每个设备,已经开发了使用低功耗无线个人局域网(6LoWPAN)上的IPv6的新协议,该协议支持对设备的睡眠周期进行管理以进行电源管理。但是,LoWPAN网络中的问题包括由于在邻居发现(ND)期间过度分发数据包而导致带宽利用率过高,而具有较大尺寸的标头会导致巨大的功耗,从而缩短网络寿命。本文是对ND技术(如ND ++),上下文感知资源发现(CARD)和HC技术(如通用报头压缩,6LoWPAN中的压缩DTLS)的最新研究。调查结果表明,ND和HC有优化的前景,其明确目标是为物联网设备的低功耗和低处理能力提高6LoWPAN的效率。

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