无线传感器网络节能qos感知MAC协议研究进展

Bashir A. Muzakkari, M. A. Mohamed, M. F. A. Kadir, Zarina Mohamad, N. Jamil
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引用次数: 20

摘要

无线传感器网络(wsn)是由几个微小的、低成本的传感器节点组成的一种分布,它们通过无线方式连接在一起,用于监测物理或环境条件。由于对WSN的广泛关注,在处理器、操作系统、无线电和电池等传感器元件方面取得了快速的技术突破。从七层方法的角度来看,介质访问控制(MAC)协议被确定为最关键的元素,负责协调传感器节点之间的通信。此外,WSN MAC协议的功能对电池消耗、数据包碰撞、网络寿命和延迟等参数也有微妙的影响。本文综述了近年来基于争议的无线传感器网络协议、基于调度的无线传感器网络协议和混合MAC协议,重点介绍了它们的基本原理、各种优点和局限性以及它们的应用。以节能为基准,进一步研究这些特定协议中针对服务质量(QoS)性能指标的处理方法。结果表明,大多数协议倾向于节能,其他参数要么部分支持,要么折衷。延迟、吞吐量、带宽利用率、通道利用率在大多数协议的设计中都没有考虑到。事实上,随着能源收集技术等其他节能模式的出现,能源领域已经取得了重大突破。然而,QoS指标下的其他参数,如延迟、吞吐量、丢包、网络和带宽可用性,在wsn MAC协议的未来发展中也起着关键作用。
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Recent advances in energy efficient-QoS aware MAC protocols for wireless sensor network
Wireless sensor networks (WSNs) is a distribution of several tiny, low-cost sensor nodes, wirelessly connected altogether for the purpose of monitoring physical or environmental conditions. Due to the vast interest for WSN, a rapid technological breakthrough has been observed in sensor elements such as processor, operating system, radio, and battery. From the perspective of seven layer approach, the medium access control (MAC) protocols are identified as the most crucial element, being responsible for coordinating communication amongst the sensor nodes. In addition, the functionality of the WSN MAC protocol has a subtle influence on parameters such as battery consumption, packet collision, network lifetime and latency. In this paper, we survey some of the most recent WSN contention-based, scheduling-based, and hybrid MAC protocols by focusing on their underlying principle, various advantages and limitations and their applications. Treating energy saving as the benchmark, further examining the directed towards the treatment of quality of service (QoS) performance metrics within these particular protocols. The result shows that the majority of the protocols leaned towards energy conservation with other parameters are either supported partially or traded off. Latency, throughput, bandwidth utilization, channel utilization is not considered in the design of most of the protocols. Indeed, the energy domain has gotten a vital breakthrough with the advent of other modes of energy saving such as energy harvesting techniques. However, other parameters such as latency, throughput, packet loss, network and bandwidth availability that comes under QoS metrics also play a critical role in future development of MAC protocols for WSNs.
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