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A Survey on the Evolution of Opportunistic Routing with Asynchronous Duty-Cycled MAC in Wireless Sensor Networks

机译:无线传感器网络中异步循环MAC机会路由演变的调查

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摘要

Wireless sensor networks (WSNs) have been used for environmental monitoring and reporting for many decades. Energy consumption is a significant research topic because wireless sensor nodes are battery-operated to be highly energy-constrained. Several strategies have been introduced in routing and MAC (Medium Access Control) layer protocols to facilitate energy saving. At the routing layer, an energy-efficient routing protocol, known as opportunistic routing (OR), has been designed to improve efficiency. OR achieves energy efficiency via load-balancing, which forwards packets along multiple routes over WSNs. At the MAC layer, an energy-efficient MAC protocol known as the asynchronous duty-cycled MAC (ADCM) protocol achieves energy saving by turning on and off a sensor node’s transmitter and receiver to eliminate unnecessary energy wastage. These protocols each have their own advantages and disadvantages. OR achieves energy efficiency at the routing layer but it raises an issue at the MAC layer. ADCM achieves energy efficiency at the MAC layer, but it hinders the packet forwarding efficiency of the OR. To attain better energy efficiency, a combination of these two ideas led to the development of OR with asynchronous duty-cycled MAC (OR-ADCM). However, even with better energy efficiency, limitations still exist in combining load-balancing and duty-cycling due to conflicts in the inherent properties of OR and ADCM. In this paper, we present a survey of the evolution of OR-ADCM over WSNs to help the reader better understand and appreciate the details of this tradeoff, which we hope will lead to the development of better protocol designs.
机译:无线传感器网络(WSNS)已被用于环境监测和报告数十年。能量消耗是一个重要的研究主题,因为无线传感器节点是电池供电的,以高度能量受限。路由和MAC(中型访问控制)层协议中引入了几种策略,以便于节能。在路由层,设计了一种可节能路由协议,称为机会主义路由(或),以提高效率。或通过负载平衡实现能量效率,其沿着WSN的多个路由转发数据包。在MAC层,通过打开和关闭传感器节点的发射机和接收器来消除不必要的能量浪费来实现作为异步核心MAC(ADCM)协议的节能MAC协议实现节能。这些协议各自具有自己的优缺点。或在路由层实现能量效率,但它在MAC层提出了一个问题。 ADCM在MAC层实现了能量效率,但它会阻碍或妨碍数据包转发效率。为了获得更好的能量效率,这两个思想的组合导致了异步循环MAC(或ADCM)的开发。然而,即使具有更好的能量效率,在组合负载平衡和占空比中仍存在限制,由于在and和ADCM的固有属性中发生冲突。在本文中,我们对WSN的演变进行了调查,以帮助读者更好地理解并欣赏这一权衡的细节,我们希望能够导致更好的协议设计的发展。

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