首页> 外文期刊>Wireless communications & mobile computing >Towards a classification of energy aware MAC protocols for wireless sensor networks
【24h】

Towards a classification of energy aware MAC protocols for wireless sensor networks

机译:迈向无线传感器网络的节能型MAC协议分类

获取原文
获取原文并翻译 | 示例
           

摘要

Power management is an important issue in wireless sensor networks (WSNs) because wireless sensor nodes are usually battery powered, and an efficient use of the available battery power becomes an important concern specially for those applications where the system is expected to operate for long durations. This necessity for energy efficient operation of a WSN has prompted the development of new protocols in all layers of the communication stack. Provided that, the radio transceiver is the most power consuming component of a typical sensor node, large gains can be achieved at the link layer where the medium access control (MAC) protocol controls the usage of the radio transceiver unit. MAC protocols for sensor networks differ greatly from typical wireless networks access protocols in many issues. MAC protocols for sensor networks must have built-in power conservation, mobility management, and failure recovery strategies. Furthermore, sensor MAC protocols should make performance trade-off between latency and throughput for a reduction in energy consumption to maximize the lifetime of the network. This is in general achieved through duty cycling the radio transceiver. Many MAC protocols with different objectives were proposed for wireless sensor networks in the literature. Most of these protocols take into account the energy efficiency as a main objective. There is much more innovative work should be done at the MAC layer to address the hard unsolved problems. In this paper, we first outline and discuss the specific requirements and design trade-offs of a typical wireless sensor MAC protocol by describing the properties of WSN that affect the design of MAC layer protocols. Then, a typical collection of wireless sensor MAC protocols presented in the literature are surveyed, classified, and described emphasizing their advantages and disadvantages whenever possible. Finally, we present research directions and identify open issues for future medium access research.
机译:电源管理是无线传感器网络(WSN)中的重要问题,因为无线传感器节点通常由电池供电,而有效利用可用电池电源已成为重要的关注点,特别是对于那些希望系统长时间运行的应用而言。 WSN的节能运行的这种必要性已促使在通信堆栈的所有层中开发新协议。假设无线电收发器是典型传感器节点中最耗电的组件,则可以在介质访问控制(MAC)协议控制无线电收发器单元使用的链路层上获得较大的收益。传感器网络的MAC协议在许多问题上与典型的无线网络访问协议有很大不同。用于传感器网络的MAC协议必须具有内置的节能,移动性管理和故障恢复策略。此外,传感器MAC协议应在等待时间和吞吐量之间进行性能折衷,以减少能耗,从而最大限度地延长网络的使用寿命。通常,这是通过使无线电收发器循环工作来实现的。文献中针对无线传感器网络提出了许多具有不同目标的MAC协议。这些协议大多数都将能源效率作为主要目标。在MAC层上,还有更多的创新工作要做,以解决尚未解决的难题。在本文中,我们首先通过描述影响MAC层协议设计的WSN属性,概述并讨论典型无线传感器MAC协议的特定要求和设计折衷。然后,对文献中介绍的无线传感器MAC协议的典型集合进行了调查,分类和描述,并在可能时强调其优势和劣势。最后,我们提出研究方向,并为未来的媒体访问研究确定未解决的问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号