首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Energy-Efficient Boarder Node Medium Access Control Protocol for Wireless Sensor Networks
【2h】

Energy-Efficient Boarder Node Medium Access Control Protocol for Wireless Sensor Networks

机译:无线传感器网络的节能登机节点介质访问控制协议

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

This paper introduces the design, implementation, and performance analysis of the scalable and mobility-aware hybrid protocol named boarder node medium access control (BN-MAC) for wireless sensor networks (WSNs), which leverages the characteristics of scheduled and contention-based MAC protocols. Like contention-based MAC protocols, BN-MAC achieves high channel utilization, network adaptability under heavy traffic and mobility, and low latency and overhead. Like schedule-based MAC protocols, BN-MAC reduces idle listening time, emissions, and collision handling at low cost at one-hop neighbor nodes and achieves high channel utilization under heavy network loads. BN-MAC is particularly designed for region-wise WSNs. Each region is controlled by a boarder node (BN), which is of paramount importance. The BN coordinates with the remaining nodes within and beyond the region. Unlike other hybrid MAC protocols, BN-MAC incorporates three promising models that further reduce the energy consumption, idle listening time, overhearing, and congestion to improve the throughput and reduce the latency. One of the models used with BN-MAC is automatic active and sleep (AAS), which reduces the ideal listening time. When nodes finish their monitoring process, AAS lets them automatically go into the sleep state to avoid the idle listening state. Another model used in BN-MAC is the intelligent decision-making (IDM) model, which helps the nodes sense the nature of the environment. Based on the nature of the environment, the nodes decide whether to use the active or passive mode. This decision power of the nodes further reduces energy consumption because the nodes turn off the radio of the transceiver in the passive mode. The third model is the least-distance smart neighboring search (LDSNS), which determines the shortest efficient path to the one-hop neighbor and also provides cross-layering support to handle the mobility of the nodes. The BN-MAC also incorporates a semi-synchronous feature with a low duty cycle, which is advantageous for reducing the latency and energy consumption for several WSN application areas to improve the throughput. BN-MAC uses a unique window slot size to enhance the contention resolution issue for improved throughput. BN-MAC also prefers to communicate within a one-hop destination using Anycast, which maintains load balancing to maintain network reliability. BN-MAC is introduced with the goal of supporting four major application areas: monitoring and behavioral areas, controlling natural disasters, human-centric applications, and tracking mobility and static home automation devices from remote places. These application areas require a congestion-free mobility-supported MAC protocol to guarantee reliable data delivery. BN-MAC was evaluated using network simulator-2 (ns2) and compared with other hybrid MAC protocols, such as Zebra medium access control (Z-MAC), advertisement-based MAC (A-MAC), Speck-MAC, adaptive duty cycle SMAC (ADC-SMAC), and low-power real-time medium access control (LPR-MAC). The simulation results indicate that BN-MAC is a robust and energy-efficient protocol that outperforms other hybrid MAC protocols in the context of quality of service (QoS) parameters, such as energy consumption, latency, throughput, channel access time, successful delivery rate, coverage efficiency, and average duty cycle.
机译:本文介绍了用于无线传感器网络(WSN)的可扩展且具有移动意识的混合协议,称为边界节点媒体访问控制(BN-MAC)的设计,实现和性能分析,该协议利用了调度的和基于竞争的MAC的特性协议。像基于竞争的MAC协议一样,BN-MAC在高流量和高移动性下实现了高信道利用率,网络适应性以及低延迟和开销。像基于调度的MAC协议一样,BN-MAC以一跳的邻居节点成本较低地减少了空闲侦听时间,发射和冲突处理,并在繁重的网络负载下实现了较高的信道利用率。 BN-MAC专为区域性WSN设计。每个区域都由边界节点(BN)控制,这一点至关重要。 BN与区域内外的其余节点进行协调。与其他混合MAC协议不同,BN-MAC合并了三个有前途的模型,这些模型进一步降低了能耗,空闲监听时间,偷听和拥塞,从而提高了吞吐量并减少了延迟。与BN-MAC一起使用的模型之一是自动主动和睡眠(AAS),可减少理想的聆听时间。节点完成监视过程后,AAS允许它们自动进入睡眠状态以避免空闲的监听状态。 BN-MAC中使用的另一个模型是智能决策(IDM)模型,它可以帮助节点感知环境的本质。根据环境的性质,节点决定使用主动还是被动模式。节点的这种决策能力进一步降低了能耗,因为节点在被动模式下关闭了收发器的无线电。第三种模型是距离最小的智能邻居搜索(LDSNS),它确定到单跳邻居的最短有效路径,并且还提供跨层支持以处理节点的移动性。 BN-MAC还集成了具有低占空比的半同步功能,对于减少多个WSN应用领域的等待时间和能耗以提高吞吐量非常有利。 BN-MAC使用唯一的窗口时隙大小来增强争用解决问题,从而提高吞吐量。 BN-MAC还更喜欢使用Anycast在单跳目标中进行通信,该方法可保持负载平衡以保持网络可靠性。引入BN-MAC的目的是支持四个主要应用领域:监视和行为领域,控制自然灾害,以人为中心的应用以及从远程位置跟踪移动性和静态家庭自动化设备。这些应用领域需要无拥塞移动性支持的MAC协议,以确保可靠的数据传输。 BN-MAC使用网络模拟器2(ns2)进行了评估,并与其他混合MAC协议进行了比较,例如Zebra媒体访问控制(Z-MAC),基于广告的MAC(A-MAC),Speck-MAC,自适应占空比SMAC(ADC-SMAC)和低功耗实时媒体访问控制(LPR-MAC)。仿真结果表明,BN-MAC是一种健壮且节能的协议,在服务质量(QoS)参数(例如能耗,等待时间,吞吐量,信道访问时间,成功传送率)的背景下,其性能优于其他混合MAC协议。 ,覆盖效率和平均占空比。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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