An energy efficient prediction based protocol for target tracking in wireless sensor networks

IF 4.4 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS Ad Hoc Networks Pub Date : 2024-10-20 DOI:10.1016/j.adhoc.2024.103688
Nadia Khiadani , Faramarz Hendessi
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Abstract

Target tracking is one of the most attractive applications of wireless sensor networks, used for estimating the moving target's position accurately. A primary challenge in this domain is achieving precise target path estimation while conserving energy resources. This paper introduces an energy-efficient target tracking protocol in wireless sensor networks, considering both accuracy and reduced energy consumption. The protocol uses the Kalman filter to estimate the target's position and predict the subsequent step of its path. In each step of target tracking, a selected sensor, named the ‘leader’ performs computations for position estimation and path prediction, while two other sensors, known as ‘assistants’ help the leader in the tracking process. Leader selection within the protocol is performed in two phases: an initial phase occurring upon the target's entry to the network and a subsequent phase named the forced handoff phase. The forced handoff phase performs the selection of a new leader when either the target exits the sensing range of the current leader or the leader's energy decreases significantly. Although the proposed protocol is a new work, it can be considered as an improvement of the PPCP protocol by adding several changes and also replacing the binary variational filter with the Kalman filter. The efficiency of the proposed protocol is evaluated through simulations in Matlab. Results demonstrate the protocol's ability to achieve high-precision target tracking while maintaining low energy consumption. Comparative analysis shows its energy efficiency, which significantly increases the network lifetime.
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基于能效预测的无线传感器网络目标跟踪协议
目标跟踪是无线传感器网络最具吸引力的应用之一,用于准确估计移动目标的位置。这一领域的主要挑战是在节约能源资源的同时实现精确的目标路径估计。本文介绍了无线传感器网络中的一种节能目标跟踪协议,同时考虑了精确度和降低能耗。该协议使用卡尔曼滤波器来估计目标位置,并预测其路径的后续步骤。在目标跟踪的每一步中,一个被称为 "领导者 "的选定传感器执行位置估计和路径预测计算,而另外两个被称为 "助手 "的传感器则在跟踪过程中帮助领导者。协议中的 "领导者 "选择分两个阶段进行:初始阶段发生在目标进入网络时,随后的阶段称为 "强制交接 "阶段。当目标退出当前领导者的感应范围或领导者的能量显著下降时,强制切换阶段就会选择新的领导者。虽然所提出的协议是一项新的工作,但它可以被视为 PPCP 协议的改进版,增加了一些变化,还用卡尔曼滤波器取代了二元变分滤波器。通过在 Matlab 中进行仿真,对所提协议的效率进行了评估。结果表明,该协议既能实现高精度目标跟踪,又能保持低能耗。对比分析表明,该协议的能效显著提高了网络寿命。
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来源期刊
Ad Hoc Networks
Ad Hoc Networks 工程技术-电信学
CiteScore
10.20
自引率
4.20%
发文量
131
审稿时长
4.8 months
期刊介绍: The Ad Hoc Networks is an international and archival journal providing a publication vehicle for complete coverage of all topics of interest to those involved in ad hoc and sensor networking areas. The Ad Hoc Networks considers original, high quality and unpublished contributions addressing all aspects of ad hoc and sensor networks. Specific areas of interest include, but are not limited to: Mobile and Wireless Ad Hoc Networks Sensor Networks Wireless Local and Personal Area Networks Home Networks Ad Hoc Networks of Autonomous Intelligent Systems Novel Architectures for Ad Hoc and Sensor Networks Self-organizing Network Architectures and Protocols Transport Layer Protocols Routing protocols (unicast, multicast, geocast, etc.) Media Access Control Techniques Error Control Schemes Power-Aware, Low-Power and Energy-Efficient Designs Synchronization and Scheduling Issues Mobility Management Mobility-Tolerant Communication Protocols Location Tracking and Location-based Services Resource and Information Management Security and Fault-Tolerance Issues Hardware and Software Platforms, Systems, and Testbeds Experimental and Prototype Results Quality-of-Service Issues Cross-Layer Interactions Scalability Issues Performance Analysis and Simulation of Protocols.
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