基于距离的水声传感器网络可靠节能路由协议

M. Tariq, M. Latif, M. Ayaz, Yahaya Coulibaly, Nadera Al-Areqi
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引用次数: 17

摘要

水声传感器网络(UW-ASN)的显著特征,如高传播延迟、非对称信道、高错误率和有限带宽,由于使用声学介质作为通信方法,导致了重大问题。因此,设计一种高效的水下协议,既能有效利用现有电池资源,又能在不可靠的声环境下提供可靠性,是一项具有挑战性的任务。因此,在本文中,我们提出了一种基于距离的可靠节能路由协议(ree)。该路由协议的贡献是双重的:1)DREE实际上考虑了物理距离,不像类似的协议R- erp 2r,物理距离没有被利用;2)DREE利用了基于模糊逻辑的链路质量估计器(F-LQE),这在水下网络中尚未进行过测试。此外,DREE不仅通过提供能量平衡,而且通过减少成功传递数据包所需的传输次数,延长了网络的生命周期。在NS2模拟器上进行的实验证明,与文献中唯一基于距离的可靠协议R- erp 2r和众所周知的基于深度的路由协议DBR相比,DREE有助于改善结果
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Distance based Reliable and Energy Efficient (DREE) Routing Protocol for Underwater Acoustic Sensor Networks
The distinctive features of Underwater Acoustic Sensor Networks (UW-ASN) such as high propagation delay, asymmetric channels, high errors rates and limited bandwidth cause significant issues due to the use of acoustic medium as a method of communication. Therefore, designing an efficient underwater protocol that make efficient use of available battery resources and provides reliability in unreliable acoustic environment is a challenging task. In this paper, we therefore present a distance based reliable and energy efficient routing protocol (DREE). The contribution in this routing protocol is twofold 1) DREE actually takes in to account physical distance unlike similar protocol R-ERP 2 R where physical distance has not been utilized 2) DREE utilizes Fuzzy logic based link Quality Estimator (F-LQE) which has not been put on the test before in underwater networks. Moreover, DREE extends network lifetime not only by providing energy balancing but by reducing number of transmissions required to deliver a packet successfully. Experiments performed in NS2 simulator prove that DREE contributes to improve results in comparison with R-ERP 2 R which is the similar and only distance based reliable protocol present in literature and well known depth based routing protocol DBR
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