计算机与现代化 ›› 2021, Vol. 0 ›› Issue (03): 35-40.

• 信息安全 • 上一篇    下一篇

基于NS3的水下LEER协议优化与分析

  

  1. (1.青海师范大学计算机学院,青海西宁810008;2.青海省物联网重点实验室,青海西宁810008)
  • 出版日期:2020-03-30 发布日期:2021-03-24
  • 作者简介:马媛(1995—),女(回),青海西宁人,硕士研究生,研究方向:无线网络,E-mail: 2290294750@qq.com; 通信作者:杜秀娟(1970—),女,教授,博士,研究方向:无线网络与安全,水下传感器网络,E-mail: 124111397@qq.com。
  • 基金资助:
    国家自然科学基金资助项目(61962052,61902273); 青海省自然科学创新团队基金资助项目(2020-ZJ-903); 青海省物联网重点实验室基金资助项目(2020-ZJ-Y16); 河北省物联网监测中心基金资助项目(3142016020); 教育部“春晖计划”基金资助项目

Optimization and Analysis of Underwater LEER Protocol Based on NS3

  1. (1. School of Computer Science, Qinghai Normal University, Xining 810008, China; 
     2. Key Laboratory of IoT of Qinghai Province, Xining 810008, China)
  • Online:2020-03-30 Published:2021-03-24

摘要: 水下无线传感器网络作为无线传感器网络在水下的应用扩展,成为当今研究的热点。在水下通信中能量补给困难、能量均衡性差、网络生存周期短的问题依然没有得到解决。为了提高水下无线传感器网络数据交付率,延长网络生存期,设计一种适用于水下拓扑动态变化、能量均衡性高的路由协议极为重要。基于层级节能的路由(LEER)协议有效解决了路由空旷问题。优化后的LEER协议采用多sink的拓扑,从单跳延迟、剩余能量、节点密度以及水下节点发生移动层级随之更新的角度,提出基于NS3的水下LEER协议能量均衡优化策略。仿真结果表明,优化后的LEER协议在能量均衡性、数据交付率和适应动态拓扑等方面均优于LEER协议。

关键词: 水下无线传感器网络, LEER协议, 动态拓扑, 能量均衡性

Abstract: Underwater wireless sensor network, as the application extension of wireless sensor network in underwater, has become a hot research topic. The problems of difficult energy replenishment, poor energy balance and short network lifetime in the underwater communications have not been solved. In order to improve the data delivery rate and prolong the lifetime of underwater wireless sensor network, it is very important to design a routing protocol suitable for dynamic changes of underwater topology and high energy balance. The Layer-based and Energy-Efficient Routing (LEER) protocol effectively solves the problem of routing packets to a void area. The optimized LEER Protocol adopts multi-sink topology. From the aspects of single-hop delay, residual energy, node density, and subsequent updating of the level of underwater nodes when they move, the energy balance optimization strategy of the underwater LEER protocol based on NS3 is proposed. Simulation results show that the optimized LEER protocol is superior to the LEER protocol in terms of energy balance, data delivery rate and adaptive dynamic topology. 

Key words: underwater wireless sensor network, LEER protocol, dynamic topology, energy balance