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Performance Comparison between Delay-Tolerant and Non-Delay-Tolerant Position-Based Routing Protocols in VANETs 被引量:1
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作者 Ahmed Mohamed Abdalla Salem H. Salamah 《International Journal of Communications, Network and System Sciences》 2022年第1期1-14,共14页
Vehicular ad hoc networks (VANETs) are a new emerging recently developed advanced technology that allows a wide group of applications related to providing more safety on roads, more convenience for passengers, self-dr... Vehicular ad hoc networks (VANETs) are a new emerging recently developed advanced technology that allows a wide group of applications related to providing more safety on roads, more convenience for passengers, self-driven vehicles, and intelligent transportation systems (ITS). There are various routing protocol categories used in VANETs, like unicast, multicast, and broadcast protocols. In unicast position-based protocols, the routing decisions are based on the geographic position of the vehicles. This does not require establishment or maintenance of routes but needs location services to determine the position of the destination. Non-delay-tolerant network protocols (non-DTN), also identified as minimum delay protocols, are aimed at minimizing the delivery time of the information. Delay-tolerant protocols (DTN) are used in a variety of operating environments, including those that are subject to failures and interruptions and those with high delay, such as VANETs. This paper discusses the comparison between non-DTN and DTN routing protocols belonging to the unicast delay-tolerant position-based category. The comparison was conducted using the NS2 simulator, and the simulations of three non-DTN routing protocols and three DTN routing protocols were recorded. Simulation results show that the DTN routing protocols outperform in delivery ratio compared to the non-DTN routing protocols, but they lead to more average delay due to buffering, the processing algorithm, and priority calculation. In conclusion, non-DTN protocols are more suitable for the city environment since the distance between nodes is relatively smaller and the variations in the network topology are slower than they are on highways. On the other hand, DTN protocols are more suitable for highways due to the buffering of packets until a clear route to destination is available. 展开更多
关键词 VANETS Position-Based Routing Protocols non-dtn DTN
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适用于空间DTN的非交互式密钥交换协议
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作者 杜瑞颖 周振玉 米兰.黑娜亚提 《计算机工程》 CAS CSCD 北大核心 2016年第4期137-142,共6页
针对空间时延容忍网络高延时、连接易中断等特点,提出一种非交互式的密钥交换协议,并在随机预言模型下对其进行安全性证明。该协议无需用户交互即生成一个共享的对称密钥,可消除对传统公钥基础设施中证书的依赖,减少通信与存储开销,同... 针对空间时延容忍网络高延时、连接易中断等特点,提出一种非交互式的密钥交换协议,并在随机预言模型下对其进行安全性证明。该协议无需用户交互即生成一个共享的对称密钥,可消除对传统公钥基础设施中证书的依赖,减少通信与存储开销,同时避免基于身份的公钥加密体制中存在的密钥托管问题。分析结果表明,该协议未使用耗时的双线性对运算,具有较高的计算效率,更适用于计算能力受限、能量资源宝贵的空间环境。 展开更多
关键词 时延容忍网络 非交互式密钥交换 无证书密码 可证明安全 随机预言模型
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