{"title":"Blockchain Authentication for AODV Routing Protocol","authors":"Alend Jarjis, G. Kadir","doi":"10.1109/BCCA50787.2020.9274452","DOIUrl":null,"url":null,"abstract":"recently, wireless ad-hoc networks have become a significant component in the digital revolution and smart cities. The heterogeneity and high-mobility in smart city systems have arisen the need for the mobile ad-hoc network (MANET). Ad hoc On-Demand Distance Vector (AODV) emerges as an efficient routing protocol in MANET is based on the less overhead by reducing message exchange with limited information. However, this creates a weakness as nodes have limited knowledge about other nodes’ identity inside the path beyond the neighboring node (node in transmission range). That prevents the participant from authenticating others and has limited capability to check the integrity of the exchanged information. To accomplish this, it requires a further exchange of messages that defeat the AODV main principle and causes extra overhead that drains the portable devices’ limited battery energy inside the network. This paper used the blockchain concept to generate a hashed identifier from the node’s IP and passed between nodes inside the path during the route discovery that provides assurance about the identity of the node and keeps the integrity of the exchanged information. Additionally, Simulation results using (Riverbed/Opnet) of the attack scenario show that the proposed algorithm prevents impersonation and black-hole attacks by eliminating the path that involves malicious nodes with a (4 millisecond) increase in route discovery time.","PeriodicalId":218474,"journal":{"name":"2020 Second International Conference on Blockchain Computing and Applications (BCCA)","volume":"15 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2020-11-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2020 Second International Conference on Blockchain Computing and Applications (BCCA)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/BCCA50787.2020.9274452","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3
Abstract
recently, wireless ad-hoc networks have become a significant component in the digital revolution and smart cities. The heterogeneity and high-mobility in smart city systems have arisen the need for the mobile ad-hoc network (MANET). Ad hoc On-Demand Distance Vector (AODV) emerges as an efficient routing protocol in MANET is based on the less overhead by reducing message exchange with limited information. However, this creates a weakness as nodes have limited knowledge about other nodes’ identity inside the path beyond the neighboring node (node in transmission range). That prevents the participant from authenticating others and has limited capability to check the integrity of the exchanged information. To accomplish this, it requires a further exchange of messages that defeat the AODV main principle and causes extra overhead that drains the portable devices’ limited battery energy inside the network. This paper used the blockchain concept to generate a hashed identifier from the node’s IP and passed between nodes inside the path during the route discovery that provides assurance about the identity of the node and keeps the integrity of the exchanged information. Additionally, Simulation results using (Riverbed/Opnet) of the attack scenario show that the proposed algorithm prevents impersonation and black-hole attacks by eliminating the path that involves malicious nodes with a (4 millisecond) increase in route discovery time.
近年来,无线自组织网络已成为数字革命和智慧城市的重要组成部分。智慧城市系统的异构性和高移动性使得人们对移动自组网(MANET)产生了需求。自组织按需距离矢量(Ad hoc on - demand Distance Vector, AODV)是一种高效的无线局域网路由协议,它通过减少有限信息下的消息交换来减少开销。然而,这产生了一个弱点,因为节点对相邻节点(传输范围内的节点)之外的路径内其他节点的身份的了解有限。这阻止了参与者对其他人进行身份验证,并且限制了检查交换信息完整性的能力。为了实现这一点,它需要进一步的消息交换,这破坏了AODV主原理,并导致额外的开销,耗尽了网络中便携式设备有限的电池能量。本文使用区块链概念从节点的IP生成一个散列标识符,并在路由发现过程中在路径内的节点之间传递,以保证节点的身份并保持交换信息的完整性。此外,使用(Riverbed/Opnet)的攻击场景仿真结果表明,该算法通过消除涉及恶意节点的路径来防止模拟和黑洞攻击,路由发现时间增加(4毫秒)。