{"title":"Congestion control routing protocol using priority Control for ad-hoc networks in an emergency","authors":"Yuichiro Koga, C. Sugimoto, R. Kohno","doi":"10.1109/ITST.2012.6425220","DOIUrl":null,"url":null,"abstract":"The ad-hoc network is paid to attention aiming at the achievement of the ubiquitous society. In ad-hoc network, multi-hop communication is used and source node constructs routes to destination. Applications of ad-hoc network are inter-vehicle communication and sensor network and so on. Among them, wireless sensor network is attractive in an emergency such as disasters. In this application, one of the problems is congestion for increasing of traffic of the urgent and medical data packets on wireless communication routes. It is a problem to be solved to guarantee quality of service in ad-hoc network in an emergency. In this paper, we pay attention to congestion and propose the protocol to improve transmission delay for ad-hoc network in an emergency. The main routes (the shortest routes) are constructed by using a proactive routing protocol, OLSR (Optimized Link State Routing)[1], in this paper because of this premise, the network topology is no change and heavy traffic. And, the alternative routes are constructed by using a reactive routing protocol, AODV (Ad hoc On-demand Distance Vector)[2], when a node receive a control packet of congestion acknowledge from congestion node. Therefore, it is avoided to overlap of main routes and reduce delay and packet loss. Additionally, data packets are given priority level and the low priority packet uses the alternative route. As a result, the high priority packet such as the urgent and medical data is transmitted low delay and packet loss. We evaluate transmission delay by congestion to preparing conventional protocol OLSR.","PeriodicalId":143706,"journal":{"name":"2012 12th International Conference on ITS Telecommunications","volume":"30 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2012-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2012 12th International Conference on ITS Telecommunications","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ITST.2012.6425220","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
The ad-hoc network is paid to attention aiming at the achievement of the ubiquitous society. In ad-hoc network, multi-hop communication is used and source node constructs routes to destination. Applications of ad-hoc network are inter-vehicle communication and sensor network and so on. Among them, wireless sensor network is attractive in an emergency such as disasters. In this application, one of the problems is congestion for increasing of traffic of the urgent and medical data packets on wireless communication routes. It is a problem to be solved to guarantee quality of service in ad-hoc network in an emergency. In this paper, we pay attention to congestion and propose the protocol to improve transmission delay for ad-hoc network in an emergency. The main routes (the shortest routes) are constructed by using a proactive routing protocol, OLSR (Optimized Link State Routing)[1], in this paper because of this premise, the network topology is no change and heavy traffic. And, the alternative routes are constructed by using a reactive routing protocol, AODV (Ad hoc On-demand Distance Vector)[2], when a node receive a control packet of congestion acknowledge from congestion node. Therefore, it is avoided to overlap of main routes and reduce delay and packet loss. Additionally, data packets are given priority level and the low priority packet uses the alternative route. As a result, the high priority packet such as the urgent and medical data is transmitted low delay and packet loss. We evaluate transmission delay by congestion to preparing conventional protocol OLSR.
为了实现泛在社会的目标,自组织网络受到了人们的关注。在ad-hoc网络中,采用多跳通信,源节点建立到目的节点的路由。自组网的应用有车际通信、传感器网络等。其中,无线传感器网络在灾害等突发事件中具有很大的吸引力。在此应用中,由于紧急和医疗数据分组在无线通信路由上的流量不断增加,造成了拥塞问题。在紧急情况下,如何保证自组网的服务质量是一个亟待解决的问题。本文从拥塞问题出发,提出了一种改进紧急情况下ad-hoc网络传输延迟的协议。主路由(最短的路由)采用主动路由协议OLSR (Optimized Link State routing)[1]构建,本文正是因为这样的前提下,网络拓扑结构没有变化且流量大。当节点接收到来自拥塞节点的拥塞确认控制包时,使用响应路由协议AODV (Ad hoc On-demand Distance Vector)[2]构建备选路由。这样可以避免主路由重叠,减少时延和丢包。此外,数据包被赋予优先级,低优先级的数据包使用备用路由。因此,高优先级的数据包,如紧急和医疗数据传输的低延迟和丢包。我们通过拥塞来评估传输延迟,以准备传统协议的OLSR。