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A Trust-Based Secure Routing Scheme Using the Traceback Approach for Energy-Harvesting Wireless Sensor Networks

机译:基于追溯的基于信任的安全路由方案用于能量收集无线传感器网络

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摘要

The Internet of things (IoT) is composed of billions of sensing devices that are subject to threats stemming from increasing reliance on communications technologies. A Trust-Based Secure Routing (TBSR) scheme using the traceback approach is proposed to improve the security of data routing and maximize the use of available energy in Energy-Harvesting Wireless Sensor Networks (EHWSNs). The main contributions of a TBSR are (a) the source nodes send data and notification to sinks through disjoint paths, separately; in such a mechanism, the data and notification can be verified independently to ensure their security. (b) Furthermore, the data and notification adopt a dynamic probability of marking and logging approach during the routing. Therefore, when attacked, the network will adopt the traceback approach to locate and clear malicious nodes to ensure security. The probability of marking is determined based on the level of battery remaining; when nodes harvest more energy, the probability of marking is higher, which can improve network security. Because if the probability of marking is higher, the number of marked nodes on the data packet routing path will be more, and the sink will be more likely to trace back the data packet routing path and find malicious nodes according to this notification. When data packets are routed again, they tend to bypass these malicious nodes, which make the success rate of routing higher and lead to improved network security. When the battery level is low, the probability of marking will be decreased, which is able to save energy. For logging, when the battery level is high, the network adopts a larger probability of marking and smaller probability of logging to transmit notification to the sink, which can reserve enough storage space to meet the storage demand for the period of the battery on low level; when the battery level is low, increasing the probability of logging can reduce energy consumption. After the level of battery remaining is high enough, nodes then send the notification which was logged before to the sink. Compared with past solutions, our results indicate that the performance of the TBSR scheme has been improved comprehensively; it can effectively increase the quantity of notification received by the sink by 20%, increase energy efficiency by 11%, reduce the maximum storage capacity needed by nodes by 33.3% and improve the success rate of routing by approximately 16.30%.
机译:物联网(IoT)由数十亿个传感设备组成,这些传感设备会受到对通信技术日益依赖的威胁。提出了一种使用追溯方法的基于信任的安全路由(TBSR)方案,以提高数据路由的安全性并最大程度地利用能量收集无线传感器网络(EHWSN)中的可用能量。 TBSR的主要贡献是:(a)源节点分别通过不相交的路径将数据和通知发送到接收器;通过这种机制,可以独立验证数据和通知以确保其安全性。 (b)此外,在路由过程中,数据和通知采用动态的标记和日志记录方法概率。因此,在遭受攻击时,网络将采用追溯方法来定位和清除恶意节点,以确保安全。标记的可能性取决于剩余电池电量;当节点收集更多能量时,标记的可能性更高,可以提高网络安全性。因为如果标记的可能性更高,则数据包路由路径上的标记节点数将更多,并且接收器将更有可能追溯此数据包路由路径并根据此通知查找恶意节点。再次对数据包进行路由时,它们倾向于绕过这些恶意节点,这使路由的成功率更高,并提高了网络安全性。当电池电量低时,打标的可能性会降低,从而可以节省能源。对于日志记录,当电池电量较高时,网络采用较大的标记概率和较小的日志记录概率将通知传输到接收器,这可以保留足够的存储空间,以满足电池电量不足时的存储需求。 ;当电池电量低时,增加记录的可能性可以降低能耗。剩余电池电量足够高之后,节点将之前记录的通知发送到接收器。与以往的解决方案相比,我们的结果表明TBSR计划的性能得到了全面提高。它可以有效地将接收器收到的通知数量增加20%,将能源效率提高11%,将节点所需的最大存储容量减少33.3%,并将路由成功率提高大约16.30%。

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