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Review of Source Location Security Protection using Trust Authentication Schema

机译:使用信任身份验证架构审查源位置安全保护

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Wireless Sensor Networks promises the wireless network tools that does not require any stable infrastructure. Routing is the most important effect of network operation for the extended data rates within the network. Route discovery and route search sent the required packets from the target node source. However, good data transmission is also a threatening task in networks that provide efficient and energy-efficient routing. Various research activities focus on the topology control, source location privacy optimization and effective routing improvement in WSN. Wherein the existing security solutions both routing protocols and source location solutions disrupt the self-organizing nature of wireless sensor networks. Therefore, large overhead signatures are displayed and digitally verified by the requesting node. The cloud-based and routing based schemes have provided efficient security but there are a lot of obstacles for source data and travel path information security in the WSN network. This study is dedicated to calculate the desired number of deployments for sensor nodes in a given area once the selected metric achieves a certain level of coverage, while maintaining wireless connectivity in the network. A trusted node authentication scheme in wireless sensor network reduces the communication between nodes in a secure data transmission network, where shared cryptography is established all adjacent to the sensor node. Route discovery and retransmission increases the network overhead and increases the average end-to-end delay of the network in the conventional systems. This results in higher time complexity, communication overhead and less security of constrained sensor network resources.
机译:无线传感器网络承诺不需要任何稳定基础设施的无线网络工具。对于网络中扩展的数据速率,路由是网络运行的最重要影响。路由发现和路由搜索从目标节点源发送了所需的数据包。但是,良好的数据传输在提供高效,节能路由的网络中也是一项威胁性的任务。各种研究活动集中在WSN中的拓扑控制,源位置隐私优化和有效路由改进。现有的安全解决方案中,路由协议和源定位解决方案都破坏了无线传感器网络的自组织性质。因此,大的开销签名被显示并由请求节点进行数字验证。基于云和基于路由的方案提供了有效的安全性,但是WSN网络中的源数据和行进路径信息安全性存在很多障碍。这项研究致力于在选定的指标达到一定覆盖范围后,为给定区域中的传感器节点计算所需的部署数量,同时保持网络中的无线连接。无线传感器网络中的受信任节点身份验证方案减少了安全数据传输网络中节点之间的通信,在安全数据传输网络中,所有与传感器节点相邻的地方都建立了共享密码。路由发现和重传增加了网络开销,并增加了常规系统中网络的平均端到端延迟。这导致较高的时间复杂度,通信开销以及受约束的传感器网络资源的较少安全性。

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