A Novel Blockchain Approach for Improve the Performance of Network Security Using Polynomial Ephemeral Blockchain-Based Secure Routing in Wireless Sensor Network

R. Bharanidharan
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引用次数: 1

Abstract

Wireless sensor networks are networks that include hundreds to thousands of autonomous distributed devices. These sensors are used to monitor physical and environmental conditions. Reliable routing protocols are designed to build a reliable and secure network with power management and control overhead and congestion. The wireless medium allows malicious user?s wireless sensor networks (WSN) to take part in actions to get a damaging attack on network control nodes. Due to the proprietary nature of such networks, they are more complex and lack tamper-resistant hardware. Security mechanisms are more wit due to the wireless and transient computing or communication complexity of communication relationships between nodes in a network. The existing method doesn?t provide security in inconvenient network performance, and the attackers modify the data and damage it. The proposed blockchain method is fixed at the same level of security, such as Polynomial Ephemeral Blockchain-based Secure Routing (PEBSR) encryption, to create a secure network. In this method, first, to authenticate the neighbor node validate using a Polynomial Ephemeral key-based Neighbor node authentication method. It evaluates the node location trust node and distributes the Ephemeral key in this key established between the nodes to communicate securely. The second method provides a cryptography chain network, and it maintains each node information in the sink database in this process if any attacker or anyone modifies the data is stored on each individual database. Finally, to find the route between each sink and participate nodes in the network. In this proposed PEBSR method, simulation results in providing efficient security, throughput, and less response time; they are compared to the existing method.
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基于多项式短暂区块链的无线传感器网络安全路由改进网络安全性能的区块链新方法
无线传感器网络是包含数百到数千个自主分布式设备的网络。这些传感器用于监测物理和环境条件。可靠的路由协议旨在构建具有电源管理和控制开销和拥塞的可靠和安全的网络。无线媒体允许恶意用户使用吗?无线传感器网络(WSN)参与行动,得到对网络控制节点的破坏性攻击。由于此类网络的专有性质,它们更加复杂,并且缺乏防篡改的硬件。由于网络中节点间通信关系的无线和瞬态计算或通信复杂性,安全机制更加灵活。现有的方法没有?以不方便的网络性能提供安全保障,攻击者对数据进行修改和破坏。提出的区块链方法固定在相同的安全级别,例如基于多项式短暂区块链的安全路由(PEBSR)加密,以创建安全网络。在该方法中,首先对邻居节点进行身份验证,采用基于多项式的临时密钥的邻居节点身份验证方法。它对节点位置信任节点进行评估,并在节点之间建立的密钥中分发临时密钥,以保证通信的安全性。第二种方法提供了一个加密链网络,在此过程中,如果任何攻击者或任何人修改了存储在每个单独数据库上的数据,它将维护sink数据库中的每个节点信息。最后,找出网络中各汇聚节点与参与节点之间的路由。仿真结果表明,提出的PEBSR方法具有较高的安全性、吞吐量和较短的响应时间;将它们与现有方法进行比较。
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来源期刊
Journal of Computational and Theoretical Nanoscience
Journal of Computational and Theoretical Nanoscience 工程技术-材料科学:综合
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3.9 months
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The 'Insertion/Deletion' Polymorphism, rs4340 and Diabetes Risk: A Pilot Study from a Hospital Cohort. Reincluding: Providing Support to Reengage Youth who Truant in Secondary Schools. Eosinophil cationic protein (ECP) correlates with eosinophil cell counts in the induced sputum of elite swimmers. Synergic action of an inserted carbohydrate-binding module in a glycoside hydrolase family 5 endoglucanase. [Prognostic impact of prior cardiopathy in patients hospitalized with COVID-19 pneumonia].
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