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首页> 外文期刊>Journal of medical systems >A Privacy Preservation Secure Cross Layer Protocol Design for IoT Based Wireless Body Area Networks Using ECDSA Framework
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A Privacy Preservation Secure Cross Layer Protocol Design for IoT Based Wireless Body Area Networks Using ECDSA Framework

机译:基于ECDSA框架的IOT无线体积网络的隐私保存安全交叉层协议设计

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摘要

Internet of Things (IoT) provides the collection of devices in different applications in which Wireless Body Area Network (WBAN) is placed an crucial role. The WBAN is a wireless sensor network consisting of sensor nodes that is collected from IoT which is implanted in the human body to remotely monitor the patient's physiological signals without affecting their routine work. During emergency situations or life-threatening situations there is a need for a better performance to deliver the actual data with an efficient transmission and there is still a challenge in efficient remote monitoring. So, in this paper an application for cross layer protocol design architecture of Elliptic Curve Digital Signature Algorithm (ECDSA) has been proposed. It replaces the protocol architecture of WBAN (IEEE 802.15.6), WMAN (IEEE 802.16), and 3G, WLAN (IEEE 802.11) or wired networks. The lightweight secure system provides secure data transmission and access control mechanisms by using ECDA-based proxy signature algorithm. The efficiency of the system is implemented using simulation models that were developed using NS-2, and the results obtained shows an optimum solution in terms of delay, PDR, throughput, jitter, packet transmission time, dropping ratio and packet delivery. The viability of the methodology proposed is illustrated by the response.
机译:事物互联网(IOT)提供了在不同应用中的设备集合,其中无线体积网络(WBAN)处于一个至关重要的作用。 WBAN是由传感器节点组成的无线传感器网络,该传感器节点由IOT收集,在IOT中植入人体中,以远程监测患者的生理信号而不会影响其日常工作。在紧急情况或威胁危及生命的情况下,需要更好的性能来提供高效传输的实际数据,并且在有效的远程监控中仍存在挑战。因此,在本文中,已经提出了椭圆曲线数字签名算法(ECDSA)的横梁协议设计体系结构的应用。它替换WBAN(IEEE 802.15.6),WMAN(IEEE 802.16)和3G,WLAN(IEEE 802.11)或有线网络的协议体系结构。轻量级安全系统通过使用基于ECDA的代理签名算法提供安全数据传输和访问控制机制。使用使用NS-2开发的模拟模型来实现系统的效率,并且获得的结果在延迟,PDR,吞吐量,抖动,分组传输时间,丢弃比率和数据包传输方面显示了最佳解决方案。提出的方法的可行性由响应说明。

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