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An Enhanced LoRaWAN Security Protocol for Privacy Preservation in IoT with a Case Study on a Smart Factory-Enabled Parking System

机译:IOT中隐私保留的增强型LoraWan安全协议,案例研究了智能工厂的停车系统

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摘要

The Internet of Things (IoT) utilizes algorithms to facilitate intelligent applications across cities in the form of smart-urban projects. As the majority of devices in IoT are battery operated, their applications should be facilitated with a low-power communication setup. Such facility is possible through the Low-Power Wide-Area Network (LPWAN), but at a constrained bit rate. For long-range communication over LPWAN, several approaches and protocols are adopted. One such protocol is the Long-Range Wide Area Network (LoRaWAN), which is a media access layer protocol for long-range communication between the devices and the application servers via LPWAN gateways. However, LoRaWAN comes with fewer security features as a much-secured protocol consumes more battery because of the exorbitant computational overheads. The standard protocol fails to support end-to-end security and perfect forward secrecy while being vulnerable to the replay attack that makes LoRaWAN limited in supporting applications where security (especially end-to-end security) is important. Motivated by this, an enhanced LoRaWAN security protocol is proposed, which not only provides the basic functions of connectivity between the application server and the end device, but additionally averts these listed security issues. The proposed protocol is developed with two options, the Default Option (DO) and the Security-Enhanced Option (SEO). The protocol is validated through Burrows–Abadi–Needham (BAN) logic and the Automated Validation of Internet Security Protocols and Applications (AVISPA) tool. The proposed protocol is also analyzed for overheads through system-based and low-power device-based evaluations. Further, a case study on a smart factory-enabled parking system is considered for its practical application. The results, in terms of network latency with reliability fitting and signaling overheads, show paramount improvements and better performance for the proposed protocol compared with the two handshake options, Pre-Shared Key (PSK) and Elliptic Curve Cryptography (ECC), of Datagram Transport Layer Security (DTLS).
机译:事物互联网(物联网)利用算法以智能城市项目的形式促进跨城市的智能应用。由于IOT中的大部分设备是电池操作,因此应通过低功耗通信设置促进其应用程序。通过低功耗广域网(LPWAN)可以进行这种设施,但是以受约束的比特率。对于LPWAN的远程通信,采用了几种方法和协议。一种这样的协议是远程广域网(LorraWan),其是通过LPWAN网关之间的用于设备和应用服务器之间的远程通信的媒体访问层协议。然而,由于过高的计算开销,Lorawan具有更少的安全功能,因为由于过高的计算开销,因此,由于过高的计算开销。标准协议无法支持端到端的安全性和完善的前向保密,同时容易受到重播攻击,使Lorawan Limited在支持安全性(尤其是最终安全性)很重要的应用程序中。由此激励,提出了一个增强的Lorawan安全协议,它不仅提供了应用程序服务器和结束设备之间连接的基本功能,而且还提供了避免这些列出的安全问题。建议的协议是用两个选项开发的,默认选项(do)和安全增强选项(SEO)。通过Burrows-Abadi-Consureham(BAN)逻辑和Internet安全协议和应用程序(AVISPA)工具的自动验证,验证该协议。还通过基于系统和基于低功耗的设备的评估分析了所提出的协议。此外,考虑了对其实际应用的智能工厂停车系统的案例研究。结果,在具有可靠性拟合和信令开销的网络延迟方面,与图形传输的两个握手选项,预共享键(PSK)和椭圆曲线加密(ECC),对所提出的协议显示最重要的改进和更好的性能层安全(DTL)。

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