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A Hash-Based RFID Authentication Mechanism for Context-Aware Management in IoT-Based Multimedia Systems

机译:基于散列的RFID身份验证机制用于基于IoT的多媒体系统中的上下文感知管理

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摘要

With the technological advances in the areas of Machine-To-Machine (M2M) and Device-To-Device (D2D) communication, various smart computing devices now integrate a set of multimedia sensors such as accelerometers, barometers, cameras, fingerprint sensors, gestures, iris scanners, etc., to infer the environmental status. These devices are generally identified using radio-frequency identification (RFID) to transfer the collected data to other local or remote objects over a geographical location. To enable automatic data collection and transition, a valid RFID embedded object is highly recommended. It is used to authorize the devices at various communication phases. In smart application devices, RFID-based authentication is enabled to provide short-range operation. On the other hand, it does not require the communication device to be in line-of-sight to gain server access like bar-code systems. However, in existing authentication schemes, an adversary may capture private user data to create a forgery problem. Also, another issue is the high computation cost. Thus, several studies have addressed the usage of context-aware authentication schemes for multimedia device management systems. The security objective is to determine the user authenticity in order to withhold the eavesdropping and tracing. Lately, RFID has played a significant for the context-aware sensor management systems (CASMS) as it can reduce the complexity of the sensor systems, it can be available in access control, sensor monitoring, real time inventory and security-aware management systems. Lately, this technology has opened up its wings for CASMS, where the challenging issues are tag-anonymity, mutual authentication and untraceability. Thus, this paper proposes a secure hash-based RFID mechanism for CASMS. This proposed protocol is based on the hash operation with the synchronized secret session-key to withstand any attacks, such as desynchronization, replay and man-in-the-middle. Importantly, the security and performance analysis proves that the proposed hash-based protocol achieves better security and performance efficiencies than other related schemes. From the simulation results, it is observed that the proposed scheme is secure, robust and less expensive while achieving better communication metrics such as packet delivery ratio, end-to-end delay and throughput rate.
机译:随着机器对机器(M2M)和设备对设备(D2D)通信领域的技术进步,各种智能计算设备现在集成了一组多媒体传感器,例如加速度计,气压计,照相机,指纹传感器,手势,虹膜扫描仪等,以推断环境状况。通常使用射频识别(RFID)来识别这些设备,以将收集的数据传输到地理位置上的其他本地或远程对象。为了实现自动数据收集和转换,强烈建议使用有效的RFID嵌入式对象。它用于在各种通信阶段对设备进行授权。在智能应用设备中,启用了基于RFID的身份验证以提供短距离操作。另一方面,它不需要通信设备在视线范围内即可获得类似于条形码系统的服务器访问权限。但是,在现有的身份验证方案中,对手可能会捕获私人用户数据以创建伪造问题。另外,另一个问题是高计算成本。因此,一些研究已经解决了用于多媒体设备管理系统的上下文感知认证方案的使用。安全目标是确定用户真实性,以阻止监听和跟踪。近来,RFID对上下文感知传感器管理系统(CASMS)发挥了重要作用,因为它可以降低传感器系统的复杂性,可以在访问控制,传感器监视,实时库存和安全意识管理系统中使用。最近,这项技术为CASMS打开了翅膀,其中的挑战性问题是标签匿名性,相互认证和不可追溯性。因此,本文提出了一种基于安全的基于散列的CASMS RFID机制。该提议的协议基于具有同步秘密会话密钥的哈希操作,以抵抗任何攻击,例如失步,重播和中间人攻击。重要的是,安全性和性能分析证明,与其他相关方案相比,所提出的基于散列的协议可以实现更好的安全性和性能。从仿真结果可以看出,所提出的方案是安全,健壮和便宜的,同时实现了更好的通信指标,例如分组传输率,端到端延迟和吞吐率。

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