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A Lightweight Protocol for Secure Video Streaming

机译:用于安全视频流的轻量级协议

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摘要

The Internet of Things (IoT) introduces many new challenges which cannot be solved using traditional cloud and host computing models. A new architecture known as fog computing is emerging to address these technological and security gaps. Traditional security paradigms focused on providing perimeter-based protections and client/server point to point protocols (e.g., Transport Layer Security (TLS)) are no longer the best choices for addressing new security challenges in fog computing end devices, where energy and computational resources are limited. In this paper, we present a lightweight secure streaming protocol for the fog computing “Fog Node-End Device” layer. This protocol is lightweight, connectionless, supports broadcast and multicast operations, and is able to provide data source authentication, data integrity, and confidentiality. The protocol is based on simple and energy efficient cryptographic methods, such as Hash Message Authentication Codes (HMAC) and symmetrical ciphers, and uses modified User Datagram Protocol (UDP) packets to embed authentication data into streaming data. Data redundancy could be added to improve reliability in lossy networks. The experimental results summarized in this paper confirm that the proposed method efficiently uses energy and computational resources and at the same time provides security properties on par with the Datagram TLS (DTLS) standard.
机译:物联网(IoT)引入了许多新的挑战,而这些挑战是使用传统云和主机计算模型无法解决的。为了解决这些技术和安全漏洞,正在出现一种称为雾计算的新架构。专注于提供基于边界的保护和客户端/服务器点对点协议(例如,传输层安全性(TLS))的传统安全范例已不再是解决雾计算终端设备中新的安全挑战的最佳选择,因为在这些终端中,能源和计算资源是有限的。在本文中,我们为雾计算的“雾节点终端设备”层提供了一种轻量级的安全流协议。该协议是轻量级的,无连接的,支持广播和多播操作,并且能够提供数据源身份验证,数据完整性和机密性。该协议基于简单且节能的加密方法,例如哈希消息认证码(HMAC)和对称密码,并使用修改后的用户数据报协议(UDP)数据包将认证数据嵌入流数据中。可以添加数据冗余以提高有损网络的可靠性。本文总结的实验结果证实,该方法有效地利用了能源和计算资源,同时提供了与数据报TLS(DTLS)标准相当的安全性。

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