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CRC-Based Message Authentication for 5G Mobile Technology

机译:用于5G移动技术的基于CRC的消息身份验证

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摘要

Our society greatly depends on mobile technologies. As wirelessly connected devices take over the control of the electricity in our homes, the water we drink and the transportation we use, it becomes increasingly important to guarantee the security of interactions of all players involved in a network. Apart from the high security needs, 5G will require utmost efficiency in the use of bandwidth and energy. In this paper, we show how to make the type of CRC checksum used in current LTE standards cryptographically secure with minimum extra resources. We present a new CRC-based message authentication method and provide a quantitative analysis of the achieved security as a function of message and CRC sizes. The presented method retains most of the implementation simplicity of the traditional CRC except that the LFSR implementing the encoding and decoding is required to have re-programmable connections. Similarly to previously proposed cryptographically secure CRCs, the presented CRC enables combining the detection of random and malicious errors without increasing bandwidth. Its main advantage is the ability to detect all double-bit errors in a message, which is of special importance for systems using Turbo codes, including LTE.
机译:我们的社会极大地依赖于移动技术。随着无线连接设备接管了家中的用电,饮水和所用运输的控制,保证网络中所有参与者的互动安全性变得越来越重要。除了高度的安全需求外,5G将在带宽和能源的使用方面要求最高的效率。在本文中,我们展示了如何以最少的额外资源对当前LTE标准中使用的CRC校验和进行加密保护。我们提出了一种新的基于CRC的消息身份验证方法,并根据消息和CRC大小对实现的安全性进行了定量分析。所提出的方法保留了传统CRC的大多数实现简单性,只是需要实现编码和解码的LFSR具有可重新编程的连接。与先前提出的密码安全CRC相似,提出的CRC能够在不增加带宽的情况下组合检测随机和恶意错误。它的主要优点是能够检测消息中的所有双位错误,这对于使用Turbo码(包括LTE)的系统尤为重要。

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