桌面多个智能设备之间基于振动的密钥交换

Alisa Arno, Kentaroh Toyoda, Yuji Watanabe, I. Sasase, P. Mathiopoulos
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引用次数: 0

摘要

在移动NFC(近场通信)支付和数据共享应用中,窃听是一个重要而现实的问题。虽然Diffie-Hellman (Diffie-Hellman)方案已被广泛应用于安全通信的密钥交换中,但由于其易受中间人攻击的影响,在室内环境中可能会失败。在本文中,我们提出了一种新的基于振动的密钥交换方法,可以在放置在桌子上的多个智能设备之间进行密钥交换。在这个方案中,假设设备彼此相邻,每个设备都以从要交换的密钥转换成的模式振动。振动模式由加速度计测量,每个键从测量的加速度中恢复。该方案已在Android智能手机上实现,各种实验性能评估结果验证了其有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration-based Key Exchange among Multiple Smart Devices on the Desk
Abstract Eavesdropping is an important and real concern in mobile NFC (Near Filed Communication) payment and data sharing applications. Although the DH (Diffie-Hellman) scheme has been widely used in key exchange for secure communications, it may fail in indoor environments due to its vulnerability against man-in-the-middle attack. In this paper, we propose a new vibration-based key exchange among multiple smart devices which are placed on a desk. In this scheme, devices are assumed to be located next to each other with each of them vibrating with patterns converted from a key to be exchanged. The vibration patterns are measured by an accelerometer and each key is recovered from the measured acceleration. The proposed scheme has been implemented using Android smartphones and various experimental performance evaluation results have validated its effectiveness.
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