基于协作的无线传感器网络高效高速率密钥提取

S. N. Premnath, J. Croft, Neal Patwari, S. Kasera
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引用次数: 25

摘要

密钥的建立是两个实体之间进行私有通信的基本要求。在本文中,我们提出并评估了一种用于密钥提取的新方法,其中多个传感器协作交换探测数据包并收集通道测量值。从本质上讲,与来自单个通道的测量相比,来自多个通道的测量具有高得多的微分熵,从而导致用于密钥提取的信息源具有更多的随机性,而这反过来又产生更强的密钥。我们还探讨了由于每组多个节点而导致的通道测量次数的二次增长与采样率的线性减少和双向测量之间的时间间隔的线性增加之间的基本权衡。为了实验评估无线传感器网络中的协同密钥提取,我们首先构建了一个简单而灵活的具有多个TelosB传感器节点的测试平台。接下来,我们用不同的协作配置进行大规模实验。我们的实验表明,与1 × 1配置相比,传感器节点之间的协作显着增加了每秒,每个探针以及每毫焦耳传输能量的秘密比特提取。此外,我们还表明,当协作节点同时利用空间和频率分集时,可以进一步提高性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient High-Rate Secret Key Extraction in Wireless Sensor Networks Using Collaboration
Secret key establishment is a fundamental requirement for private communication between two entities. In this article, we propose and evaluate a new approach for secret key extraction where multiple sensors collaborate in exchanging probe packets and collecting channel measurements. Essentially, measurements from multiple channels have a substantially higher differential entropy compared to the measurements from a single channel, thereby resulting in more randomness in the information source for key extraction, and this in turn produces stronger secret keys. We also explore the fundamental trade-off between the quadratic increase in the number of measurements of the channels due to multiple nodes per group versus a linear reduction in the sampling rate and a linear increase in the time gap between bidirectional measurements. To experimentally evaluate collaborative secret key extraction in wireless sensor networks, we first build a simple yet flexible testbed with multiple TelosB sensor nodes. Next, we perform large-scale experiments with different configurations of collaboration. Our experiments show that in comparison to the 1 × 1 configuration, collaboration among sensor nodes significantly increases the secret bit extraction per second, per probe, as well as per millijoule of transmission energy. In addition, we show that the collaborating nodes can improve the performance further when they exploit both space and frequency diversities.
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