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Secure Type-Based Multiple Access

机译:基于安全类型的多路访问

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摘要

We consider data confidentiality in a distributed detection scenario with a type-based multiple-access (TBMA) protocol where a large set of sensors sends local measurements to an ally fusion center (FC) over an insecure wireless medium called the main channel. Then, the ally FC makes a final decision to the physical environment. Although many wireless sensor networks are mission-specific and need data confidentiality due to the broadcast nature of wireless transmission, it can be easily wiretapped by unauthorized enemy FCs through eavesdropping channels. We propose a novel TBMA protocol called secure TBMA which provides data confidentiality by taking advantage of inherent properties of wireless channels, namely randomness and independence of the main and eavesdropping channels. In particular, the secure TBMA activates sensors having strong and weak main channel gains and makes the sensors follow different reporting rules based on the magnitudes of their channel gains. The reporting rules are carefully designed to confuse the enemy FC. The proposed secure TBMA delivers unconditional/perfect secrecy and does not assume any superiority of the ally FC over the enemy FC in terms of computational capability, secret key, and so on. For Rayleigh fading channels, we analyze the performance of the secure TBMA at both enemy and ally FCs by investigating conditions for perfect secrecy and an error exponent of detection error probability, respectively. On the one hand, the analysis at the enemy FC provides a design criterion of the reporting rules to achieve perfect secrecy. On the other hand, the analysis of the error exponent carried out with a Gaussian approximation shows that perfect secrecy is achievable at a marginal cost in detection error performance. All our claims are also verified with simulation results which have good matches with the analysis.
机译:我们使用基于类型的多址(TBMA)协议在分布式检测方案中考虑数据机密性,在该协议中,大量传感器通过称为主信道的不安全无线介质将本地测量值发送到盟军融合中心(FC)。然后,盟友FC对物理环境做出最终决定。尽管许多无线传感器网络是特定于任务的,并且由于无线传输的广播性质而需要数据机密性,但是未经授权的敌方FC可以通过窃听通道轻松窃听它。我们提出了一种新颖的TBMA协议,称为安全TBMA,该协议通过利用无线信道的固有属性(即主信道和窃听信道的随机性和独立性)来提供数据机密性。特别地,安全的TBMA激活具有强主通道增益和弱主通道增益的传感器,并使传感器基于其通道增益的大小遵循不同的报告规则。报告规则经过精心设计,以使敌方FC感到困惑。提议的安全TBMA提供了无条件/完美的保密性,并且在计算能力,秘密密钥等方面,并不假定盟友FC比敌方FC具有任何优势。对于瑞利衰落信道,我们分别通过研究完美保密的条件和检测错误概率的错误指数,来分析敌方和盟军FC上安全TBMA的性能。一方面,敌方FC的分析提供了报告规则的设计标准,以实现完美的保密性。另一方面,使用高斯近似进行的误差指数分析表明,可以以检测误差性能的边际成本实现完美的保密性。我们所有的要求也得到了与分析结果非常匹配的模拟结果的验证。

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