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Pattern Regulator: Protecting Temporal Usage Privacy for Wireless Body Area Sensor Networks

机译:码型调节器:保护无线人体区域传感器网络的临时使用隐私

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In a wireless body area sensor network (WBAN), biosensors are implanted or worn on an individual to acquire medical data for a clinical diagnosis or physical monitoring. Traditionally, authentication and cryptography techniques are used to achieve the data confidentiality and privacy of a WBAN system. However, for WBAN systems, besides data itself, the pattern of data transmission may leak critical information about the user. For example, various medical sensors deliver data in different patterns and these patterns leak many critical facts, e.g., what sensors are used (which implies diseases the individual may have), and how frequent the sensor is sampling (which implies how urgent some abnormal observation is about a patient). In this work, to address this challenge, we design a regulator, which packs real data session into a type-independent transmission model at transmission layer. All valid data packets are equably sent at the frequency defined by the regulator and at the same length to clutter the inherent pace of valid data transmission and other parameters.We also propose a strategy PAS to minimize the overhead while preventing attackers from locating the patients. Our extensive experiments validate our regulator and PAS design.
机译:在无线人体区域传感器网络(WBAN)中,将生物传感器植入或穿戴在个人身上,以获取用于临床诊断或物理监测的医学数据。传统上,身份验证和加密技术用于实现WBAN系统的数据机密性和隐私性。但是,对于WBAN系统,除了数据本身之外,数据传输的模式还可能泄漏有关用户的关键信息。例如,各种医疗传感器以不同的模式传递数据,这些模式泄漏了许多关键事实,例如,使用了什么传感器(这意味着个人可能患有疾病)以及传感器采样的频率(这意味着某些异常观察的紧急程度)关于一个病人)。在这项工作中,为了应对这一挑战,我们设计了一个调节器,该调节器将实际数据会话打包到传输层中与类型无关的传输模型中。所有有效数据包均以监管机构定义的频率和相同长度平等发送,以使有效数据传输和其他参数的固有步调变得混乱。我们还提出了一种策略PAS,以最大程度地减少开销,同时防止攻击者找到患者。我们广泛的实验验证了我们的调节器和PAS设计。

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