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Lightweight mutual authentication among sensors in body area networks through Physical Unclonable Functions

机译:通过物理不可克隆功能实现人体局域网中传感器之间的轻量级相互认证

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Medical sensors are usually attached to or implanted inside patient body. Since sensing results of Body Area Networks (BAN) can directly impact the control of medical equipment, the authenticity and integrity of sensing data is essential for safety of patients. Restricted by the limited resources available to BAN sensors, researchers have referred to Physical Unclonable Function of the nodes to achieve authentication. Existing approaches focus on the authentication between control unit and sensors. Mutual authentication among body sensors has not been carefully studied. In this paper, we propose to design a lightweight mutual authentication mechanism for BAN sensors with physical unclonable functions (PUF). Using control unit as a middle point, a pair of body sensors can establish shared secrets so that authenticity of exchanged data can be protected. The proposed approach does not require sensors to conduct any encryption operations, which suits the restricted resources available to BAN nodes. The analysis shows that the proposed approach has very low overhead and does not introduce new vulnerabilities into the system.
机译:医疗传感器通常附接到患者体内或植入患者体内。由于人体局域网(BAN)的传感结果会直接影响医疗设备的控制,因此传感数据的真实性和完整性对​​于患者的安全至关重要。受BAN传感器可用资源有限的限制,研究人员已提及节点的物理不可克隆功能以实现身份验证。现有的方法集中在控制单元和传感器之间的认证上。尚未对人体传感器之间的相互认证进行仔细研究。在本文中,我们建议为具有物理不可克隆功能(PUF)的BAN传感器设计一种轻量级的相互认证机制。使用控制单元作为中间点,一对身体传感器可以建立共享机密,从而可以保护交换数据的真实性。所提出的方法不需要传感器来执行任何加密操作,这适合于BAN节点可用的受限资源。分析表明,该方法的开销非常低,并且不会在系统中引入新的漏洞。

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