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Efficient Security Mechanisms for mHealth Applications Using Wireless Body Sensor Networks

机译:使用无线人体传感器网络的mHealth应用程序的高效安全机制

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摘要

Recent technological advances in wireless communications and physiological sensing allow miniature, lightweight, ultra-low power, intelligent monitoring devices, which can be integrated into a Wireless Body Sensor Network (WBSN) for health monitoring. Physiological signals of humans such as heartbeats, temperature and pulse can be monitored from a distant location using tiny biomedical wireless sensors. Hence, it is highly essential to combine the ubiquitous computing with mobile health technology using wireless sensors and smart phones to monitor the well-being of chronic patients such as cardiac, Parkinson and epilepsy patients. Since physiological data of a patient are highly sensitive, maintaining its confidentiality is highly essential. Hence, security is a vital research issue in mobile health (mHealth) applications, especially if a patient has an embarrassing disease. In this paper a three tier security architecture for the mHealth application is proposed, in which light weight data confidentiality and authentication protocols are proposed to maintain the privacy of a patient. Moreover, considering the energy and hardware constraints of the wireless body sensors, low complexity data confidential and authentication schemes are designed. Performance evaluation of the proposed architecture shows that they can satisfy the energy and hardware limitations of the sensors and still can maintain the secure fabrics of the wireless body sensor networks. Besides, the proposed schemes can outperform in terms of energy consumption, memory usage and computation time over standard key establishment security scheme.
机译:无线通信和生理感应的最新技术进步允许使用微型,轻便,超低功耗的智能监控设备,这些设备可以集成到用于健康监控的无线人体传感器网络(WBSN)中。人体的生理信号,例如心跳,温度和脉搏,可以使用微小的生物医学无线传感器从远处进行监测。因此,将无处不在的计算技术与使用无线传感器和智能手机的移动健康技术相结合,以监测慢性患者(如心脏病,帕金森病和癫痫病患者)的健康状况至关重要。由于患者的生理数据高度敏感,因此保持其机密性至关重要。因此,安全性是移动健康(mHealth)应用程序中至关重要的研究问题,尤其是当患者患有令人尴尬的疾病时。本文提出了一种用于mHealth应用程序的三层安全体系结构,其中提出了轻量级数据机密性和身份验证协议,以维护患者的隐私。此外,考虑到无线人体传感器的能量和硬件限制,设计了低复杂度的数据机密和认证方案。所提出架构的性能评估表明,它们可以满足传感器的能量和硬件限制,并且仍可以保持无线人体传感器网络的安全结构。此外,与标准密钥建立安全方案相比,所提出的方案在能耗,内存使用和计算时间方面都可以胜过其他方案。

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