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Developing a New Security Framework for Bluetooth Low Energy Devices

机译:为蓝牙低能耗设备开发新的安全框架

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Wearable devices are becoming more popular in our daily life.They are usually used to monitor health status,track fitness data,or even do medical tests,etc.Since the wearable devices can obtain a lot of personal data,their security issues are very important.Motivated by the consideration that the current pairing mechanisms of Bluetooth Low Energy(BLE)are commonly impractical or insecure for many BLE based wearable devices nowadays,we design and implement a security framework in order to protect the communication between these devices.The security framework is a supplement to the Bluetooth pairing mechanisms and is compatible with all BLE based wearable devices.The framework is a module between the application layer and the GATT(Generic Attribute Profile)layer in the BLE architecture stack.When the framework starts,a client and a server can automatically and securely establish shared fresh keys following a designed protocol;the services of encrypting and decrypting messages are provided to the applications conveniently by two functions;application data are securely transmitted following another protocol using the generated keys.Prudential principles are followed by the design of the framework for security purposes.It can protect BLE based wearable devices from replay attacks,Man-in-The-Middle attacks,data tampering,and passive eavesdropping.We conduct experiments to show that the framework can be conveniently deployed with practical operational cost of power consumption.The protocols in this framework have been formally verified that the designed security goals are satisfied.
机译:可穿戴设备在日常生活中变得越来越受欢迎。他们通常用于监测健康状况,跟踪健身数据,甚至可以做医疗测试等.Since可穿戴设备可以获得大量的个人数据,他们的安全问题非常重要。通过考虑到蓝牙低能量(BLE)的当前配对机制通常是对如今的许多基于BLE的可穿戴设备的不切实际或不安全,我们设计和实现安全框架,以保护这些设备之间的通信。安全框架是蓝牙配对机制的补充,并与所有基于BLE的可穿戴设备兼容。框架是应用层和GATT(通用属性配置文件)层之间的模块在BLE体系结构堆栈中。当框架开始时,客户端和服务器可以自动和安全地在设计的协议之后建立共享的新鲜键;提供了加密和解密消息的服务通过两个函数方便地进行应用;应用数据通过生成的键在另一个协议遵循另一个协议。审慎原理后面是用于安全目的的框架的设计。它可以保护基于BLE的可穿戴设备免受重放攻击的可穿戴设备,中间攻击,数据篡改和被动窃听。我们进行实验表明,可以方便地部署框架,以实际的功耗运算成本。本框架中的协议已被正式验证,满足设计的安全目标。

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