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Secure System Architecture for Wide Area Surveillance Using Security, Trust and Privacy (STP) Framework.

机译:使用安全性,信任和隐私(STP)框架的广域监控安全系统架构。

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Mobile computing emerged in the market for the past few years to provide solution for various platforms that range from smart phone, tablet, laptop, desktop computer, server to virtual computing systems such as cloud computing. The design approach and development of solutions for mobile computing continues to evolve in fulfilling the needs of diverse applications that run on various platforms. Recently, a new framework was introduced to provide a unified approach to resolve Security, Trust and Privacy (STP) enhancement on these platforms. This new framework emerged to enable a better way of dealing with security, trust and privacy conflicting aspects in pervasive environment such as mobile computing. This framework will be useful for system architects, engineers, designers and developers that are still struggling to create a secure, trustworthy, and privacy preserved environment to create confidence amongst users to do business transactions and collaborations especially in a more challenging environment such as cloud computing. In this paper, we discuss and propose new Secure System Architecture for strengthening surveillance activities in Wide Area using a combination of Trusted Computing (TC) via mutual attestation process to ensure integrity of components of the system, and Surveillance System. We further propose using Intel AMT chip that will generate a heartbeat pulse and transmit the signal through network interface to detect any possible physical intrusion. A failure to provide this pulse within a given time frame will trigger an action by the trusted security system for further analysis such as thievery detection.
机译:过去几年的市场出现了移动计算,为各种平台提供解决方案,这些平台范围从智能手机,平板电脑,笔记本电脑,台式计算机,服务器到虚拟计算系统,如云计算。移动计算解决方案的设计方法和开发仍在履行满足各种平台上运行的不同应用的需求。最近,介绍了一个新的框架,以提供统一的方法来解决这些平台上的安全性,信任和隐私(STP)增强。这种新框架出现了在移动计算之类的普遍环境中处理安全,信任和隐私方面的更好方法。该框架对于仍然努力创造安全,值得信赖性和隐私保存的环境,可以对系统建筑师,工程师,设计师和开发人员有用,以创造用户在用户之间创造信心,特别是在云计算等更具挑战性环境中进行业务交易和合作。在本文中,我们讨论并提出了新的安全系统架构,用于使用相互证明过程的可信计算(TC)的组合来加强广域的监控活动,以确保系统部件的完整性和监测系统。我们进一步建议使用英特尔AMT芯片,该芯片将产生心跳脉冲并通过网络接口传输信号以检测任何可能的物理入侵。在给定的时间帧内不提供该脉冲将触发可信安全系统的动作,以进一步分析,例如Thievery检测。

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