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Secure, distributed monitoring and reporting of data from wireless sensor networks.

机译:安全,分布式地监视和报告来自无线传感器网络的数据。

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摘要

Wireless sensor network (WSN) security research generally considers models based on abstract applications. Instead, I argue that WSN security solutions must be sensitive to the application and infrastructure. Specifically, I formulate a new notion of an application-specific security context as the combination of a potential attackers motivation and the WSN vulnerability. To reduce the vulnerability, WSN design must balance security with traditional objectives such as the cost, energy and efficiency to a degree proportional to the attackers motivation. I illustrate this argument via four example applications in an attempt to formulate a basis to derive more grounded and realistic assumptions for WSN security and develop cost-effective security solutions to handle application-specific vulnerabilities in WSNs.;I then delve quite deeply into the application-centric context of ubiquitous medical monitoring systems. Wireless sensor devices collect long term medical data that aid medical professionals in the care and treatment of the elderly and other patients with chronic diseases. Using wearable body sensor networks (BSNs), patients may live more mobile and independent lives than they would under direct medical observation. As a result, the quality of life can be improved and the cost for medical care can be reduced.;Although security issues in BSNs have been studied previously, most existing work focuses on monitoring patients in a fixed location such as a hospital, relying on centralized approaches that have poor scalability. I develop a new protocol to support secure and scalable anytime/anywhere monitoring of patients to give them full mobility, support security of sensitive medical data, and preserve location privacy of patients, while sharing sensor data collection and retrieval workloads among distributed storage nodes.;I then expanded the context to that of a patient who is being monitored and then experiences a medical emergency. In such a case, some variations must occur in the system to provide more rapid response, to ensure that the data has been read by emergency personnel, and to release the location information under this limited, but extremely necessary scenario. Here, I present an approach to provide these needed benefits while continuing to provide scalability, privacy, and data integrity.
机译:无线传感器网络(WSN)安全性研究通常会考虑基于抽象应用程序的模型。相反,我认为WSN安全解决方案必须对应用程序和基础结构敏感。具体来说,我将特定应用程序安全上下文的新概念表述为潜在攻击者动机和WSN漏洞的组合。为了减少漏洞,WSN设计必须在安全性与传统目标之间进行权衡,例如成本,能源和效率,这些程度要与攻击者的动机成比例。我通过四个示例应用程序来说明此论点,以试图为WSN安全性奠定基础,以得出更扎实和现实的假设,并开发具有成本效益的安全性解决方案来处理WSN中的特定于应用程序的漏洞。然后,我将深入研究该应用程序。普遍存在的医疗监控系统的中心环境。无线传感器设备收集长期医疗数据,以帮助医疗专业人员对老年人和其他慢性病患者进行护理和治疗。使用可穿戴的人体传感器网络(BSN),患者可能比直接进行医学观察时生活得更加机动和独立。结果,可以改善生活质量,并可以降低医疗保健成本。;尽管先前已经研究了BSN中的安全性问题,但是大多数现有工作集中在监视固定位置(例如医院)的患者,扩展性较差的集中式方法。我开发了一种新协议,以支持随时随地对患者进行安全和可扩展的监视,从而为他们提供完整的移动性,支持敏感医疗数据的安全性并保护患者的位置隐私,同时在分布式存储节点之间共享传感器数据收集和检索工作负载。然后,我将上下文扩展到正在被监视然后经历紧急医疗情况的患者的上下文。在这种情况下,系统中必须发生一些变化以提供更快速的响应,以确保紧急人员已读取数据,并在这种受限但极为必要的情况下释放位置信息。在这里,我提出了一种在继续提供可伸缩性,隐私和数据完整性的同时提供这些所需好处的方法。

著录项

  • 作者

    Sabbah, Eric.;

  • 作者单位

    State University of New York at Binghamton.;

  • 授予单位 State University of New York at Binghamton.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

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