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Designing A Resilient Social Networking and Public Participation System (SNAPPS).

机译:设计弹性的社交网络和公众参与系统(SNAPPS)。

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摘要

The Federal Emergency Management Agency (FEMA) has been plagued by poorly managed disasters throughout its history. As the Agency has evolved, it has adopted the use of better technology to enhance its missions. Hurricane Sandy represented a shift in technology adoption and community engagement for FEMA. With the rise of social networking communications and the technology adoption by the majority of Americans, FEMA and the Department of Homeland Security have had successes and challenges with the integration of these new channels of communication for operational purposes. FEMA is mandated by law to use the policy and procedures outlined in the National Incident Management. This framework is an all-hazards approach to government disaster response, regardless of complexity, size, and type. The framework is designed to provide guidance to support local, regional, and national jurisdictional levels of large-scale response. There is minimal guidance specifically on the government use of social media and other collaborative technologies to enhance mission performance.;To address the gaps in both literature and the National Incident Management System, this dissertation presents the Social Networking and Public Participation System (SNAPPS) model for government response to large-scale natural disasters. This model is derived from an in-depth analysis of the Federal Emergency Management Agency's (FEMA) response during Hurricane Sandy, one of the largest recorded storms in American history. New design standards, positions, and measures of effectiveness are introduced to enhance the existing National Incident Management System. The SNAPPS concept of operations considers the broader issues of privacy, network security, and non-social media users.;Using systems engineering and organizational cybernetics, FEMA's use of the National Incident Management System is systematically analyzed using the Viable System Model. The effectiveness of the large-scale disaster response and integration of social media and other collaborative technologies are evaluated through the lenses of emergency management, information management, crisis communication, and resource coordination. Data from literature and government after-action reports are used to develop a baseline viable system model for the Federal Emergency Management Agency's response to Sandy in New York and New Jersey. From a system-of-systems perspective, the national, regional, and local jurisdictional levels of response are analyzed and evaluated to attempt to determine organizational strengths and weaknesses associated with the operational integration of social media.;The SNAPPS model contributes to the existing body of knowledge in organizational cybernetics and systems engineering research in operations for large organizations. The SNAPPS concept of operations makes implications for the integration of government and community-based technology, competency-based workforce, and vital infrastructure enhancements toward the National Incident Management System.
机译:在整个历史上,联邦紧急事务管理局(FEMA)一直受到管理不善的灾难的困扰。随着原子能机构的发展,它已采用更好的技术来加强其任务。桑迪飓风代表了FEMA在技术采用和社区参与方面的转变。随着社交网络通信的兴起和大多数美国人的技术采用,FEMA和国土安全部在整合这些新的通信渠道以实现运营目的方面取得了成功和挑战。 FEMA被法律强制使用国家事件管理中概述的政策和程序。无论复杂程度,规模和类型如何,该框架都是应对政府灾难的全灾种方法。该框架旨在提供指导,以支持地方,区域和国家管辖级别的大规模响应。对于政府使用社交媒体和其他协作技术来提高任务绩效的指导很少。;为了解决文献和国家事件管理系统之间的差距,本文提出了社交网络和公众参与系统(SNAPPS)模型用于政府应对大规模自然灾害。该模型来自对美国联邦紧急事务管理局(FEMA)在飓风桑迪期间的反应的深入分析,这是美国历史上最大的记录暴风雨之一。引入了新的设计标准,职位和有效性措施,以增强现有的国家突发事件管理系统。 SNAPPS的运营概念考虑了隐私,网络安全和非社交媒体用户等更广泛的问题。;使用系统工程和组织控制论,使用可行系统模型系统分析了FEMA对国家事件管理系统的使用。通过应急管理,信息管理,危机沟通和资源协调的角度,评估了大规模灾难响应以及社交媒体与其他协作技术集成的有效性。来自文献和政府事后报告的数据被用于为联邦紧急事务管理局对纽约和新泽西州桑迪的应对工作建立一个可行的基准系统模型。从系统的角度分析和评估国家,地区和地方司法管辖区的响应级别,以尝试确定与社交媒体运营整合相关的组织优势和劣势。; SNAPPS模型有助于现有机构大型组织的组织控制论和系统工程研究知识。 SNAPPS的运营概念对政府和基于社区的技术,基于胜任能力的劳动力以及对国家事件管理系统的重要基础架构的增强意义重大。

著录项

  • 作者单位

    The George Washington University.;

  • 授予单位 The George Washington University.;
  • 学科 Engineering.;Organization theory.;Communication.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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