首页> 外文会议>2017 IEEE 42nd Conference on Local Computer Networks Workshops >AZSPM: Autonomic Zero-Knowledge Security Provisioning Model for Medical Control Systems in Fog Computing Environments
【24h】

AZSPM: Autonomic Zero-Knowledge Security Provisioning Model for Medical Control Systems in Fog Computing Environments

机译:AZSPM:雾计算环境中医疗控制系统的自主零知识安全性提供模型

获取原文
获取原文并翻译 | 示例

摘要

The panic among medical control, information, and device administrators is due to surmounting number of high-profile attacks on healthcare facilities. This hostile situation is going to lead the health informatics industry to cloud-hoarding of medical data, control flows, and site governance. While different healthcare enterprises opt for cloud-based solutions, it is a matter of time when fog computing environment are formed. Because of major gaps in reported techniques for fog security administration for health data i.e. absence of an overarching certification authority (CA), the security provisioning is one of the the issue that we address in this paper. We propose a security provisioning model (AZSPM) for medical devices in fog environments. We propose that the AZSPM can be build by using atomic security components that are dynamically composed. The verification of authenticity of the atomic components, for trust sake, is performed by calculating the processor clock cycles from service execution at the resident hardware platform. This verification is performed in the fully sand boxed environment. The results of the execution cycles are matched with the service specifications from the manufacturer before forwarding the mobile services to the healthcare cloud-lets. The proposed model is completely novel in the fog computing environments. We aim at building the prototype based on this model in a healthcare information system environment.
机译:医疗控制,信息和设备管理员之间的恐慌是由于对医疗保健设施的高规格攻击数量不断增加。这种不利的局面将导致健康信息学行业向医疗数据,控制流和站点管理的云存储领域发展。尽管不同的医疗保健企业选择基于云的解决方案,但雾计算环境的形成是一个时间问题。由于针对健康数据进行雾化安全性管理的报告技术存在重大差距,即缺少总体认证机构(CA),因此安全性配置是我们在本文中要解决的问题之一。我们提出了雾环境下医疗设备的安全配置模型(AZSPM)。我们建议可以使用动态组成的原子安全性组件来构建AZSPM。出于信任的考虑,通过从驻留硬件平台上的服务执行计算处理器时钟周期来执行原子组件真实性的验证。该验证是在完全沙盒的环境中执行的。执行周期的结果与制造商提供的服务规格相匹配,然后再将移动服务转发到医疗保健云服务器。所提出的模型在雾计算环境中是完全新颖的。我们旨在在医疗保健信息系统环境中基于此模型构建原型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号