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On critical point avoidance among mobile terminals in healthcare monitoring applications: Saving lives through reliable communication software

机译:关于避免在医疗监控应用中移动终端中的关键点:通过可靠的通信软件挽救生命

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The advances in Microelectromechanical systems (MEMS), battery life, low powered communication standards, more capable processing units, and hybrid communication have cemented the use of mobile Wireless Body Area Networks (WBAN) in medical informatics. Although the MEMS were used in medical informatics solutions but they were highly localized, rigged, non-cooperative, and particularly non extendable. The interconnectivity of various network interfaces is the main driving force on the modern technology boom. The morphological features of mobile devices and their use in our daily lives create an opportunity to connect medical informatics systems with the main stream. It promise unobtrusive ambulatory health monitoring for a long period of time and provide real-time updates of the patient's status to the physician. When integrated with the WBAN, the mobile devices play the role of localized data diffusion, classification, and broadcast center. In this paper, the criticality of this ‘single point of failure’ is discussed. Often the untapped flow of data to the mobile device can lead to crashing of the network. A computational model is devised in order to pre estimate the device resource availability matrix and data flow management without creating the denial of service. The speed mismatch due to resource binding violation on the part of the hand held device can be reported and capped before the data loss heeds un noticed. The techniques proposed are analyzed and tested on a test bed, specifically designed for monitoring remote patient vitals. The results obtained show marked improvement from the methods proposed in the contemporary systems.
机译:微机电系统(MEMS),电池寿命,低功率通信标准,功能更强大的处理单元以及混合通信的进步,已经在医学信息学中巩固了移动无线人体局域网(WBAN)的使用。尽管MEMS用于医疗信息学解决方案,但它们具有高度的局限性,操纵性,非合作性,尤其是不可扩展性。各种网络接口的互连性是推动现代技术繁荣的主要动力。移动设备的形态特征及其在我们日常生活中的使用创造了将医学信息系统与主流连接的机会。它保证了长时间的非阻塞式门诊健康监控,并向医生提供患者状态的实时更新。当与WBAN集成时,移动设备将扮演本地数据扩散,分类和广播中心的角色。本文讨论了这种“单点故障”的重要性。通向移动设备的未利用的数据流通常会导致网络崩溃。设计一种计算模型以便预先估计设备资源可用性矩阵和数据流管理,而不会产生拒绝服务的情况。可以报​​告并限制由于手持设备部分资源绑定冲突导致的速度不匹配,然后再注意数据丢失。所提出的技术在专门用于监控远程患者生命的测试床上进行了分析和测试。所获得的结果表明,与现代系统中提出的方法相比,已有显着改进。

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