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Implementation Methodology for Interoperable Personal Health Devices With Low-Voltage Low-Power Constraints

机译:具有低压低功耗约束的可互操作个人保健设备的实现方法

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Traditionally, e-Health solutions were located at the point of care (PoC), while the new ubiquitous user-centered paradigm draws on standard-based personal health devices (PHDs). Such devices place strict constraints on computation and battery efficiency that encouraged the International Organization for Standardization/IEEE11073 (X73) standard for medical devices to evolve from X73PoC to X73PHD. In this context, low-voltage low-power (LV-LP) technologies meet the restrictions of X73PHD-compliant devices. Since X73PHD does not approach the software architecture, the accomplishment of an efficient design falls directly on the software developer. Therefore, computational and battery performance of such LV-LP-constrained devices can even be outperformed through an efficient X73PHD implementation design. In this context, this paper proposes a new methodology to implement X73PHD into microcontroller-based platforms with LV-LP constraints. Such implementation methodology has been developed through a patterns-based approach and applied to a number of X73PHD-compliant agents (including weighing scale, blood pressure monitor, and thermometer specializations) and microprocessor architectures (8, 16, and 32 bits) as a proof of concept. As a reference, the results obtained in the weighing scale guarantee all features of X73PHD running over a microcontroller architecture based on ARM7TDMI requiring only 168 B of RAM and 2546 B of flash memory.
机译:传统上,电子医疗解决方案位于护理点(PoC),而新的无所不在的以用户为中心的范例采用基于标准的个人医疗设备(PHD)。此类设备对计算和电池效率施加了严格的限制,这促使国际标准化组织/ IEEE11073(X73)医疗设备标准从X73PoC演变为X73PHD。在这种情况下,低压低功耗(LV-LP)技术满足了X73PHD兼容设备的限制。由于X73PHD不采用软件体系结构,因此高效设计的完成直接取决于软件开发人员。因此,这种受LV-LP限制的设备的计算和电池性能甚至可以通过有效的X73PHD实施设计来胜过。在这种情况下,本文提出了一种将X73PHD实施到具有LV-LP约束的基于微控制器的平台的新方法。这种实现方法已通过基于模式的方法开发,并已应用于许多X73PHD兼容代理(包括秤,血压计和温度计专业化)和微处理器体系结构(8、16和32位)作为证明。的概念。作为参考,在秤中获得的结果可确保X73PHD的所有功能都运行在基于ARM7TDMI的微控制器架构上,仅需要168 B的RAM和2546 B的闪存。

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