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Power and Task Management in Wireless Body Area Network Based Medical Monitoring Systems

机译:基于无线人体局域网的医疗监控系统中的电源和任务管理

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Intelligent healthcare systems incorporating wireless sensors in a ubiquitous computing environment have the potential to revolutionize outpatient care. Such systems must balance effective and timely reporting of results with power requirements and available communication methods. We intend to design a system based on a wireless body area network (WBAN) which will effectively detect medical problems, reduce the time lag between detection of a medical problem as well as manage power and communications. We plan to develop an algorithm that can find an optimal solution, within an acceptable time, and be faster than current algorithms in assigning tasks and processing and transmitting sensor data such that the system end-to-end delay is minimized while guaranteeing required system battery lifetime and availability. This system will also be able to analyze a patient's health data and report the results to the user while simultaneously converting the sensor data to the standard HL7 (Health Level Seven) format and transmitting it to a healthcare server.
机译:在无处不在的计算环境中结合了无线传感器的智能医疗系统有可能彻底改变门诊服务。这样的系统必须在有效和及时的结果报告与功率要求和可用的通信方法之间取得平衡。我们打算设计一个基于无线体域网(WBAN)的系统,该系统将有效地检测医疗问题,减少检测医疗问题之间的时间间隔以及管理电源和通信。我们计划开发一种算法,该算法可以在可接受的时间内找到最佳解决方案,并且在分配任务,处理和传输传感器数据方面比当前算法更快,从而在确保所需系统电池电量的同时最大程度地减小了系统的端到端延迟寿命和可用性。该系统还将能够分析患者的健康数据并将结果报告给用户,同时将传感器数据转换为标准的HL7(七级健康水平)格式并将其传输到医疗服务器。

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