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用于身体传感器网络的基于活动感知、节能、优先级的多患者监测自适应系统。

Activity aware energy efficient priority based multi patient monitoring adaptive system for body sensor networks.

作者信息

Sudha G Florence, Karthik S, Kumar N Selva

机构信息

Department of Electronics and Communication Engineering, Pondicherry Engineering College, Puducherry, India.

Department of Electronics and Communication Engineering Sri Nandhanam College of Engineering and Technology, Vellore District, Tamil Nadu, India.

出版信息

Technol Health Care. 2014 Jan 1;22(2):167-77. doi: 10.3233/THC-140782.

Abstract

BACKGROUND

According to WHO, Cardiovascular diseases are the major cause of death worldwide. Due to the increase in cardiac diseases, miniaturized and energy efficient remote cardiac monitoring systems are required.

OBJECTIVE

To develop an Activity Aware Energy Efficient priority based Multi Patient Monitoring protocol for Body Sensor Networks to monitor physiological signals continuously. The protocol must also be adaptive to allow for new connections and to renegotiate the nodes services.

METHOD

In this protocol, the ECG signals of multiple patients are monitored one after another in a cyclic order. Slots are allotted to each patient by means of a dynamic TDMA scheme where the slot duration is dependent upon the criticality of the patient. A Network configuration slot is provided at the end of each frame to reconfigure the network. Using the wearer's activity level, the sensor dynamically manages its activities namely, sampling of the ECG sensor, processing of the data, and wireless transmission to minimize overall power consumption. Additional energy efficiency is achieved by assigning priorities to the devices connected in the network and turning them on and off periodically based on their priorities.

RESULTS

The protocol is implemented on Shimmer nodes and ECG signals of N patients are monitored. The reconfiguration of the node's priority and sampling rate based on the health condition of the patient are demonstrated. A comparison of energy consumption, packet delivery ratio and battery life time is made.

CONCLUSIONS

Energy consumption and nodes lifetime are the parameters to be optimized in the case of BSN. The AAEEPMPM protocol for BSN has been designed and implemented in hardware platform for energy efficiency. The results obtained from the BSN shows that this protocol has higher energy efficiency and provides better lifetime for the network.

摘要

背景

根据世界卫生组织的数据,心血管疾病是全球主要的死亡原因。由于心脏病的增加,需要小型化且节能的远程心脏监测系统。

目的

为人体传感器网络开发一种基于活动感知节能优先级的多患者监测协议,以持续监测生理信号。该协议还必须具有适应性,以允许新连接并重新协商节点服务。

方法

在该协议中,多个患者的心电图信号按循环顺序依次进行监测。通过动态时分多址(TDMA)方案为每个患者分配时隙,其中时隙持续时间取决于患者的危急程度。在每个帧的末尾提供一个网络配置时隙以重新配置网络。传感器根据佩戴者的活动水平动态管理其活动,即心电图传感器的采样、数据处理和无线传输,以尽量减少总体功耗。通过为网络中连接的设备分配优先级并根据其优先级定期打开和关闭设备,可实现额外的能源效率。

结果

该协议在Shimmer节点上实现,并对N名患者的心电图信号进行监测。展示了根据患者健康状况对节点优先级和采样率进行的重新配置。对能耗、数据包传输率和电池寿命进行了比较。

结论

在人体传感器网络的情况下,能耗和节点寿命是需要优化的参数。已为人体传感器网络设计并在硬件平台上实现了AAEEPMPM协议以提高能源效率。从人体传感器网络获得的结果表明,该协议具有更高的能源效率,并为网络提供了更好的寿命。

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