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Evaluation of a 433 MHz Band Body Sensor Network for Biomedical Applications

机译:用于生物医学应用的433 MHz频带人体传感器网络的评估

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摘要

Body sensor networks (BSN) are an important research topic due to various advantages over conventional measurement equipment. One main advantage is the feasibility to deploy a BSN system for 24/7 health monitoring applications. The requirements for such an application are miniaturization of the network nodes and the use of wireless data transmission technologies to ensure wearability and ease of use. Therefore, the reliability of such a system depends on the quality of the wireless data transmission. At present, most BSNs use ZigBee or other IEEE 802.15.4 based transmission technologies. Here, we evaluated the performance of a wireless transmission system of a novel BSN for biomedical applications in the 433 MHz ISM band, called Integrated Posture and Activity NEtwork by Medit Aachen (IPANEMA) BSN. The 433 MHz ISM band is used mostly by implanted sensors and thus allows easy integration of such into the BSN. Multiple measurement scenarios have been assessed, including varying antenna orientations, transmission distances and the number of network participants. The mean packet loss rate (PLR) was 0.63% for a single slave, which is comparable to IEEE 802.15.4 BSNs in the proximity of Bluetooth or WiFi networks. Secondly, an enhanced version is evaluated during on-body measurements with five slaves. The mean PLR results show a comparable good performance for measurements on a treadmill (2.5%), an outdoor track (3.4%) and in a climate chamber (1.5%).
机译:人体传感器网络(BSN)由于具有优于常规测量设备的各种优势,因此成为重要的研究课题。一个主要优势是为24/7健康监测应用部署BSN系统的可行性。这种应用的要求是网络节点的小型化和无线数据传输技术的使用,以确保耐磨性和易用性。因此,这种系统的可靠性取决于无线数据传输的质量。当前,大多数BSN使用ZigBee或其他基于IEEE 802.15.4的传输技术。在这里,我们评估了新型BSN的无线传输系统在433 MHz ISM频段上的生物医学应用的性能,该系统称为Medit Aachen(IPANEMA)BSN的综合姿势和活动网络。 433 MHz ISM频段主要由植入式传感器使用,因此可以轻松地将其集成到BSN中。已经评估了多种测量方案,包括变化的天线方向,传输距离和网络参与者的数量。一个从站的平均丢包率(PLR)为0.63%,与蓝牙或WiFi网络附近的IEEE 802.15.4 BSN相当。其次,在与五个奴隶的人体测量过程中评估增强版。 PLR的平均结果显示,在跑步机(2.5%),室外跑道(3.4%)和气候室内(1.5%)上的测量具有相当的良好性能。

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