心跳和金属检测的Wi-Fi信号分析:可靠的非接触式系统的比较研究

Faiza Khan, Md Zakirul Alam Bhuiyan, Md. Monirul Islam, Tian Wang, Aliuz Zaman, Hai Tao
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引用次数: 3

摘要

在这篇调查论文中,我们提出了各种可以造福社会的Wi-Fi应用方案,即通过检测生命体征和检测可疑物体。基于之前在该领域进行的研究,我们分析了使用依赖Wi-Fi技术的心率检测与旧的基于传感器的方法相比,以及现代实现的必要性,特别是在医疗领域。人们在任何情况下都可能出现心脏问题,如心动过速和心动过缓,因此不需要接触的系统在检测生命体征异常方面是最实用的。基于传感器的系统可能仅在系统中不同组件之间的通信中依赖Wi-Fi技术,例如在消息队列遥测传输系统中。然而,这些系统中传感器的存在可以被Wi-Fi技术取代,以非接触式方式检测人员的存在并监测其相应的心率。此外,依赖Wi-Fi的系统,如Vital Radio和Wi-Sleep,可以同时监测多人的心率。因此,非接触式、基于Wi-Fi的系统在日常使用中是最有效和实用的。此外,尽管非接触式系统展示了技术进步的好处,但这些系统仍然可以进一步改进,因为它们往往在较短的距离内产生更高的准确率,正如超宽带雷达系统和菲涅耳模型所证明的那样。非接触式系统可以增强,以在较远的距离同时检测多个用户。在详细介绍了心率检测的接触要求和非接触式系统之后,我们还提供了Wi-Fi技术的其他有用应用,例如在金属检测,人体跌倒检测等领域。
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Wi-Fi Signal Analysis for Heartbeat and Metal Detection: A Comparative Study of Reliable Contactless Systems
In this survey paper, we present various proposals of Wi-Fi applications which can benefit society, namely through detection of vital signs and detection of suspicious objects. Based on the previous research conducted in this field, we analyze how heart rate detection using Wi-Fi dependent technologies compare to older, sensor-based methods and the necessity of modern implementations especially in the medical field. People can have heart problems such as tachycardia and bradycardia at any instance, thus systems which do not require contact are most practical in detection of vital sign irregularities. Sensorbased systems may depend on Wi-Fi technologies only for the communication between different components in the system, such as in the Message Queuing Telemetry Transport System. However, the presence of a sensor in these systems can be replaced by Wi-Fi technologies to detect the presence of people and monitor their corresponding heart rates in a contactless manner. Additionally, Wi-Fi dependent systems such as Vital Radio and Wi-Sleep can monitor the heart rates of multiple people at once. Therefore contactless, Wi-Fi based systems are most efficient and practical for daily use. Moreover, although contactless systems demonstrate the benefits of technological advancements, these systems can still be further improved since they tend to produce higher accuracy rates from shorter distances, as demonstrated by the UWB radar system and the Fresnel model. Contactless systems can be enhanced to detect multiple users at once at extended distances. After providing details of contact requiring and contactless systems for heart rate detection, we also provide other useful applications of Wi-Fi technology, such as in the field of metal detection, human fall detection, etc.
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