Wearable Wireless Sensor Network for Mitigating COVID-19 Transmission Through Physical Distancing

Muhammad Niswar, Muhammad Ahlan, Fachrurrozie Haris, Achmad Basuki
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Abstract

The global community is currently facing a critical situation with the widespread transmission of the Covid-19 virus. The rapid increase in Covid-19 cases has necessitated immediate action and treatment. As the World Health Organization (WHO) recommended, maintaining a minimum distance of one meter between individuals is an effective preventive measure to avoid transmission through respiratory droplets. To address this issue, this paper introduces a cost-effective design and implementation of a wearable wireless sensor network using the ESP32 microcontroller and Bluetooth Low-Energy (BLE) technology that promotes physical distancing and contact tracing to mitigate the spread of COVID-19. In this research, we have determined that the safe distance between individuals is 1.5 meters. Proximity testing has indicated that an RSSI value of -62 dBm corresponds to a distance below 1.5 meters. Hence, we set -62 dBm as the distance threshold between wearable devices to ensure safe physical distancing. These wearable wireless sensor network devices are intended to assist individuals in maintaining a safe distance from others, thereby reducing the risk of COVID-19 transmission.
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用于通过物理距离减轻新冠肺炎传播的可佩戴无线传感器网络
当前,国际社会面临新冠病毒广泛传播的严峻形势。Covid-19病例的迅速增加需要立即采取行动和治疗。根据世界卫生组织(WHO)的建议,人与人之间保持至少一米的距离是避免通过呼吸道飞沫传播的有效预防措施。为了解决这一问题,本文介绍了一种具有成本效益的可穿戴无线传感器网络设计和实现,该网络使用ESP32微控制器和蓝牙低功耗(BLE)技术,可促进物理距离和接触者追踪,以减轻COVID-19的传播。在本研究中,我们确定个体之间的安全距离为1.5米。近距离测试表明,RSSI值为-62 dBm对应的距离低于1.5米。因此,我们将可穿戴设备之间的距离阈值设置为-62 dBm,以确保安全的物理距离。这些可穿戴无线传感器网络设备旨在帮助个人与他人保持安全距离,从而降低COVID-19传播的风险。
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12
审稿时长
20 weeks
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