ACStalk: Design and Implementation of An Access/Entry Control System using an Internet of Things (IoT) Platform

Syuan-You Chen Syuan-You Chen, Shih-Wen Jiang Syuan-You Chen, Whai-En Chen Shih-Wen Jiang
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Abstract

An access/entry control system usually consists of many subsystems. These subsystems have different Application Programming Interfaces (APIs), but they need to be integrated and interacted well. Without a good integrated platform, the communications between subsystems will be very complicated. In addition, except user name and password, Radio Frequency Identification (RFID), and the human’s biometrics (e.g., fingerprint and face) are used to identify users. Wireless Local Area Network (WLAN), mobile communications (e.g. 4G/5G) and Bluetooth are adopted as the remote access technologies. In addition, with the COVID-19 pandemic, public health and personal safety are getting more concerns. People are required to wear personal protective equipment (PPE) in some special areas (e.g., barns and factories) to ensure the personal healthy and food’s safety. To identify the user and detect whether the PPE is correctly worn, this paper proposes an access/entry control system by using an Internet of Things (IoT) platform. Through the proposed IoT system architecture, different identification mechanisms and communication technologies can be adopted, and the messages can be exchanged between two mechanisms. This paper elaborates the architecture design of the IoT platform and discusses the implementation/deployment issues of the PPE detection by using machine learning mechanisms.
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ACStalk:利用物联网 (IoT) 平台设计和实施出入口控制系统
出入口控制系统通常由许多子系统组成。这些子系统有不同的应用编程接口(API),但它们需要很好地集成和交互。如果没有一个良好的集成平台,子系统之间的通信将非常复杂。此外,除用户名和密码外,射频识别(RFID)和人体生物特征(如指纹和面部)也可用于识别用户。远程访问技术采用无线局域网(WLAN)、移动通信(如 4G/5G)和蓝牙。此外,随着 COVID-19 的流行,公众健康和人身安全日益受到关注。在一些特殊区域(如谷仓和工厂),人们必须穿戴个人防护设备(PPE),以确保个人健康和食品安全。为了识别用户身份并检测个人防护设备是否正确佩戴,本文提出了一种利用物联网(IoT)平台的出入口控制系统。通过所提出的物联网系统架构,可以采用不同的识别机制和通信技术,并在两种机制之间交换信息。本文阐述了物联网平台的架构设计,并讨论了利用机器学习机制检测个人防护设备的实施/部署问题。
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