• Title/Summary/Keyword: Bluetooth Beacon mode

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Design of Positioning System Using Beacon Mode of Bluetooth Module (블루투스 모듈의 비콘 모드를 이용한 위치 탐지 시스템 설계)

  • You, Dong-ju;Jang, Si-Woong
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2019.05a
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    • pp.122-124
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    • 2019
  • 최근 IoT 시스템의 관심도가 높아지고 있어 기본 활용 기술의 방법 중 블루투스 비콘 모드를 이용한 정확한 위치 탐지 방법에 대한 연구가 진행되고 있다. 본 논문에서는 블루투스 모듈의 비콘 모드를 활성화하여 불특정 다수의 사용자들에게서 획득한 정보의 고유아이디(UUID, Universally Unique Identifiers) 식별 및 특정 기기의 위치를 파악하여 해당 UUID의 위치 탐지 방법을 제안하였다. 비콘 정보의 수신신호세기(RSSI, Received Signal Strength Indicator)값을 이용하여 불특정 사용자의 위치를 탐지하고, 설정된 RSSI의 범위 구간에 따라 탐지 객체의 IoT 모듈에 접근 여부를 판단하고, 접근이 감지되었을 때 해당 모듈의 IoT 모듈의 기능을 작동시키는 방식으로 활용할 수 있다. 또한, 위치 탐지의 정확성을 위해 RSSI의 데이터를 저장하고, 저장된 데이터 관찰을 통하여 해당 블루투스의 위치 데이터를 보다 정확하게 파악하는 시스템을 설계하였다.

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Bluetooth Smart Ready implementation and RSSI Error Correction using Raspberry (라즈베리파이를 활용한 블루투스 Smart Ready 구현 및 RSSI 오차 보정)

  • Lee, Sung Jin;Moon, Sang Ho
    • Journal of Korea Multimedia Society
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    • v.25 no.2
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    • pp.280-286
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    • 2022
  • In order to efficiently collect data, it is essential to locate the facilities and analyze the movement data. The current technology for location collection can collect data using a GPS sensor, but GPS has a strong straightness and low diffraction and reflectance, making it difficult for indoor positioning. In the case of indoor positioning, the location is determined by using wireless network technologies such as Wifi, but there is a problem with low accuracy as the error range reaches 20 to 30 m. In this paper, using BLE 4.2 built in Raspberry Pi, we implement Bluetooth Smart Ready. In detail, a beacon was produced for Advertise, and an experiment was conducted to support the serial port for data transmission/reception. In addition, advertise mode and connection mode were implemented at the same time, and a 3-count gradual algorithm and a quadrangular positioning algorithm were implemented for Bluetooth RSSI error correction. As a result of the experiment, the average error was improved compared to the first correction, and the error rate was also improved compared to before the correction, confirming that the error rate for position measurement was significantly improved.

Implementation of Indoor Positioning System using Raspberry Pi and RSSI Scanner (라즈베리파이와 RSSI 스캐너를 활용한 실내측위 시스템 구현)

  • Lee, Sung-jin;Choi, Jun-hyeong;Choi, Byeong-yoon
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2021.10a
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    • pp.640-642
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    • 2021
  • In order to collect a lot of data clearly and efficiently, it is essential to know the locations of the current facilities and analyze the movement data. The current location collection technology can collect data using a GPS (Global Positioning System) sensor, but in the case of GPS, it has strong straightness and low diffraction and reflectivity, making it difficult to position indoors. It is impossible to measure the distance between the server and the client because the signal sensitivity cannot be received. This paper implements an indoor positioning system using beacons and scanners in Raspberry Pi 3 B+. It controls Advertise Mode and Connection Mode at the same time using the scanner algorithm.

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Development of Smart Etiquette System based on BLE and App (BLE 기반 스마트 에티켓 시스템 및 App 개발)

  • Hong, Seong-Pyo;Cho, Young-Ju
    • Journal of Digital Contents Society
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    • v.18 no.5
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    • pp.803-810
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    • 2017
  • Currently, every person possesses a smart phone due to the development of the IT industry. There is an improper situation in which a smart phone is not set in silent mode, such as a lecture room, a library, and a theatre hall. The proposed system automatically automates the function of smart phones where they are designated as a public place or etiquette area and automatically return the function of the smartphone if they deviate from the location of the site. It is also equipped with a combination of autonomous devices and services, based on Bluetooth communications, which are applied to ultra-light low-power IoT(Internet of Things) devices, and has features that allow diverse types of features and services to be added without requiring deformation of the hardware.