Low-Power LoRa Signal-Based Outdoor Positioning Using Fingerprint Algorithm

Author:

Choi Wongeun,Chang Yoon-Seop,Jung Yeonuk,Song Junkeun

Abstract

Positioning is an essential element in most Internet of Things (IoT) applications. Global Positioning System (GPS) chips have high cost and power consumption, making it unsuitable for long-range (LoRa) and low-power IoT devices. Alternatively, low-power wide-area (LPWA) signals can be used for simultaneous positioning and communication. We summarize previous studies related to LoRa signal-based positioning systems, including those addressing proximity, a path loss model, time difference of arrival (TDoA), and fingerprint positioning methods. We propose a LoRa signal-based positioning method that uses a fingerprint algorithm instead of a received signal strength indicator (RSSI) proximity or TDoA method. The main objective of this study was to evaluate the accuracy and usability of the fingerprint algorithm for large areas in the real world. We estimated the locations using probabilistic means based on three different algorithms that use interpolated fingerprint RSSI maps. The average accuracy of the three proposed algorithms in our experiments was 28.8 m. Our method also reduced the battery consumption significantly compared with that of existing GPS-based positioning methods.

Publisher

MDPI AG

Subject

Earth and Planetary Sciences (miscellaneous),Computers in Earth Sciences,Geography, Planning and Development

Reference22 articles.

1. The Internet of Things: How the Next Evolution of the Internet Is Changing Everything;Evans,2011

2. LPWAN Technologies for Internet of Things (IoT) and M2M Scenarios https://www.slideshare.net/PeterREgli/lpwan

3. LoRa Modulation Basics https://www.semtech.com/uploads/documents/an1200.22.pdf

4. White Paper: A Technical Overview of LoRa and LoRaWAN,2015

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