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1.
Indoor positioning system based on bluetooth low energy technology and a nature-inspired optimization algorithm
Primož Bencak, Darko Hercog, Tone Lerher, 2022, original scientific article

Abstract: Warehousing is one of the most important activities in the supply chain, enabling competitive advantage. Effective management of warehousing processes is, therefore, crucial for achieving minimal costs, maximum efficiency, and overall customer satisfaction. Warehouse Management Systems (WMS) are the first steps towards organizing these processes; however, due to the human factor involved, information on products, vehicles and workers may be missing, corrupt, or misleading. In this paper, a cost-effective Indoor Positioning System (IPS) based on Bluetooth Low Energy (BLE) technology is presented for use in Intralogistics that works automatically, and therefore minimizes the possibility of acquiring incorrect data. The proposed IPS solution is intended to be used for supervising order-picker movements, movement of packages between workstations, and tracking other mobile devices in a manually operated warehouse. Only data that are accurate, reliable and represent the actual state of the system, are useful for detailed material flow analysis and optimization in Intralogistics. Using the developed solution, IPS technology is leveraged to enhance the manually operated warehouse operational efficiency in Intralogistics. Due to the hardware independence, the developed software solution can be used with virtually any BLE supported beacons and receivers. The results of IPS testing in laboratory/office settings show that up to 98% of passings are detected successfully with time delays between approach and detection of less than 0.5 s.
Keywords: warehousing, indoor positioning systems, bluetooth low energy, particle swarm optimization, nature–inspired algorithm, intralogistics
Published in DKUM: 17.08.2023; Views: 432; Downloads: 57
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2.
Indoor mapping and navigation using geographic information systems
Goran Sekirarski, 2016, bachelor thesis/paper

Abstract: This study present proposal work with prototypes that use Radio-Frequency Identification (RFID) and NFC technology for indoor navigation using mobile device with help by using geographic information system to create geotagged maps to building in this diploma thesis. The study used an experimental approach with open source software and hardware engineering tools and technologies which minimized cost. A preliminary experiment with RFID and NFC tools helped to understand the compatibility of certain RFID infrastructure with NFC and helped to determine if and how NFC could be used. The capability of NFC in leveraging its low-cost infrastructure of passive tags, its embedment in mobile devices and the ubiquity of the mobile device provided a cost effective solution with good accuracy.
Keywords: Geographic information system, CAD, RFID, Wi-Fi, Near Field Communication, indoor navigation, indoor positioning, NFC Internal, mobile device
Published in DKUM: 24.04.2017; Views: 2160; Downloads: 146
.pdf Full text (2,75 MB)

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