Industry communication networks
Průmyslové komunikační sítě
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České vysoké učení technické v Praze
Czech Technical University in Prague
Czech Technical University in Prague
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Abstract
Tato bakalářská práce se věnuje experimentální realizaci a testování LoRa mesh sítě na platformě Arduino. Hlavním cílem bylo vytvořit funkční síť, která umožňuje bezdrátovou komunikaci s nízkou spotřebou energie na vzdálenosti ca. 1 km. První část práce se soustředí na praktickou realizaci LoRa mesh sítě, včetně detailního popisu použitého hardwaru a softwaru. Druhá část zahrnuje simulační ověření funkčnosti sítě, kde byly zkoumány různé scénáře provozu sítě. V třetí části práce byly provedeny experimentální měření teploty a vlhkosti. Na závěr jsou dílčí výsledky analyzovány a diskutovány.
This bachelor thesis focuses on the experimental implementation and testing of a LoRa mesh network on the Arduino platform. The main objective was to create a functional network that enables reliable communication with low power consumption at distances ca. 1 km. The first part of the thesis focuses on the practical implementation of the LoRa mesh network, including a detailed description of the hardware and software used. The second part contains a simulation verification of the network functionality, where different scenarios of network operation were investigated. In the third part of the work, experimental measurements of temperature and humidity were performed. Finally, the partial results are analyzed and discussed.
This bachelor thesis focuses on the experimental implementation and testing of a LoRa mesh network on the Arduino platform. The main objective was to create a functional network that enables reliable communication with low power consumption at distances ca. 1 km. The first part of the thesis focuses on the practical implementation of the LoRa mesh network, including a detailed description of the hardware and software used. The second part contains a simulation verification of the network functionality, where different scenarios of network operation were investigated. In the third part of the work, experimental measurements of temperature and humidity were performed. Finally, the partial results are analyzed and discussed.