National Repository of Grey Literature 3 records found  Search took 0.01 seconds. 
Laboratory exercise - IQRF module for measuring mesh networks
Goryl, Juraj ; Paluřík, Pavel (referee) ; Jablončík, Lukáš (advisor)
This bachelor’s thesis deals with creating a laboratory task integrated into the subject of "Communication Systems for IoT." The first part of the thesis consists of familiarizing oneself with the issues of the IQRF network, its topology, and the network’s capabilities. The thesis compares IQRF technology with other IoT technologies commonly used in this field. The practical part of the thesis comprises the design of a module for the IQRF transmitter TR-72DA in the form of a mini PCIe card. Another part of the thesis deals with establishing communication with the BPC-IoT board using the SPI bus, with temperature measurement used as an example. The final part of the thesis is the assignment for the actual laboratory task. The appendices also include schematics and source code of programs for both the BPC-IoT board and the IQRF transmitter.
Design and implementation of a message interception and signal strength measurement system for the radio module
Fürich, Adam ; Věchet, Stanislav (referee) ; Michl, Antonín (advisor)
The aim of this bachelor thesis is to design and implement a system for listening to the message content and the signal intensity measurement (RSSI) of the specific radio module (TR-72DA). Selection of individual components, mutual communication interfaces and their connection was designed and chosen. The Arduino IDE and MS Visual Studio development environments were used to design control software for microcontroller (Atmel 328P). This system has been implemented and tested. Results showed the required, ie correct, behavior.
Design and implementation of a message interception and signal strength measurement system for the radio module
Fürich, Adam ; Věchet, Stanislav (referee) ; Michl, Antonín (advisor)
The aim of this bachelor thesis is to design and implement a system for listening to the message content and the signal intensity measurement (RSSI) of the specific radio module (TR-72DA). Selection of individual components, mutual communication interfaces and their connection was designed and chosen. The Arduino IDE and MS Visual Studio development environments were used to design control software for microcontroller (Atmel 328P). This system has been implemented and tested. Results showed the required, ie correct, behavior.

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