National Repository of Grey Literature 35 records found  1 - 10nextend  jump to record: Search took 0.00 seconds. 
River wireless monitor
Michník, Jakub ; Štohl, Radek (referee) ; Bradáč, Zdeněk (advisor)
This work presents hardware and software design for River wireless monitor Rabbit Core module RCM5400W. It describes possible solutions for measurement of river characteristics, in particular water level height. Pressure method measuring and selection of important electric parts are described in more detail. The software for Rabbit Core module RCM5400W and also web sites are described here.
Weather Station with Ethernet Interface
Novák, Pavel ; Šimek, Václav (referee) ; Bartoš, Pavel (advisor)
This thesis deals with the design and construction of the meteorological station. The meteorological station is designed and constructed to be able to measure the basic meteorological parameters (temperature, humidity, air pressure) and the other three variables (measuring rainfall, wind speed, wind direction). This thesis will introduce you to meteorology. Meteorology determines the daily weather forecast and the results are used for examples in aviation or maritime affairs. The method of atmospheric origin is given in the theoretical part. Meteorology must use measuring instruments to determine quantities. The dissertation also includes analysis of the measuring instruments. The meteorological station uses the Ethernet technology. In the chapter devoted to Ethernet are described its principles, types and method of power supply over Ethernet. The following section describes the design of the entire meteorological station, selection of all components and description of their connection. The chapter about implementation contains a description of the parts which forms program part of the meteorological station. The aim of the thesis is a summary of the achieved results including price comparison of the renovated meteorological station with other meteorological stations, which can be normally bought.
CPU based system for river monitoring
Michník, Jakub ; Fiedler, Petr (referee) ; Bradáč, Zdeněk (advisor)
This work presents hardware and software design for CPU based system for river monitoring with AVR microprocessor. It describes possible solutions for measurement of river characteristics, in particular water level height. Pressure method measuring and selection of important electric parts are described in more detail. The software for AVR microprocessor and also a program for PC which can distribute the measured data to the internet are described here.
Optimized Thermo-dynamic Senzor with Balance P¨rincip
Řezníček, Michal ; Jankovský, Jaroslav (referee) ; Szendiuch, Ivan (advisor)
This work deal with taking advatage of ballance thermodynamic sensors as the replacement of commercial temperature sensors.
Electronic thermometer and humidity meter
Lapáček, Petr ; Chmelař, Milan (referee) ; Lattenberg, Ivo (advisor)
This master´s thesis deals with the design of measuring station used for the temperature and humidity measurement. There is a theoretical basical description of sensores for temperature and humidity measurement in the first part. Furthermore I deal with a theoretical design of measuring system, especially with types of materials and possibilities of communication between these parts. The main part of thesis is about communication on buses I2C,UART, SPI, RS485. There is a description of function procedure of particular integrated circuit, moduluses which are used in task in the next part of thesis.In the practical part I was engaged in a functional design of autonomous system for the temperature and ralative humidity measurement. Data could be presented by the computer after connection with the station. There is a description of testing the particular circuits and the full description of function particular blocks of system in the task. I have used the program called Eagle for schemes and printed wirings designing. The copy is placed on CD ready for next using. In the last part of thesis is a brief description of program algorithm "Meteostanice", which I have created for data presentation. There is an illustration of measuring results in these last part. The task is completely ready for the realization of autonomous system of weather station with its own memory.
Temperature monitoring unit
Martínek, Jaroslav ; Kovář, Jan (referee) ; Kolka, Zdeněk (advisor)
Content of the Bachelor Thesis covers design and realisation of an unit for multipoint temperature measuring in cooling and freezing equipments in food stores and shops. As a controlling microcomputer is used an Atmel ATMega128, temperature sensors are realised by DS18S20 digital thermometers, connected via 1-wire bus. Unit can read temperature from 32 temperature sensors, includes memory for measured data, real time clock, Ethernet interface and display with buttons for basic user control. Temperatures are measured periodically with user defined interval, values are stored into internal memory and showed on display. Measured data can also be transferred via Ethernet to clinent PC, where can be viewed in form of table and graphs.
Usage of thermovision for detection of defected modules in solar system
Strnadel, Jan ; Tošer, Pavel (referee) ; Vaněk, Jiří (advisor)
This thesis deals with using thermography to detect defect of photovoltaic panels.There is research of the effect of climatic conditions to photovoltaic panel temperature. At the end of the thesis is degradation of pv panels calculated.
Measuring temperatures in the rotor of an electrical machine
Pokorný, Vladimír ; Ctibor, Jiří (referee) ; Knobloch, Jan (advisor)
Tato práce se zabývá problematikou měření teplot v rotoru elektrického stroje. Těžištěm práce je návrh, výroba a testování čtyřkanálového bezdrátového měřicího systému, který je primárně určen pro měření teplot v rotoru elektrického stroje. První kapitola této práce – Resistance temperature detectors přibližuje problematiku použití odporových senzorů teploty, jejich normy, tolerance a měřicí obvody, které slouží pro měření odporu, respektive teploty. Druhá kapitola – SPI vysvětluje základy symetrické sériové komunikační sběrnice SPI, která je v navrhovaném měřicím systému využita pro komunikaci mikrokontroléru s teplotními čidly. Ve třetí kapitole Bluetooth autor vysvětluje komunikační standard Bluetooth Low Energy (BLE), díky kterému navrhované zařízení komunikuje a odesílá naměřená data ostatním zařízením v okolí. V úvodu této kapitoly jsou uvedeny základní parametry BLE a jeho výhody a nevýhody. Závěr této kapitoly pak rozebírá strukturu vrstev BLE. Následuje obsáhlá čtvrtá kapitola Hardware design, kde je detailně popsán hardwarový návrh bezdrátového teploměru. Začátek této kapitoly je věnován napájecímu zdroji, který je v tomto případě složen z 3,6 V baterie velikosti 1/2 AA a lineárního napěťového regulátoru, který se stará o stabilizaci napájecího napětí. Následuje popis měřicího integrovaného obvodu MAX31865, který byl vybrán pro měření teploty díky jeho vysoké přesnosti a velkému měřicímu rozsahu. Aby se ušetřila elektrická energie v době nečinnosti zařízení, každý ze čtyř senzorů je vzdáleně zapínán a vypínán povelem mikrokontroléru. Posledním bodem této kapitoly je návrh desky plošných spojů s ohledem na vyvážení komponent, aby nedocházelo k nežádoucím vibracím vlivem vysokých otáček rotoru. Měřicí systém se bude otáčet společně s rotorem motoru, se kterým je pevně spojen. Pevné spojení dovoluje měřit teploty kontaktní metodou. Pátá – podobně obsáhlá – kapitola Software design je zaměřena na popis firmware měřicího systému. První část kapitoly se zaměřuje na konfiguraci a inicializaci SPI sběrnice, nastavení komunikačních pinů a komunikační frekvence. Dále jsou popsány základní funkce pro čtení a zapisování registrů, které jsou využity pro řízení integrovaného obvodu MAX31865. Následuje popis implementace BLE do měřicího systému a popis hlavní smyčky programu (čtení teplot a vysílání naměřených dat pomocí BLE). Závěr této kapitoly se zabývá klientskou aplikací, která byla nad rámec zadání vytvořena a slouží pro příjem a ukládání dat z měřicího systému. Závěrečná – šestá kapitola –Device commissioning popisuje výrobu, oživení a naprogramování výrobku. Měřicí systém byl otestován při 6500 ot/min a při měření kalibrační křivky byla zjištěna průměrná odchylka +0,8% v rozsahu +20°C až +200°C . Přílohy na konci práce obsahují výrobní podklady. Produktový list výrobku lze nalézt v příloze A.
Thermometer for SW/HW Platform FITkit
Čižinský, Vojtěch ; Šimek, Václav (referee) ; Vašíček, Zdeněk (advisor)
The real progress in temperature measurement was made in 20th century. This specialization has since affected all domains of human doing and improved many of processes. This bachelor thesis deals with the design of a measuring module, which has to be plugged to a FITkit platform, and the implementation of the program, which communicates with the module. There will be a couple of various temperature sensors placed on the module, with various ways of the temperature presentation.
The temperature measurement with semiconductor sensor
Dostálek, Martin ; Klíma, Bohumil (referee) ; Huták, Petr (advisor)
This bachelor work disserts on measurement of temperature using the electronic temperature sensors DS18B20, which are controlled by microcomputer type AVR. This sensors use for communication the 1-wire type data bus. The 1-wire data bus, designed by Dallas Semicondoctor, allows connect more devices to the control unit using two wires. This type of measuring elements offers simple handling for the user. The sensor transforms the measuring data directly to the digital data. The rate of the transmission is determined by number of bits in the resultant value and the sensor is programmable during attendance by the set mechanism (master). The sensor code is consistent with the value of measured temperature. That means it doesn’t require supplemental decoding. The resulting data are worked up and displayed on LCD continuously. First part of this work is focused on the theory of 1-wire element. Further, there is an explanation of the principle of the measuring sensor function and its controlling by the control unit. Next, there is a basic description of the AVR type microcomputers, more detailed description is aimed at the ATiny2313 controller, which is used in this work. The important part is dedicated to the implementation of the 1-wire protocol to the appropriate control unit.

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