National Repository of Grey Literature 16 records found  1 - 10next  jump to record: Search took 0.01 seconds. 
System For Monitoring of Network Servers and Services
Holubec, Petr ; Rychlý, Marek (referee) ; Očenášek, Pavel (advisor)
This bachelor's thesis deals with creation of a monitoring system that provides active periodic monitoring of servers and their specific services and a variety of notification methods exceeded the monitored value. In addition, displays statistics and graphs of monitored values and provides monitoring of system resources (assuming you start a monitoring agent). To control the system serves a client application that is available for standard desktop operating systems and mobile system Android.
Optimal Route Planning for Electric Vehicles
Juřík, Tomáš ; Franek, Lešek (referee) ; Fiedler, Petr (advisor)
In this work we present algorithms that are capable of calculating paths to destination for electric vehicles. These paths can be based on the simple metrics such as the distance, time or the paths can be based on more advanced metric such as the minimum energy demanding metric. This metric is parameterizable by the physical construction of the electrical vehicle. We also propose a new algorithm that computes energy optimal paths that are more acceptable by the driver, because it also takes into consideration the time metric while computing the path.
Intelligent ventilation with remote control and supervision
Benda, Tomáš ; Ježek, Michal (referee) ; Staněk, Kamil (advisor)
The aim of the bachelor thesis is a design and physical realization of system for intelligent passive ventilation. The mechanical controller of ventilation is designed with 3D modelling software. The resulting model is then created by 3D printing technology. The controlling unit realizes the ventilation of the room according to a designed algorithm. This algorithm reacts to current values of temperature and relative humidity measured by indoor and outdoor sensor unit. The remote control and monitoring is provided by application for mobile phones with Android operating system. The application allows the user to set parameters for controlling the ventilation and informs about current values of temperature and relative humidity.
System for Easy Monitoring and Evaluating Production Processes (GMES)
Kluz, David ; Ulenfeld, Aleš (referee) ; Dydowicz, Petr (advisor)
This thesis analyzes the company Hyundai Dymos English due to the awareness of management of the production status. During the work are identified important production information to be transferred within the company. In this work is designed and implemented a system for efficient transfer of information within the company using Web portals and applications for mobile phones.
Asset Administration Shell for the operator
Houdek, Vojtěch ; Kaczmarczyk, Václav (referee) ; Baštán, Ondřej (advisor)
This bachelor thesis deals with the topic of AAS (asset administration shell), an element of industry 4.0. The first half of the work consists of a theoretical analysis of the concept of AAS and its active and passive parts. The second half is devoted to the practical design and implementation of AAS for the operator. The implementation of the communication architecture and the selection of suitable Hardware for AAS are addressed here. The resulting implementation deals with programming the active and passive part of AAS in C/C ++ and mobile applications in Android Studio using the programming language Kotlin
Distance measurement using sensors of mobile phone
Hubr, Ivo ; Endrle, Pavel (referee) ; Lattenberg, Ivo (advisor)
Distance and the associated parameters can be measured by specific sensors mobile device. Introduction The work focuses on the description of the sensors and the effects on their accuracy. To measure the distance, there is a number of good practices, which were described and demonstrated the application implemented source code for the Android platform. The project works with a total of three sensors, namely accelerometer, magnetometer and camera. The main objective of this work is the definition and application of methods for measuring distance using the appropriate sensors.
Multimedia Centre for the Elderly GUI Design
Gongol, Jakub ; Beran, Vítězslav (referee) ; Fučík, Jan (advisor)
This thesis covers the subject a graphical user interface for the erderly with focus on smartphones and tablets. The main object is design and creation of an Android application for remote control of the multimedia centre XBMC. The thesis also covers some existing solutions and testing of the created application.
User Interface for Autopilot of Quadcopter
Klein, Ondřej ; Materna, Zdeněk (referee) ; Beran, Vítězslav (advisor)
Bachelor's thesis describes the design and implementation of user interface for autopilot of quadcopter. Controlling the quadcopter is done via tablet computer. It provides manual and semi-autonomous mode and the option to control quadcopter by virtual joysticks or device movement. Part of the thesis is detailed analysis of quadcopter's abilities and description of existing solutions, which serves as a basis for the design of the application. The final program is tested and the results are evaluated.
Asset Administration Shell for the operator
Houdek, Vojtěch ; Kaczmarczyk, Václav (referee) ; Baštán, Ondřej (advisor)
This bachelor thesis deals with the topic of AAS (asset administration shell), an element of industry 4.0. The first half of the work consists of a theoretical analysis of the concept of AAS and its active and passive parts. The second half is devoted to the practical design and implementation of AAS for the operator. The implementation of the communication architecture and the selection of suitable Hardware for AAS are addressed here. The resulting implementation deals with programming the active and passive part of AAS in C/C ++ and mobile applications in Android Studio using the programming language Kotlin
Intelligent ventilation with remote control and supervision
Benda, Tomáš ; Ježek, Michal (referee) ; Staněk, Kamil (advisor)
The aim of the bachelor thesis is a design and physical realization of system for intelligent passive ventilation. The mechanical controller of ventilation is designed with 3D modelling software. The resulting model is then created by 3D printing technology. The controlling unit realizes the ventilation of the room according to a designed algorithm. This algorithm reacts to current values of temperature and relative humidity measured by indoor and outdoor sensor unit. The remote control and monitoring is provided by application for mobile phones with Android operating system. The application allows the user to set parameters for controlling the ventilation and informs about current values of temperature and relative humidity.

National Repository of Grey Literature : 16 records found   1 - 10next  jump to record:
Interested in being notified about new results for this query?
Subscribe to the RSS feed.