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Nové laboratorní úlohy pro předmět "Automatizace budov" / New laboratory tasks for the course "Building automation"Zamazal, Martin January 2016 (has links)
This master’s thesis extends the teaching possibilities of the course “Building automation” in two areas. The first area is the visualization of KNX educational panel, which is made through iRidium software package in several variants. The second area is the design and manufacture of the educational switch panel with different types of switches, in which students can simply try wiring, which are commonly used mainly in civil engineering. Part of the second area is the creation of several teaching tasks.
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Hemautomation : Automatiska persienner för nedkylningOlovsson, Jens January 2018 (has links)
Hur mycket värme strålar in genom fönster? Det beror på vilket håll de är vända mot och deras storlek. I den här rapporten jämförs två metoder för att hindra en temperaturhöjning. Den ena metoden är med luftvärmepump som jämförs kostnadsmässigt med den andra metoden som är automatiska persienner. Beräkningen av vad det kostar att kyla bort värmen med värmepump sker i MATLAB. Styrningen av persiennerna sker i det här fallet med hjälp av KNX. Kommunikationen sker via en buss. För att programmera styrningen används ETS5. Beräkningarna grundas på antagen att byggnaden har 8 m² fönster i sydlig riktning, 5 m² i östlig riktning och 4 m² i västlig riktning. Den tillförda värmen över hela året antas vara 10 000 kWh. Beräkningen tar inte hänsyn till yttertemperatur och är därför lite missvisande. Mätdata för antal soltimmar hämtas från SMHI för att beräkna solinstrålningen genom alla fönster. Med hjälp av denna information beräknas kostnaden att kyla bort solinstrålningen till 460 kr per år. Inköpspriset för luftvärmepumpen är 20 350 kronor. Priset för en persienn är 10 000 kronor. Författaren rekommenderar luftvärmepumpen för nedkylning av byggnaden i detta fall. / How much heat radiates in through windows? It depends on their direction and the size of them. Two methods to prevent a temperature increase are compared in this report. The first method is by removing the heat with a heat pump, which is compared to the second method that involves automatic blinds. The cost to run the heat pump to remove the heat is calculated in MATLAB. The control of the blinds in this case is with KNX. The communication is done through a bus. ETS5 was used to program the blinds. The calculations assume that the size of the southern windows are 8 m², the east-facing windows are 5 m², and the west-facing windows are 4 m². The added heat is assumed to be 10 000 kWh throughout the year. The calculations does not take outside temperature into account. Data for the amount of sunshine is taken from SMHI. With the help of this information the cost of cooling the radiated heat is calculated to 460 swedish crowns per year. The cost of buying the heat pump is 20 350 swedish crowns. One blind costs 10 000 swedish crowns to buy. The author recommends the heat pump to cool the building in this case.
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Vysokorychlostní sítě v domácnosti / High-speed Networks in HouseholdRosenberg, Michal January 2012 (has links)
The master thesis discusses about the relation between high-speed networks and intelligent system installation features and possibilities of this mutual interaction. Furthermore principles of KNX bus tunneling through IP networks are theoretically analyzed (KNXnet/IP). Practical use of implements KNXnet/IP shows real elements on the test panel. The control is realized by KNX@Home in the Ubuntu environment. Simulation of the real state tunneling KNX bus represent model in Opnet Modeler, which shows how the delays may change due to network load.
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Demonstrační úlohy s KNX/EIB / Demonstration examples with KNX/EIBKřivka, Martin January 2012 (has links)
This diploma thesis was created as a support for Building automation course, at the Institute of Automation and Computer Science of the Faculty of Mechanical Engineering at Brno University of Technology. The aim of this diploma thesis is to get acquainted with elements of intelligent electrical ABB i-bus® KNX/EIB and create tasks suitable for laboratory teaching. Subsequently, use the communication module DataLab IF/EIB to connect KNX/EIB with Control Web system and create in this environment visualization of the status of these devices. Furthermore, using the communication module CM EIB/KNX to connect KNX/EIB with the programmable controller LOGO! and create additional laboratory task.
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Aplinkos valdymo sistema neįgaliesiems / Environment Control System for the DisabledSerafinavičius, Paulius 10 June 2004 (has links)
A design of a Smart Home system which is expected to help people with physical and speech impairments to control their living environment is given there. It was done during Eureka project E!2707 (PACS). Hardware and software analysis, algorithms and methods, usability test of developed system user interface are given there. A review of similar systems designed for disabled was done. Analysis of user requirements, detailed analysis and implementation ways of user interface are given there. The most popular building automation standards were analyzed and the most suitable one – Konnex association standard KNX was selected. Three different system block diagrams, software algorithm and its implementation methods were given and analyzed. A model of the user interface was created. An investigation was made. The goal of it is to evaluate the main user interface parameter – activation time which makes a better usability of the whole system.
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Projektování datových rozvodů inteligentních sítí / Designing intelligent data distribution networksStojaspal, Martin January 2013 (has links)
Master thesis on topic Design of intelligent data distribution network is focused on the design of KNX bus system. The theoretical part is focused on problematic of KNX technology and on the rules, regulations and forms which must correct project documentation contain. The practical part is focused on creation of complete design of project documentation KNX bus system. In this thesis is basically shown how project documentation should look like.
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Vzdálené ovládání a vizualizace sběrnicových systémů KNX a DALI pro řízení budov / Remote control and visualization of bus-systems KNX and DALI for building managementHolub, Jiří January 2014 (has links)
The thesis is focused on bus systems and their control by GUI. Basic energy management principles and the mostly known bus systems are analysed in the first – theoretical part of the paper. The theoretical part is then focused on software tool ETS 4, which is used for activation of system installation KNX. Software tool SmartServer, which is used for communication between bus system KNX and web interface, is described at the end of the first theoretical part. Two laboratory boards assembled of KNX and DALI parts were constructed in the second – practical part. Three laboratory tasks, which are prepared so they are related to theoretical description in previous part, were submitted in next step. Aim of the first task is to introduce basics of the board and PriOn interface. The second task is focused on DALI components and temperature control with PriOn regulating device. Creating of basic visualization and controlling of the board with SmartServer is described in the last task.
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Výukový panel pro inteligentní instalační systém ABB i-bus® KNX/EIB / Intelligent installation system ABB i-bus® KNX/EIB Education boardMichalčík, Jiří January 2011 (has links)
The thesis deals with the topic of intelligent installation systems in the context of non-industrial automation. The first part discusses the KNX technology as well as realization of educational board demonstrating the i-bus® intelligent installation by ABB, designed according to KNX/EIB standard. Text further explains the specifics of board elements in detail. Second part is dedicated to created tutorial tasks, targeted to be used by students. These tasks are focused on the basic board element properties and their collaboration.
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On Vulnerabilities of Building Automation SystemsCash, Michael 01 January 2024 (has links) (PDF)
Building automation systems (BAS) have become more commonplace in personal and commercial environments in recent years. They provide many functions for comfort and ease of use, from automating room temperature and shading, to monitoring equipment data and status. Even though their convenience is beneficial, their security has become an increased concerned in recent years. This research shows an extensive study on building automation systems and identifies vulnerabilities in some of the most common building communication protocols, BACnet and KNX. First, we explore the BACnet protocol, exploring its Standard BACnet objects and properties. An automation tool is designed and implemented to identify BACnet devices using their IP addresses and enumerate both standard and vendor-defined BACnet objects as well as their standard properties. This tool is applied to a testbed real-world BAS system on a university campus and successfully validates the tool's effectiveness. We present a false data injection attack on a KNX system using a man-in-the-middle (MITM) attack. A BAS is modeled to analyze the impact of false data injections to a system in terms of energy cost. A machine learning (ML) based detection strategy is designed to detect the false data injection attack using a novel feature based on the Jensen Shannon Divergence (JSD), measuring the similarity of the KNX telegram's interarrival time distributions with attack and with no attack. Real-world experiments are performed to validate the presented false data injection attack and the ML detection strategy. Our results show an increase in overall energy cost during a false data injection attack. Of the examined ML models, the Support Vector Machine (SVM) classifier achieved the best results with 100% detection rate using our proposed JSD similarity feature vector compared to more traditional features. Lastly, we introduce a simplified real-world BAS system, consisting of both BACnet and KNX equipment, and spanning over multiple building environments. We analyze the vulnerabilities of the BAS system at each level and component, introducing several attack scenarios which may occur and affect the system.
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Analyse de la robustesse et des améliorations potentielles du protocole RadioFréquences Sub-GHz KNX utilisé pour l’IoT domotique / Radiofrequency robustness and improvements analysis of the sub-GHz standard KNX used for IoT dedicated to Home & Building AutomationOudji, Salma 12 December 2016 (has links)
Cette thèse aborde la performance du protocole KNX-RF utilisé dans les applications domotiques en termes de robustesse Radio Fréquences dans un environnement multi-protocoles potentiellement sujet aux interférences. Dans ces travaux, le but est d’évaluer les problématiques d’interférences rencontrées par KNX-RF en utilisant des modèles de simulation qui permettraient d’augmenter à sa fiabilité radio. Ainsi, un premier modèle a été développé sur MATLAB/Simulink et a permis de connaître les performances et les limitations de ce protocole au niveau de la couche physique dans un scénario d’interférence se produisant à l’intérieur d’une box/gateway domotique multi-protocoles. Ces simulations ont été complétées par des essais expérimentaux sur le terrain qui ont permis de vérifier les résultats obtenus. Un deuxième modèle a été développé pour évaluer les mécanismes de la couche MAC, cette fois-ci, grâce au simulateur OMNet++/MiXiM. Ce modèle reprend tous les mécanismes d’accès au canal et d’agilité en fréquence spécifiés par la norme KNX. Un scénario de collisions de trames a été simulé et plusieurs propositions d’améliorations sont discutées dans ce manuscrit. Les modèles développés permettent d’analyser et de prédire en avance de phase le comportement de KNX-RF dans un environnement radio contraignant. / This thesis addresses the performance of the KNX-RF protocol used for home automation applications in terms of radiofrequency robustness in a multi-protocol environment that is potentially subject to interferences. In this work, the aim is to assess the interference problems encountered by KNX-RF using simulation models that would increase its RF reliability. Thus, a first model was developed on MATLAB / Simulink and allowed to investigate the performance and limitations of this protocol at its physical layer in an interference scenario occurring inside a multiprotocol home and building automation box/gateway. These simulations were followed by field experimental tests in an indoor environment (house) to verify the results. A second model was developed to evaluate the MAC layer mechanisms of KNX-RF through the discrete event simulator OMNeT ++/Mixim. This model includes all the mechanisms of channel access and frequency agility specified by KNX-RF standard. A frame collision scenario was simulated and several improvement proposals are discussed in this manuscript. The developed models can be used to analyze and predict in advance phase the behavior of KNX-RF in a radio-constrained environment.
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