Base Knowledge
Nothing to report.
Teaching Methodologies
Theoretical classes: expository sessions with interaction between teacher and students. Case-studies presentation.
Practical classes:
– sessions of information research, followed by analysis and synthesis. Laboratory work, work group and applied research.
– Practical applications through the configuration of modules used in building automation (cabled or wireless/IoT based).
Learning Results
The main aims of this course unit are: To familiarize students with the concepts in design, automatization and supervision of buildings in residential
and commercial sectors.
At the end of this course unit the learner is expected to be able:
– To know how to develop projects of automation in buildings, using cabled ou wireless and IoT solutions.
– To choose the best options and solutions for a rational use of energy in buildings and increase the occupants comfort and commodity.
Program
Concepts and Objectives of Smart Buildings and Home Automation.
Smart Buildings and Domotics/Inmotics.
Development of Automation Systems for Buildings in Terms of Technology and Systems Architecture.
Techniques of Energy Management in Buildings.
Introduction to Integrated Project of Buildings.
Solutions for Applications in Home Automation and Smart Buildings: The X10 Technology; The Active Home
Pro Software;
The KNX/EIB Technology:
– Applying KNX/EIB Technology;
– Addressing in the KNX/EIB Technology;
– the ETS programing software
Services in Smart Buildings.
Structured Cabling Projects.
Open Systems.
Present and Future of Intelligent Buildings.
Implementation of small projects recurring to KNX/X10 technology.
IoT and Buildings
– Introduction to the IoT (Internet of Things);
– Main protocols used in IoT: BLE, WiFi, z-wave, zigbee, LoRaWAN and Matter;
-Implementation of a project of a smart building using LoRaWAN technology.
Curricular Unit Teachers
António Luis Ferreira MarquesGrading Methods
Theoretical component:
- Written exam - 10 points (minimum 50%);
Laboratory component:
Wired Networks - Home Automation Implementation Project Based on a KNX Network – 4 points
Wireless Networks
* Small-scale home automation implementation project using a DOMUS40 network – 1 point
* Design and implementation project of smart building system for DEE-ISEC (collaborative project) – 3.5 points
* Monograph - state-of-the-art technology for home automation systems or smart buildings – 1.5 points
Attendance at laboratory classes is mandatory (max. absences = 2)
Internship(s)
NAO
Bibliography
KNX Association. (2022). KNX Basic Course (1st revised version). KNX Association.
KNX Association. (2023, April). KNX Advanced Course. KNX Association.
Rodriguez Segura, M. A. (2020). The Secrets of KNX: The Ultimate Beginner’s Guide to Master Home and Building Automation. ISBN-13: 979-8648218154.
Tappari, S. (2023). IoT Based Smart Home Automation and Security. LAP LAMBERT Academic Publishing. ISBN-13: 978-6206685265.
Patil, S., & Deore, P. (2024). Wi-Fi Based Home Automation System Over Cloud Using Arduino. Scholars’ Press. ISBN-13: 978-6206770947.
Paetz, C. (2018). Z-Wave Essentials. CreateSpace Independent Publishing Platform. ISBN-13: 978-1718708228.
Daskalov, P. (2016). Ethernet to ZigBee Bridge Automation System: Home Automation Powered by Arduino Programmable Circuit Boards. LAP LAMBERT Academic Publishing. ISBN-13: 978-3659956430.
Hussain, S. (2024). Zigbee Unleashed: The Future of Smart Connectivity: The Zigbee Handbook: Navigating the Smart Home Revolution (English Edition).
Colbach, G. (2023). Bluetooth Tutorial: Design, Protocol and Specifications for BLE – Bluetooth Low Energy 4.0 and Bluetooth 5. ISBN-13: 979-8850475710.
Oner, V. O. (2023). Developing IoT Projects with ESP32: Unlock the Full Potential of ESP32 in IoT Development to Create Production-Grade Smart Devices (2nd ed.). Packt Publishing. ISBN-13: 978-1803237688.
Marques, L. (2024). Slides das Aulas Teóricas.