Course detail
Wireless Sensor Networks
FEKT-MSSYAcad. year: 2017/2018
The course aims to introduce the issues arising during development and deployment of the wireless sensor networks for the monitoring applications. In order to show the real bahaviour of the sensor hardware components, the training is divided into the Microprocessor (MCU ) and Wireless part. The prepared tutorials are tightly linked with specific WSN hardware, which is provided to the audience. In the MCU tutorials, the main principles of operations with the 8-bit AVR microcontroller are introduced, while in the Wireless tutorials, the audience learn how to develop WSN solution based on the Zigbee PRO specification.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Technology WSN
WSN node architecture
AVR microprocessors
Registers
2: Timers
Interrupts
LCD displays
3: Serial communication
USART
SPI
I2C
4: Senzors
A/D Convertors
5: Basics of Wireless Transmissions
Physical Layer defined by IEEE 802.15.4
Network Coexistence
Rádio chip AT86RF230
6: Link layer defined by IEEE 802.15.4
CCA(Clear Channel Assesment)
Access Method CSMA/CA
Superframes
7: Energy Consumption
8: Zigbee protocol
Network layer and routing
9: Application layer and security
10: Localization od wireless nodes
11: Bluetooth, WiFi, WirelessHART
12: Presentation of companies
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Stojmenovic I., Handbook of Sensor Networks, Wiley,ISBN:13 978-0-471-68472-5, 2005. (EN)
Recommended reading
Classification of course in study plans
- Programme IBEP-V Master's
branch V-IBP , 1 year of study, summer semester, elective specialised
branch V-IBP , 2 year of study, summer semester, elective specialised - Programme EEKR-M Master's
branch M-TIT , 2 year of study, summer semester, elective specialised
- Programme EEKR-CZV lifelong learning
branch EE-FLE , 1 year of study, summer semester, elective specialised
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Nízkoenergetický komunikační standard IEEE 802.15.4 .
3. Zigbee protokol a jeho aplikace.
4. Struktura senzorového bezdrátového uzlu.
5. Mikrokontroléry pro sítě WSN (Atmega1281).
6. Metody snížení energetické spotřeby v sítích WSN.
7. Směrování řízené polohou jednotky nebo obsahem dat.
8. Přímý versus hierarchický sběr dat a clusterizace sítě.
9. Lokalizace komunikačních jednotek.
10. Protokol IPv6 v sítích WSN (architektura 6lowPAN).
11. Synchronizace času v rádiových sítích.
12. Zabezpečení přenosu naměřených dat.
13. Údržba rádiové sítě a definice optimální Mesh topologie.
Laboratory exercise
Teacher / Lecturer
Syllabus
2. Analýza Zigbee komunikace. (Daintree Sensor Network Analyzátor)
3. Určení přesnosti GPS lokalizace v sítích WSN. (venkovní měření)
4. Vytvoření mikrofonového pole s bezdrátovými uzly IRIS 2,4 GHz.
5. Mikrokontrolér Atmega1281 a ovládání portů.
6. Nasazení sítě WSN pro střežení objektu. (přenos obrazu a detekce pohybu)