11318 modules
Page 1117
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ELEC6219 2025-26
Wireless and Mobile Networks
The module consists of the following 8 components:
1. Introduction;
2. Data link layer;
3. Medium access control sublayer;
4. Network layer;
5. Queueing theory and queueing models;
6. Cellular wireless networks;
7. Wireless local area networks;
8. Resource allocation in OFDMA systems. -
ELEC3204 2027-28
Wireless and Optical Communications
This module introduces both the wireless and optical propagation environments, the modelling of the corresponding channels as well as their implications on the design and architecture of wireless and optical communications systems. The basic principles of digital transmission in both wireless and optical communications are considered, including the techniques of enhancing the reliability of wireless and optical systems. The principles of spread-spectrum communications and that of spread-spectrum based code-division multiple-access (CDMA) are explored. Furthermore, the fundamentals of broadband multicarrer communications and orthogonal frequency-division multiplexing (OFDM) as well as their implementation challenges are introduced. -
ELEC3204 2029-30
Wireless and Optical Communications
This module introduces both the wireless and optical propagation environments, the modelling of the corresponding channels as well as their implications on the design and architecture of wireless and optical communications systems. The basic principles of digital transmission in both wireless and optical communications are considered, including the techniques of enhancing the reliability of wireless and optical systems. The principles of spread-spectrum communications and that of spread-spectrum based code-division multiple-access (CDMA) are explored. Furthermore, the fundamentals of broadband multicarrer communications and orthogonal frequency-division multiplexing (OFDM) as well as their implementation challenges are introduced. -
ELEC3204 2028-29
Wireless and Optical Communications
This module introduces both the wireless and optical propagation environments, the modelling of the corresponding channels as well as their implications on the design and architecture of wireless and optical communications systems. The basic principles of digital transmission in both wireless and optical communications are considered, including the techniques of enhancing the reliability of wireless and optical systems. The principles of spread-spectrum communications and that of spread-spectrum based code-division multiple-access (CDMA) are explored. Furthermore, the fundamentals of broadband multicarrer communications and orthogonal frequency-division multiplexing (OFDM) as well as their implementation challenges are introduced. -
ELEC6245 2025-26
Wireless Networks
This course is intended to give students an outline of how wireless communication and computer networks work "above the physical layer". This includes the interoperability of wireless networks such as WiMax/GPRS and WiFi to provide WiFi on trains etc. How wireless sensor networks gather and report physical parameters including body sensor networks. We also look at the evolution of cell phone networks from 2G to 5G and beyond. -
ELEC6245 2029-30
Wireless Networks
This course is intended to give students an outline of how wireless communication and computer networks work "above the physical layer". This includes the interoperability of wireless networks such as WiMax/GPRS and WiFi to provide WiFi on trains etc. How wireless sensor networks gather and report physical parameters including body sensor networks. We also look at the evolution of cell phone networks from 2G to 5G and beyond. -
ELEC6245 2026-27
Wireless Networks
This course is intended to give students an outline of how wireless communication and computer networks work "above the physical layer". This includes the interoperability of wireless networks such as WiMax/GPRS and WiFi to provide WiFi on trains etc. How wireless sensor networks gather and report physical parameters including body sensor networks. We also look at the evolution of cell phone networks from 2G to 5G and beyond. -
ELEC6245 2030-31
Wireless Networks
This course is intended to give students an outline of how wireless communication and computer networks work "above the physical layer". This includes the interoperability of wireless networks such as WiMax/GPRS and WiFi to provide WiFi on trains etc. How wireless sensor networks gather and report physical parameters including body sensor networks. We also look at the evolution of cell phone networks from 2G to 5G and beyond. -
ELEC6245 2028-29
Wireless Networks
This course is intended to give students an outline of how wireless communication and computer networks work "above the physical layer". This includes the interoperability of wireless networks such as WiMax/GPRS and WiFi to provide WiFi on trains etc. How wireless sensor networks gather and report physical parameters including body sensor networks. We also look at the evolution of cell phone networks from 2G to 5G and beyond. -
ELEC6217 2031-32
Wireless Transceiver Design and Implementation
This course introduces the principles and techniques needed to design a wireless transceiver. We will cover the process needed to take the main principles of digital communications such as digital modulation and detection. Through lectures and coursework, we cover the engineering trade-offs needed to design a transceiver starting from a detailed performance specification.
The module uses Matlab as a specialist computation/simulation tool. Additionally, Labview is also introduced and used in this module.