Study, design and simulation of indoor and low power wireless network

Postgraduate Thesis uoadl:2972025 92 Read counter

Unit:
Κατεύθυνση Ηλεκτρονική και Ραδιοηλεκτρολογία (Ρ/Η)
Library of the School of Science
Deposit date:
2022-01-31
Year:
2022
Author:
Davit Apostolos
Supervisors info:
Βουγιούκας Δημοσθένης, Καθηγητής, Τμήμα Μηχανικών Πληροφοριακών και
Επικοινωνιακών Συστημάτων, Πανεπιστήμιο Αιγαίου (κύριος επιβλέπων)
Βαρουτάς Δημήτριος, Αναπλ. Καθηγητής, Τμήμα Πληροφορικής &
Τηλεπικοινωνιών, ΕΚΠΑ (μέλος επιτροπής)
Τσίπουρας Αριστείδης, ΕΔΙΠ, Τμήμα Πληροφορικής & Τηλεπικοινωνιών, ΕΚΠΑ
(μέλος επιτροπής)
Original Title:
Μελέτη, σχεδίαση και προσομοίωση ασύρματου δικτύου εσωτερικού χώρου και χαμηλής ενέργειας
Languages:
Greek
Translated title:
Study, design and simulation of indoor and low power wireless network
Summary:
The growing demand for mobile communication in indoor environments such as an office building, a shopping centre or a vehicle, requires more efficient use of radio spectrum and development of wireless communication networks in order to achieve better coverage, improved performance and high quality services. In this thesis, the most widely used models for the design of wireless systems in indoor environments are studied. WinProp (WallMan and ProMan) and TruNET Wireless software are used for the electromagnetic propagation modelling. In particular, in WinProp the propagation prediction is performed, in an indoor environment, using the empirical models One-Slope, Motley-Keenan, COST Multi-Wall and Dominant Path, while in TruNET the propagation prediction and interference calculation between different systems are performed (Bluetooth Low Energy and IEEE 802.11), operating at the same frequencies, using the Ray Tracing technique. Finally, the conclusions arise about the usefulness of the propagation models usage in the design of wireless system and their dependence of the environment in which they are located.
Main subject category:
Science
Keywords:
Low Power, Short Range, IEEE 802.15.4, Bluetooth, Radio propagation, propagation models, Ray Tracing method, coexistence
Index:
No
Number of index pages:
0
Contains images:
Yes
Number of references:
15
Number of pages:
78
File:
File access is restricted only to the intranet of UoA.

Μελέτη, Σχεδίαση και Προσομοίωση Ασύρματου Δικτύου Εσωτερικού Χώρου και Χαμηλής Ενέργειας.pdf
5 MB
File access is restricted only to the intranet of UoA.