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authorNao Pross <np@0hm.ch>2021-10-13 14:40:43 +0200
committerNao Pross <np@0hm.ch>2021-10-13 14:40:43 +0200
commitf3940929549170ecd33142f2578e0137fb31a0c1 (patch)
tree76ce6d70b11598b384f091fb37cfe4a0fa08a137 /doc
parentMerge branch 'master' of github.com:NaoPross/Fading (diff)
downloadFading-f3940929549170ecd33142f2578e0137fb31a0c1.tar.gz
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Introduction
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doi = "10.1109/INFCOMW.2010.5466612"
}
+@inproceedings{AntonescuTB17,
+ author = "Antonescu, Bogdan and Moayyed, Miead Tehrani and Basagni, Stefano",
+ booktitle = "2017 IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC)",
+ title = "mmWave channel propagation modeling for V2X communication systems",
+ year = 2017,
+ pages = "1-6",
+ doi = "10.1109/PIMRC.2017.8292718"
+}
+
@book{Griffith,
title = "Introduction to Electrodynamics Fourth Edition",
author = "Griffiths, David J.",
diff --git a/doc/thesis/Fading.pdf b/doc/thesis/Fading.pdf
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-% vim: set ts=2 sw=2 noet:
+% vim: set ts=2 sw=2 noet spell:
\chapter{Theory}
\section{Problem description}
+%% NP: move in introduction?
+Since decades now modern wireless devices have become so ubiquitous and are no longer employed under carefully chosen conditions. Cellphones and IoT devices are carried around by users and thus have to work in environments where reflexions are omnipresent. In order to efficiently develop such devices we need for mathematical models to simulate such environments.
+
+In this chapter we will briefly illustrate some undergraduate level mathematical models employed in modern communication devices.
+
\section{Geometric Model}
\section{Statistical Model}
-%% TODO: write about advantage of statistical model instead of geometric
-%% TODO: review and rewrite notes
+%% TODO: write about advantage of statistical model instead of geometric
\subsection{Continuous time model}