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3b9f108ee5
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res-v1.1
| Author | SHA1 | Date | |
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| 1de3eb10fc | |||
| a3191fa0b7 | |||
| 4c778e7bc6 | |||
| fd0a354cf9 |
2
.gitmodules
vendored
2
.gitmodules
vendored
@@ -1,6 +1,6 @@
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[submodule "lib/cel-slides-template-2025"]
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path = lib/cel-slides-template-2025
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url = git@gitlab.kit.edu:kit/cel/misc/cel-slides-template-2025.git
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url = ssh://git@100.123.176.93:2222/an.tsouchlos/cel-slides-template-2025.git
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[submodule "lib/cel-thesis"]
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path = lib/cel-thesis
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url = ssh://git@100.123.176.93:2222/an.tsouchlos/cel-thesis.git
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3
Makefile
3
Makefile
@@ -4,7 +4,8 @@ DOCUMENTS := $(patsubst src/%/main.tex,build/%.pdf,$(wildcard src/*/main.tex))
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all: $(DOCUMENTS)
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build/%.pdf: src/%/main.tex build/prepared
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latexmk $<
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TEXINPUTS=./lib/cel-slides-template-2025:$(dir $<):$$TEXINPUTS \
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latexmk -outdir=build/$* $<
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mv build/main.pdf $@
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build/prepared:
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Submodule lib/cel-slides-template-2025 updated: 3e5094ffdc...fd978f4227
@@ -64,8 +64,7 @@
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\Ac{qec} is a field of research combining quantum mechanics and
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``classical'' communications engineering.
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This chapter provides the relevant theoretical background on both of
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these topics and subsequently, building on top of this, introduces the
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the fundamentals of \ac{qec}.
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these topics and subsequently introduces the the fundamentals of \ac{qec}.
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% TODO: Is Quantum Information Theory the correct title here? Would someth
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@@ -128,7 +128,7 @@ One approach is to use the \ac{ml} criterion \cite[Sec.
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.
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\end{align*}
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Finally, we differentiate between \textit{soft decision} decoding, where
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$\bm{y} \in \mathbb{R}^n$ and \textit{hard decision} decoding, where
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$\bm{y} \in \mathbb{R}^n$, and \textit{hard decision} decoding, where
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$\bm{y} \in \mathbb{F}_2^n$ \cite[Sec. 1.5.1.3]{ryan_channel_2009}.
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%
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\begin{figure}[h]
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@@ -146,9 +146,9 @@ $\bm{y} \in \mathbb{F}_2^n$ \cite[Sec. 1.5.1.3]{ryan_channel_2009}.
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]
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\node (in) {};
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\node[box, right=of in] (enc) {Encoder};
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\node[box, minimum width=23mm, right=of enc] (mod) {Modulator};
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\node[box, minimum width=25mm, right=of enc] (mod) {Modulator};
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\node[box, below right=of mod] (cha) {Channel};
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\node[box, minimum width=23mm, below left=of cha] (dem) {Demodulator};
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\node[box, minimum width=25mm, below left=of cha] (dem) {Demodulator};
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\node[box, left=of dem] (dec) {Decoder};
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\node[left=of dec] (out) {};
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@@ -173,6 +173,7 @@ $\bm{y} \in \mathbb{F}_2^n$ \cite[Sec. 1.5.1.3]{ryan_channel_2009}.
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\red{
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\begin{itemize}
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\item Use \cite[Ch. 5]{ryan_channel_2009} as a reference
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\item Core concept (Large $n$ with manageable complexity)
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\item Tanner graphs, VNs and CNs
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\end{itemize}
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