update 20180713

This commit is contained in:
acereca 2018-07-13 20:07:20 +02:00
parent cad9bd26f2
commit c20b3fed53
13 changed files with 619 additions and 18 deletions

1
.gitignore vendored
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@ -26,6 +26,7 @@ datasheets/
# minted
_minted-thesis/
*.listing
# links
data/afshome/*

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@ -0,0 +1 @@
../afshome/clean_jenk/DBG_README.md

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@ -104,7 +104,7 @@ The secondary plots confirm the
\section{after Calibration}
\inputminted{yaml}{pitstop/pitdb.yaml}
\minty{yaml}{./pitstop/pitdb.yaml}
\subsection{Voltages}

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@ -29,15 +29,14 @@ Using the script any one of the following Values can be tested and calibrated:
\subsubsection{Setting up the Test Environment}
The simplest way to setup your environment consists of cloning the PItSTOP Project onto your Client:
\begin{minted}{bash}
\begin{mintylst}{bash}
$ git clone https://url.to.pitstop
\end{minted}
then substituting the \verb|rsync| targeti:
\begin{minted}{makefile}
# makefile
\end{mintylst}
then substituting the \verb|rsync| target:
\begin{mintylst}[makefile]{makefile}
all:
rsync --progress ./*.py /remote.url/
\end{minted}
\end{mintylst}
, to be your server (should be a RaspberyyPi connected to the PowerIt)
@ -45,15 +44,15 @@ then substituting the \verb|rsync| targeti:
Runnig the test requires the following commands
\\
Serverside:
\begin{minted}{bash}
\begin{mintylst}{bash}
$ python server.py
\end{minted}
\end{mintylst}
Clientside:
\begin{minted}{bash}
\begin{mintylst}{bash}
$ python aggregator.py
\end{minted}
\end{mintylst}
Now just following the instructions given, the selected test can be run:
\begin{minted}{text}
\begin{mintylst}{text}
Setting up calibration test for {}
Please be sure to:
- connect the {} to the RaspberryPi running server.py.
@ -63,7 +62,7 @@ Now just following the instructions given, the selected test can be run:
Continue (y/N): y
What is the Name given to the connected PowerIt? [Bxx]: B05
\end{minted}
\end{mintylst}
\section{Regulation}

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@ -17,7 +17,7 @@ The circuits for measuring input Voltage and current are the most complex, becau
\begin{enumerate}
\item divide our input voltage into a usable potential range
\item decouple the input from our signal potential
\item operate within the Chips possible Voltage range of 0-3.3V
\item operate within the Chips possible Voltage range of 0 -- 3.3V
\end{enumerate}
The already implemented Cicuit can be seen in figure \ref{mon48v}. It consists of a 1:240 Voltage Divider, a full differential operational amplifier taking in the ~200mV (nominal), and amplifying it by a factor of 8 ($r_\text{diffOpAmp}$). It is decoupling the input and output voltages, so our 48V and 3.3V circuit parts are electricly insulated. The remaining operational amplifier provides futher amplification by a factor of 1.1 ($r_\text{OpAmp}$)

@ -1 +1 @@
Subproject commit 41218559d79c2501c58c529ff50ba8b03b4dd39f
Subproject commit edf878b464259cca0d4daef9badb21e79004941b

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@ -3,15 +3,42 @@
\input{tikz/tikzpreamble.tex}
\usepackage{titling}
\usepackage{minted}
\usepackage{xcolor}
%\definecolor{mintedbg}{HTML}{282c34}
\definecolor{mintedbg}{HTML}{ffffff}
\usepackage[hidelinks]{hyperref}
\usepackage{tcolorbox}
\tcbuselibrary{listings, minted, skins}
\newtcbinputlisting{\minty}[3][]{%
enhanced,
listing engine=minted,
colback=mintedbg,
colframe=myteal,
boxrule=.25mm,
listing only,
minted language=#2,
minted style=pastie,
listing file={#3},
title={#1}
}
\newtcblisting{mintylst}[2][]{%
enhanced,
listing engine=minted,
colback=mintedbg,
colframe=myteal,
boxrule=.25mm,
listing only,
minted language=#2,
minted style=pastie,
title={#1}
}
\usepackage{enumitem,amssymb}
\usepackage{amsmath}
\usepackage{graphicx}
\usepackage{svg}
\usepackage{pdflscape}
\usepackage{titlesec}
\definecolor{myteal}{HTML}{228c9c}
%\DeclareTColorBox{blockbox}{ O{width=\textwidth} }{boxrule=0mm, colframe=myteal, valign lower=bottom, on line, lower separated=false, height=.6\textheight, #1}

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@ -8,8 +8,12 @@
\predate{\par\large\centering}
\postdate{\par\vspace{3cm}}
\titleformat{\chapter}{\bfseries\huge\color{myteal}}{\thechapter}{.5em}{}
\titleformat*{\section}{\bfseries\Large\color{myteal}}
\titleformat*{\subsection}{\bfseries\large\color{myteal}}
\author{Patrick Nisblé}
\title{Calibration and Regulation of BrainScaleS' PowerIt Subsystems}
\title{\color{myteal}Calibration and Regulation of BrainScaleS' PowerIt Subsystems}
\begin{document}
\maketitle
\thispagestyle{empty}
@ -18,6 +22,7 @@
Monitoring System status and regulation parameters within a complex System such as BrainScaleS, provides multiple critical points, which in case of misbehaviour can result in problems within the complete system. To reduce the eroneous data created within BarainScaleS, the PowerIt Board, one of its submodules, was upgraded and received a software ovehaul, containing calibration for the on board measurements and regultion capability for its most critical output terminal.
\end{abstract}
\setcounter{tocdepth}{1}
\tableofcontents
\include{parts/intro}
\include{parts/theory}

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@ -1,4 +1,4 @@
\documentclass[]{standalone}
\documentclass[convert={outfile=\jobname.svg}]{standalone}
\input{./tikzpreamble}
\begin{document}

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@ -5,7 +5,11 @@
%\usepackage{cm}
\usepackage[T1]{fontenc}
\renewcommand*\familydefault{\sfdefault}
\renewcommand*{\ttdefault}{qcr}
\usepackage{sectsty}
\allsectionsfont{ \sffamily}
%\usepackage{fontspec}
%\setmonofont{Source Code Pro for Powerline}