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****************************************** +OS installation +================ The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). For this step, the installation instructions are well described on the Raspberry website @@ -57,7 +59,7 @@ Raspbian GUI settings menu. Failure to carry out this task may cause damage to t :figclass: align-center Virtual Environnement and packages -*********************************************** +================================== All dependencies are specified in requirements.txt @@ -104,12 +106,13 @@ to leave the virtual environment simply type: deactivate -Running thonny on Rapberry Pi -************************************************************************** +Activate virtual environnement on Thonny(Python IDE) (on Rapberry Pi) +====================================================================== +Under developpement -Construction of the measurement board and connection to the Raspberry +Measurement and Injection board and connection to the Raspberry ************************************************************************** Electrical resistivity measurements @@ -194,7 +197,7 @@ place a fuse holder with a 1.5-A fuse for safety purposes. Measurement board installation with Raspberry Pi Current injection -****************** +================= To carry out the electrical resistivity measurement, the first step consists of injecting current into the ground. In our case, a simple 12-V lead-acid battery is used to create an electrical potential difference that results @@ -218,6 +221,13 @@ they remain in the normally closed position. This set-up offers a simple and rob Wiring of the 4-channel relay module board for current injection management +Frist four electrodes resistivity mesurement +============================================ + + +Under construction describe the way vlide the first part of the instruction. +Electrical resistivity measurement on test circuit + Multiplexer implentation ************************* diff --git a/sphinx/build/html/index.html b/sphinx/build/html/index.html index 42278436..b2955553 100644 --- a/sphinx/build/html/index.html +++ b/sphinx/build/html/index.html @@ -190,11 +190,8 @@ <li class="toctree-l1"><a class="reference internal" href="page1.html">OhmPi V 1.01 (limited to 32 electrodes)</a><ul> <li class="toctree-l2"><a class="reference internal" href="page1.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="page1.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="page1.html#os-installation-on-a-raspberry-pi">OS installation on a Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="page1.html#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> -<li class="toctree-l2"><a class="reference internal" href="page1.html#running-thonny-on-rapberry-pi">Running thonny on Rapberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="page1.html#construction-of-the-measurement-board-and-connection-to-the-raspberry">Construction of the measurement board and connection to the Raspberry</a></li> -<li class="toctree-l2"><a class="reference internal" href="page1.html#current-injection">Current injection</a></li> +<li class="toctree-l2"><a class="reference internal" href="page1.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> +<li class="toctree-l2"><a class="reference internal" href="page1.html#measurement-and-injection-board-and-connection-to-the-raspberry">Measurement and Injection board and connection to the Raspberry</a></li> <li class="toctree-l2"><a class="reference internal" href="page1.html#multiplexer-implentation">Multiplexer implentation</a></li> <li class="toctree-l2"><a class="reference internal" href="page1.html#electrode-connection">Electrode connection</a></li> <li class="toctree-l2"><a class="reference internal" href="page1.html#operating-instruction">Operating instruction</a></li> diff --git a/sphinx/build/html/page1.html b/sphinx/build/html/page1.html index 0ad9dbe8..241d7a63 100644 --- a/sphinx/build/html/page1.html +++ b/sphinx/build/html/page1.html @@ -86,15 +86,19 @@ <li class="toctree-l1 current"><a class="current reference internal" href="#">OhmPi V 1.01 (limited to 32 electrodes)</a><ul> <li class="toctree-l2"><a class="reference internal" href="#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="#os-installation-on-a-raspberry-pi">OS installation on a Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> -<li class="toctree-l2"><a class="reference internal" href="#running-thonny-on-rapberry-pi">Running thonny on Rapberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="#construction-of-the-measurement-board-and-connection-to-the-raspberry">Construction of the measurement board and connection to the Raspberry</a><ul> +<li class="toctree-l2"><a class="reference internal" href="#raspberry-pi-configuration">Raspberry Pi configuration</a><ul> +<li class="toctree-l3"><a class="reference internal" href="#os-installation">OS installation</a></li> +<li class="toctree-l3"><a class="reference internal" href="#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> +<li class="toctree-l3"><a class="reference internal" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi">Activate virtual environnement on Thonny(Python IDE) (on Rapberry Pi)</a></li> +</ul> +</li> +<li class="toctree-l2"><a class="reference internal" href="#measurement-and-injection-board-and-connection-to-the-raspberry">Measurement and Injection board and connection to the Raspberry</a><ul> <li class="toctree-l3"><a class="reference internal" href="#electrical-resistivity-measurements">Electrical resistivity measurements</a></li> <li class="toctree-l3"><a class="reference internal" href="#implementation">Implementation</a></li> +<li class="toctree-l3"><a class="reference internal" href="#current-injection">Current injection</a></li> +<li class="toctree-l3"><a class="reference internal" href="#frist-four-electrodes-resistivity-mesurement">Frist four electrodes resistivity mesurement</a></li> </ul> </li> -<li class="toctree-l2"><a class="reference internal" href="#current-injection">Current injection</a></li> <li class="toctree-l2"><a class="reference internal" href="#multiplexer-implentation">Multiplexer implentation</a></li> <li class="toctree-l2"><a class="reference internal" href="#electrode-connection">Electrode connection</a></li> <li class="toctree-l2"><a class="reference internal" href="#operating-instruction">Operating instruction</a><ul> @@ -235,8 +239,10 @@ control system</p></td> </tbody> </table> </div> -<div class="section" id="os-installation-on-a-raspberry-pi"> -<h2>OS installation on a Raspberry Pi<a class="headerlink" href="#os-installation-on-a-raspberry-pi" title="Permalink to this headline">¶</a></h2> +<div class="section" id="raspberry-pi-configuration"> +<h2>Raspberry Pi configuration<a class="headerlink" href="#raspberry-pi-configuration" title="Permalink to this headline">¶</a></h2> +<div class="section" id="os-installation"> +<h3>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h3> <p>The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). For this step, the installation instructions are well described on the Raspberry website <a class="reference external" href="https://www.raspberrypi.org/help/noobs-setup/2/">https://www.raspberrypi.org/help/noobs-setup/2/</a>). The authors recommend installing the latest @@ -252,7 +258,7 @@ Raspbian GUI settings menu. Failure to carry out this task may cause damage to t </div> </div> <div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> +<h3>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h3> <p>All dependencies are specified in requirements.txt</p> <div class="admonition note"> <p class="admonition-title">Note</p> @@ -285,11 +291,13 @@ to leave the virtual environment simply type:</p> </pre></div> </div> </div> -<div class="section" id="running-thonny-on-rapberry-pi"> -<h2>Running thonny on Rapberry Pi<a class="headerlink" href="#running-thonny-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> +<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> +<h3>Activate virtual environnement on Thonny(Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h3> +<p>Under developpement</p> +</div> </div> -<div class="section" id="construction-of-the-measurement-board-and-connection-to-the-raspberry"> -<h2>Construction of the measurement board and connection to the Raspberry<a class="headerlink" href="#construction-of-the-measurement-board-and-connection-to-the-raspberry" title="Permalink to this headline">¶</a></h2> +<div class="section" id="measurement-and-injection-board-and-connection-to-the-raspberry"> +<h2>Measurement and Injection board and connection to the Raspberry<a class="headerlink" href="#measurement-and-injection-board-and-connection-to-the-raspberry" title="Permalink to this headline">¶</a></h2> <div class="section" id="electrical-resistivity-measurements"> <h3>Electrical resistivity measurements<a class="headerlink" href="#electrical-resistivity-measurements" title="Permalink to this headline">¶</a></h3> <p>To measure electrical resistivity with Raspberry Pi, an ADS1115 was introduced, as proposed by Florsch [7]. The ADS1115 @@ -353,9 +361,8 @@ place a fuse holder with a 1.5-A fuse for safety purposes.</p> <p class="caption"><span class="caption-text">Measurement board installation with Raspberry Pi</span><a class="headerlink" href="#id3" title="Permalink to this image">¶</a></p> </div> </div> -</div> <div class="section" id="current-injection"> -<h2>Current injection<a class="headerlink" href="#current-injection" title="Permalink to this headline">¶</a></h2> +<h3>Current injection<a class="headerlink" href="#current-injection" title="Permalink to this headline">¶</a></h3> <p>To carry out the electrical resistivity measurement, the first step consists of injecting current into the ground. In our case, a simple 12-V lead-acid battery is used to create an electrical potential difference that results in current circulating into the ground. The current is injected through electrodes A and B (see Fig. 2). This @@ -372,6 +379,12 @@ they remain in the normally closed position. This set-up offers a simple and rob <p class="caption"><span class="caption-text">Wiring of the 4-channel relay module board for current injection management</span><a class="headerlink" href="#id4" title="Permalink to this image">¶</a></p> </div> </div> +<div class="section" id="frist-four-electrodes-resistivity-mesurement"> +<h3>Frist four electrodes resistivity mesurement<a class="headerlink" href="#frist-four-electrodes-resistivity-mesurement" title="Permalink to this headline">¶</a></h3> +<p>Under construction describe the way vlide the first part of the instruction. +Electrical resistivity measurement on test circuit</p> +</div> +</div> <div class="section" id="multiplexer-implentation"> <h2>Multiplexer implentation<a class="headerlink" href="#multiplexer-implentation" title="Permalink to this headline">¶</a></h2> <p>The resistivity measurement is conducted on four terminals (A, B, M and N). The user could perform each measurement diff --git a/sphinx/build/html/searchindex.js b/sphinx/build/html/searchindex.js index 54f6fd7e..1a00bd3e 100644 --- a/sphinx/build/html/searchindex.js +++ b/sphinx/build/html/searchindex.js @@ -1 +1 @@ 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|Resolution |O.O1 |ohm | +-------------------------------+--------------------+-----------+ -OS installation on a Raspberry Pi +Raspberry Pi configuration ****************************************** +OS installation +================ The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). For this step, the installation instructions are well described on the Raspberry website @@ -57,7 +59,7 @@ Raspbian GUI settings menu. Failure to carry out this task may cause damage to t :figclass: align-center Virtual Environnement and packages -*********************************************** +================================== All dependencies are specified in requirements.txt @@ -104,12 +106,13 @@ to leave the virtual environment simply type: deactivate -Running thonny on Rapberry Pi -************************************************************************** +Activate virtual environnement on Thonny(Python IDE) (on Rapberry Pi) +====================================================================== +Under developpement -Construction of the measurement board and connection to the Raspberry +Measurement and Injection board and connection to the Raspberry ************************************************************************** Electrical resistivity measurements @@ -194,7 +197,7 @@ place a fuse holder with a 1.5-A fuse for safety purposes. Measurement board installation with Raspberry Pi Current injection -****************** +================= To carry out the electrical resistivity measurement, the first step consists of injecting current into the ground. In our case, a simple 12-V lead-acid battery is used to create an electrical potential difference that results @@ -218,6 +221,13 @@ they remain in the normally closed position. This set-up offers a simple and rob Wiring of the 4-channel relay module board for current injection management +Frist four electrodes resistivity mesurement +============================================ + + +Under construction describe the way vlide the first part of the instruction. +Electrical resistivity measurement on test circuit + Multiplexer implentation ************************* -- GitLab