I am encountering a strange problem.1>I open visual studio 20122> I open matlab 2014a (32 bit)3> I try "Attach to process" and put the matlab process from the list displayed in the process window that comes up.

My development machine is running Windows 8.1 x64 , NI LabVIEW 2014 with NI Veristand , MATLAB 2014a and Visual Studio 2013. Those are university requirements so I can't uninstall any of them for the time being.


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I have followed your steps and successfully installed MatLab via SCCM. Thanks for all your work on this. I do, however, have an issue with app detection after the installation is complete. The software always shows as failed in software center despite getting a return code of 0. Appenforce.log says that the application was not discovered. I have tried using the folder for detection per your example as well as matlab.exe exists and matlab.exe version equals blah blah blah. I was wondering if you had any pointers for getting this application to show as installed correctly. Thanks!!

I recntly tried to connect my arduino Uno with MATLAB R2014a. In mathworks.com they suggest the use of the following new package Arduino Support from MATLAB - Hardware Support - MATLAB & Simulink

Now it seems that many commands that existed in previous versions are no longer supported (e.g. analogRead is now readVoltage)

My problem is that the communication between MATLAB and Arduino is VERY slow. I timed a readVoltage() command and it takes about 25-35 ms to read the voltage of an analog pin. Is that as fast as it can get? I hope not! But what am I missing here?

I am trying to install MATLAB R2014a on Ubuntu 14.04 LTS. I download the .iso file (from my University) and mount it using Disk Image Mounter. Then I open a terminal, switch to the directory where the image is mounted, and enter this command:

Answer by Sudheer is not correct. Matlab 2014a is available for several Linux distributions, including some Ubuntu versions, however Mathworks does not give any promises about Ubuntu 14.04, but I doubt your problem is the Ubuntu version, unless you are trying to install 64bit Matlab on 32bit Ubuntu. See the link:

I am new to Arduino and I am trying to control it through MATLAB. I have downloaded the arduino IO package and installed it.I am using MATLAB 2014a.I have a LED and I change its brightness by changing the PWM voltage as follows :

The procedure below explains how to install Matlab R2014a on Microsoft Windows. The Matlab software is zipped and available for download from CC ftp Site. To download Matlab for Windows Click Here.

Extract the zipped file of Matlab R2014a to Local Drive (e.g. "D:\") and run the setup from the extracted folder.

NATICK, Mass.--(BUSINESS WIRE)--MathWorks today announced Release 2014a (R2014a) of its MATLAB and Simulink product families. R2014a includes new releases of MATLAB and Simulink, and updates and bug fixes to 81 other products.

Click on the below button to start Download MATLAB 2014a. This is Also a complete offline installer and standalone setup for MATLAB 2014a. This would be compatible with both 32 bit and 64-bit windows.

All in all Matlab R2014a Full Setup Free Download is a very productive and handy tool for all your mathematical and numerical computational tasks. Now you can analyze and visualize data in a very innovative way.

MathWorks, the developer of mathematical computing software, has announced Release 2014a (R2014a) of its MATLAB and Simulink product families. R2014a includes new releases of MATLAB and Simulink, and updates and bug fixes to 81 other products.

April 4, 2022: Yet some more bug fixes by Andreas Wank. March 2, 2022: Some bug fixes by Andreas Wank. August 17, 2019: Support up to Matlab R2019a(beta). Simulink model warnings fixed by Behnam Tamimi. June 7, 2016: Support for Matlab R2016a(beta). Several GUIs' bugs have been fixed by Hantao Cui. May 26, 2016: PSAT version 2.1.10. Compatible with Matlab R2014b, R2015a and R2015b. Some bugs have been fixed. September 6, 2014: PSAT version 2.1.9. PSAT Documentation available for purchase. Compatible with Matlab R2014a and syntax consolidation. Fixed a few bugs. January 6, 2013: PSAT version 2.1.8. Added 2 compact solar photo-voltaic generator models (thanks to B. Tamimi and C. Caizares). Fixed a few bugs. July 30, 2012: PSAT version 2.1.7. Compatible with Matlab 7.14 (R2012a). Added 4 hydro turbine models (thanks to W. Li and L. Vanfretti). Fixed the exponential recovery load model and several other bugs. May 13, 2010: PSAT version 2.1.6. Yet another minor release. Compatible with Matlab 7.10 (R2010a). November 1, 2009: PSAT version 2.1.5. Yet another minor release. June 17, 2009: PSAT version 2.1.4. Minor release that fixes a few bugs. April 21, 2009: PSAT version 2.1.3. Minor release that consolidates device classes and fixes several bugs. June 26, 2008: PSAT version 2.1.2. Minor release that fixes some bugs in the CPF analysis. June 18, 2008: PSAT version 2.1.1. Minor release that fixes a bug in the AVR class. June 16, 2008: PSAT version 2.1.0. PSAT can run on any Matlab version back to 5.3 and on GNU Octave. The GUI for 3D visualization for static and dynamic power system analyses has been completed. The library for Numerical Linear Analysis has been completely rewritten and split into a Linear Analysis library and a Numerical Differentiation library. A filter for the ODM (open data model) has been included. The GUIs have been optimized for running on Quartz (Mac OS X) and X11 (Linux) graphical systems. February 2, 2008: PSAT version 2.0.0. The whole PSAT code has been rethinked and rewritten using classes and object oriented programming techniques. Each device is defined by a class with attributes and methods. The algorithms of PF, CPF, OPF, SSSA and TD have been rewritten, improved and made more robust. The Simulink library has been renewed using "physical" components. This avoids the directionality of control blocks and allows producing high quality network schemes. Added the status field to most components. A component can be put on-line or off-line by toggling its status. New more reliable versions of TCSC, SSSC and UPFC devices and Power Oscillations damper model has been provided by H. Ayres, M. S. Castro and A. Del Rosso. The HVDC model has also been rewritten. Several new filters for data format conversion have been added. Most filters has been provided by J. C. Morataya. PSAT has been tested with very large static and dynamic networks (up to 15000 buses). The logo of PSAT has been changed. November 20, 2007: PSAT version 2.0.0 beta 4. Fully class-based version. 3D visualization of power systems. Several components and models have been completely revised and rewritten. This is an almost stable version and is only compatible with Matlab 7.0 or newer (no GNU/Octave compatibility). March 8, 2007: PSAT version 2.0.0 beta 3 . This is still a development version and is only compatible with Matlab 7.0 or newer (at the moment this version is NOT compatible with Octave). Further class development. Several improvements. December 14, 2006: PSAT version 2.0.0 beta 2. This is a development version and is only compatible with Matlab 7.0 or newer (at the moment this version is NOT compatible with Octave). Further class development. Introduced the connection status for several comments. Several improvements. March 24, 2006: PSAT version 2.0.0 beta 1. This is a development version and is only compatible with Matlab 7.0 or newer (at the moment this version is NOT compatible with Octave). First version of PSAT which uses classes. New more reliable FACTS models and new Power Oscillation Damper model for FACTS devices (by H. Ayres, M. S. Castro and A. Del Rosso). New Simulink library with physical components. New filters for data format conversion (by J. C. Morataya). Improved PF, CPF, OPF, SSSA and TD algorithms. Tested on a 15000 bus network. July 14, 2005: PSAT version 1.3.4. Added multiperiod market clearing model for the PSAT-GAMS interface and many other improvements. January 26, 2005: PSAT version 1.3.3. Minor release with a few bug-fixes and a revised documentation. October 8, 2004: PSAT version 1.3.2. First version tested on Matlab 7 (R14). New Physical Model Component (PMC) Simulink Library. Several bug fixes and improvements. August 2, 2004: PSAT version 1.3.1. Numeric Linear Analysis library by Alberto del Rosso. New model for direct drive synchronous generator wind turbine. PSS/E 29 filter. Several bug fixes and improvements. May 2, 2004: PSAT version 1.3.0. Added a command line version and basic compatibility with GNU/Octave. New wind turbine models and bus frequency measurement. Several bug fixes and improvements. November 25, 2003: PSAT version 1.2.2. Several bug fixes and improvements. Added utilities to convert data files into BPA format and to export PF results to MS Excel sheets and to LaTeX tables. September 11, 2003: PSAT version 1.2.1. Includes previous patch and several other bug fixes. August 31, 2003: PSAT version 1.2.0. Matlab version independent. Several bugs and typos were removed thanks to Liulin. August 16, 2003: Created the PSAT Forum (available at ). August 1, 2003: PSAT version 1.1.0. Many addings (GAMS and UWPFLOW interfaces, phase shifting transformer, etc.), improvements and bugs fixing. November 11, 2002: PSAT version 1.0.0. 

Abstract: The building structure is a filter that controls the heat exchanges between the exterior and the interior of the building. It plays an important role for the thermal comfort of the residents and the energy consumption of the building. The objective of this work is to analyse the thermal behaviour of the building structure in humid climates for various local building materials: wood, cinder block and clay brick. To achieve this, a numerical code was written in the MATLAB 2014a software to solve by the finite difference method implicit scheme, the three-dimensional heat transfer equation. The simulation of our dynamic model takes into account the convection on the external and internal surfaces as well as the diffusion in the material constituting the structure. The particularity of this study is that in addition to being a 3D model, it allows to appreciate the behaviour in the thermal bridges and in the interior geometric centre. After analysis, we recommended an envelope made of wood material in the littoral region. be457b7860

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