Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Next revision
Previous revision
en:projects:bsp:lcm3 [2007/08/06 10:05]
brunner created
en:projects:bsp:lcm3 [2016/04/22 15:48] (current)
chiurtu
Line 1: Line 1:
-==== Télécommande ​==== +==== Wireless communication system using Software Defined Radio platforms ​====
-=== Introduction ​===+
  
-Dans le modélisme (voiture, avion hélicoptère,​ ...) à généralement recours à  +\\ 
-des télécommandes. +**Background:​**\\ 
-Une télécommande fonctionne avec des pulses modulée en largeur ​(PWMle tout  +Software Defined Radio (SDRis a new paradigm that allows to change any aspect 
-modulé en FM. +of a communication protocol, including the signaling method, by changing the 
-Pour prouver la modularité de la software radio nous voulons implémenter les  +software. The only limitation is the bandwidth of RF (radio frequency) part.\\
-chaîne d'​envoi et de réception pour ce type de signal. +
-La partie réception est déjà implémentée mais reste à faire la partie  +
-d'​émission.+
  
-=== Mission ===+At LCM (Mobile Communications Laboratory), ​ we are currently 
 +using the bladeRF SDR platform (http://​www.nuand.com/​) for various 
 +projects and purposes, including for example the acquisition of a GPS 
 +signal (which is used in the SDR class).\\
  
-Implémenter sur la Software Radio la chaîne d'​émission pour la télécommande.+\\ 
 +**Objectives:​**\\ 
 +The goal of this project is to implement an over-the-air communication 
 +system using two bladeRF modules, one at each end of the wireless link. 
 +Some of the basic blocks are already implemented in Matlab (data source, 
 +modulator, pulse shaper, matched filter, demodulator,​ error correction mechanism).\\ 
 +In order to have a fully operational 
 +wireless link, there are several modules that are still missing. The purpose of this project 
 +is to implement them. First, one needs to 
 +perform the clock synchronization between the transmitter and the receiver. 
 +Next, one has to synchronize the received data and detect the start/end 
 +of the transmitted blocks/​frames. Finally, one has to estimate the 
 +channel parameters, using some training data. Once these blocks are implemented,​ 
 +a fully operational transmission chain should be demonstrated.\\
  
-=== Ressources ===+\\ 
 +**Prerequisites:​** 
 +Matlab, COM-302 Principles of digital communications (or equivalent).\\ 
 +(COM-511 Software-defined radio: A hands-on course is a plus. This can be taken in parallel.)\\
  
-[http://​ipg/​doku.php?​id=en:​research:​sr:​software_radio|Software Radio]. +\\ 
-[http://​ipg/​doku.php?​id=en:​research:​sr:​remote_control|Informations relative  +**Laboratory:** LCM, IC faculty\\
-à la télécommande].+
  
-=== Pré-requis ===+\\ 
 +**Project available for:** Master in Communication Systems / Computer Science \\
  
-n'est pas important5 est très important+\\ 
-Programmation en C +**Number of students:​** ​1\\ 
-Théorie de la communication ​3 + 
-* Protocole de transmission ​2+\\ 
 +**Supervisor:​**\\ 
 +Nicolae Chiurtutel: 35657, office INR 138, nicolae.chiurtu@epfl.ch\\ 
 + 
 +\\ 
 +**Professor:**\\ 
 +Bixio Rimoldi, tel32679, office INR 111, bixio.rimoldi@epfl.ch\\ 
 +\\ 
 + 
 +[[en:projects|Back to projects menu]]
  
-===Superviseur=== 
-Stéphane Brunner, télephone : 37552, bureau : INR 138, stephane.brunner@epfl.ch 
  
-===Professeur=== 
-Bixio Rimoldi 
  
-[[en:​projects:​2007-2008:​bsp|back to bachelor semester projects menu]] 

Last modified:: %2007/%08/%06 %10:%Aug