12/2016 – 07/2018 : Project: Multi-application fingerprint biometric card (V1) - (in mass production) : Access Control (NFC), Acoustic Authentication, Hardware wallet cryptocurrency, wireless charging, rechargeable lithium battery. Responsible : from the specification to the production validation.
Firmware development:
uC STM32 programming (IDE Eclipse, Keil MDK)
Fingerprint sensor driver integration and management (ref. FPC1320)
Crpto-hash / cipher: Sha1, Sha2 , Hmac, ECDSA, AES, etc.
Acoustic authentication (OTP)
RFID NFC communication (NXP, ST)
Battery management and Energy harvesting (ultra-low power consumption)
Hardware:
Design (choice of components, schematic)
Test and validation of electronic circuits, fingerprint sensors, thin rechargeable batteries
01/2014 – 12-2016 : Project Manager / R&D Electronic Engineer European project (France, Italy, Portugal), development of a 6-inches indoor display: ultra-low power consumption; self-powered by photovoltaic panel; 10-year life span; monitoring and controlling of temperature, humidity, air quality, energy consumption; EnOcean protocol and controlling of EnOcean devices (light On/Off, valve opening according to temperature, etc.)
Title: Communication Networks and Process Control Applications Supervisors: Guy JUANOLE and Gérard MOUNEY
Abstract: This thesis is in the field of Networked Controlled Systems, which are multidisciplinary systems and which experience a great development in the context of the current technology and introduce new research problems, particularly for the communities of Automatic Control and Communication Network. The aim is to show the interest in considering a bidirectional link between the Quality of Control (QoC) (stability and performance of process control applications) and Quality of Service (QoS) (delays in the transmissions) and to focus on Local Area Networks and, more particularly, on the scheduling of frames in the MAC layer in which we consider CSMA MAC protocols. Our work first concerns a CAN network where we have three proposals. The first proposal consists of solutions for QoS, for process control applications, which are based on the concept of hybrid priority for the frame scheduling in which we define a dynamic priority part which depends on a QoC parameter. This allows to implement a relation QoC->QoS. The second proposal consists of QoC solutions by using a compensation method for time delays (maintenance of dominant poles) which allows to implement a relation QoS->QoC. The third proposal consists in implementing a relation QoSQoC that ensures, for the implementation of several applications, a fairness property. We then discuss the specific context of Wireless LANs, where, on the one hand, we define collision-free CSMA MAC protocols on the basis of priorities and, on the other hand, we show the feasibility of the ideas developed in the CAN network.
Discipline: Embedded Systems Keywords: Networked Control Systems – MAC protocols – Wireless Networks – Automatic Control – Quality of Control – Quality of Service – Co-design
Description de l'entreprise
The Laboratory of Analysis and Architecture of Systems (LAAS) is a CNRS research unit associated with the six founding members of the University of Toulouse (UPS; INSA; INP; ISAE; UTM; UT1). LAAS’ research activities fall within the domain of Information Sciences and Technologies and address complex systems (artificial and sometimes natural) generally heterogeneous, and at different scales, to devise theories, methodologies and tools for modeling, designing and controlling them. Research, innovation and transfer are tied. The lab has a history of strong relationships with industry and works in a large number of collaborative projects with international, national and regional industries of all size. LAAS was one of the 20 first “Carnot Institutes” labeled in 2006.
Development of a mesh sensor network for mobile robots using Crossbow sensors/modules
Skills: Visual C++, TinyOS, XML
Détails de l'expérience
International Student Exchange
Description de l'entreprise
We are aiming to realize intelligent systems which can acquire knowledge and skills gradually in real environment based on interaction between humans. There are many uncertainties in real environment, especially on daily life environment in which humans live. We focus on an approach that interaction, memory and experiences functions are key issue to cope with such situations. We have developed several robots and intelligent systems in order to substantiate the approach
Networked Control Systems: CAN bus; hybrid priorities
QoS and QoC provided by different message scheduling schemes
Détails de l'expérience
Titre: Réseaux de Communication et Applications de Contrôle-Commande Responsables: Guy JUANOLE et Gérard MOUNEY
Résumé: Ce travail se situe dans le domaine des systèmes commandés en réseau et s’intéresse aux techniques d’ordonnancement de messages. L’objectif est d’étudier l’influence de l’ordonnancement basé sur des priorités, d’une part, sur la stabilité d’une application de contrôle-commande et, d’autre part, sur la potentialité du réseau à implanter plusieurs de ces applications. L’étude, qui concerne les réseaux filaires et se situe sur le réseau CAN, est basée sur le simulateur TrueTime. Mots clés : Réseau CAN, Ordonnancement de messages, Temps Réel, Automatique
Description de l'entreprise
The Laboratory of Analysis and Architecture of Systems (LAAS) is a CNRS research unit associated with the six founding members of the University of Toulouse (UPS; INSA; INP; ISAE; UTM; UT1). LAAS’ research activities fall within the domain of Information Sciences and Technologies and address complex systems (artificial and sometimes natural) generally heterogeneous, and at different scales, to devise theories, methodologies and tools for modeling, designing and controlling them. Research, innovation and transfer are tied. The lab has a history of strong relationships with industry and works in a large number of collaborative projects with international, national and regional industries of all size. LAAS was one of the 20 first “Carnot Institutes” labeled in 2006.
Research on Power Line Communication (PLC) for smarthome application
Implementation of transmit and receive modules for the communication on the power line
Implementation of a control box for the light control
Visual Basic, Assembly, Protel 99SE
Détails de l'expérience
Final project for university study: Powerline Communication and Applications on a lamp control system Project: projet SIAM2 (Systèmes Intelligents pour Applications MultiMédia) Supervisors: Dr, Eric Castelli; Prof. Pham Thi Ngoc Yen
FPT Information System is one of the biggest company, in Vietnam, working in the fields of application software, IT services and system integration. FIS Information System provides the following services: network infrastructure, security, certification authority, maintenance, cloud computing, etc.