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Mejora del rendimiento de vehículos eléctricos

Resumen

Tipo:
Búsqueda de socios
Referencia:
RDGR20150616001
Publicado:
25/06/2015
Resumen:
Un centro de investigación griego busca socios con el fin de presentar una propuesta al programa Horizonte 2020 (H2020-GV-8-2015). El objetivo es desarrollar un sistema electrónico de potencia para vehículos eléctricos que optimice el rendimiento de carga (carga súper rápida) y permita la comunicación entre el sistema de gestión de baterías (BMS) y el vehículo eléctrico. Se buscan empresas y expertos en TIC y baterías para probar el sistema en un entorno real. La fecha límite de la convocatoria es el 15 de octubre de 2015 y el plazo para presentar expresiones de interés finaliza el 24 de julio.

Details

Tittle:
H2020 partner sought for proposal submission under the topic GV-8-2015 - Enhancing the performance of electric vehicles.
Summary:
A Greek research centre is looking for additional partners in order to submit a proposal under the H2020-GV-8-2015 topic. The aim of the project is to develop an electronic power system for electric vehicles (EVs) that will optimize charging performance (super-fast charging) and will support communication between an enhanced BMS (Battery Management System) and electric vehicles. The partners sought are ICT and battery experts as well as enterprises for testing the system in a real environment.
Description:
The aim of the project is to develop an electronic power system that optimizes a battery's charging performance, enables super-fast charging and supports communication between an enhanced Battery Management System (BMS) and the vehicle being powered.

The system integrates:
A) An advanced super-fast battery charger for battery charging
B) A low-power, enhanced BMS

- Super Charger hardware

An innovative fully micro-controlled super-fast charger will be redesigned and developed using special power electronics to provide intelligence that includes advanced thermal control, optimal charging for each battery model, communication with vehicle and driver, and a wide range of charger specifications.

- The software will consist of three main nodes:

1. Super charger software node: It will provide an open system of communication with vehicles. Environmental parameters will be measured.
All vehicle/battery parameters and profiles will be received and processed.
The super charger will be developed and its operation optimized for the electric vehicle (EV) market.

2. Vehicle software node: The vehicle software node will provide the enhanced BMS, complemented with journey and driving plans management.

The above system will provide an accurate prediction of the vehicle's range and offer personalized options and services to the driver.

"Battery parameter profiles" will be downloaded to the vehicle software node by the factory. The node will have the capacity to receive GPS data, driver data, as well as trip and time requirements. The above data will be compared with local data, real battery capacity, battery conditions, battery history profile, battery power needs and super charger capabilities.

The data will be processed and recommended journeys & driving plans will be sent to the driver for acceptance, providing advanced journey and time planning information for the driver's convenience.

3.Driver software node: Installed on the electric vehicle's dashboard and on a PC or mobile device, it will communicate with the vehicle, presenting to the driver: super charger data, electric vehicle data, personal information, recommended journeys and driving plans & parameters, thus providing the driver with advanced journey and time planning guidance.
The driver's decisions will be communicated to the vehicle.

Potential contribution:
Ease of use
Lowering cost, increased safety and reliability.
Open system to be widely incorporated by other manufacturers.
Easily adaptable for different commercial installations.
Contribution to the standardization of BMS and related interfaces.

The consortium needs to be enriched with ICT experts that will develop BMS software, battery experts that will support ICT, a fast charger designer that can perform advanced systems design and develop appropriate interface(s), and SMEs.

Partners sought: ICT and battery experts that will contribute to the development of the super charger, the enhanced battery management system, the communications, modelling and simulation, as well as electronic vehicle manufacturers / owners, for testing and evaluation.

Deadline for proposal submission: 15/10/2015
Deadline for Expressions of Interest: 24/07/2015
Advantages and Innovations:
The system provides:
- The driver with key information on energy, range of charger specifications, safety, battery life and reliability
- Increased power efficiency by minimizing cost/Km
- Increased battery life expectancy, minimizing the cost of servicing
The system is user friendly, reduces costs and enhances sustainable mobility.
Stage of Development:
Project in negotiations - urgent

Partner sought

Partner Sought:
The Greek research centre is looking for: 1) ICT experts, responsible for developing BMS software: A) for batteries B) for the charger C) for the vehicle, which measures and processes the key parameters for the batteries and the journey, allowing users and customers to access this information from any device connected to an information cloud (such as PC, tablet or mobile) in real time. 2) Battery experts responsible for supporting ICT and fast charger designers for advanced systems design and the development of appropriate interface(s). 3) Enterprises of any size (electronic vehicle manufacturers / owners), responsible for testing the advanced system under real conditions and optimizing its performance in a real environment.
Type of Partnership Considered:
RDR

Client

Type and Size of Client:
R&D Institution
Already Engaged in Trans-National Cooperation:
Si
Languages Spoken:
English
Greek

Dissemination

Programme-call

Evaluation Scheme:
Single-stage submission scheme. Research and Innovation Actions (RIA).
Coordinator Required:
Si
Deadline for Call:
15/10/2015
Project Duration:
0