Opendata, web and dolomites

HUUVER SIGNED

Hybrid UAV-UGV for Efficient Relocation of Vessels

Total Cost €

0

EC-Contrib. €

0

Partnership

0

Views

0

Project "HUUVER" data sheet

The following table provides information about the project.

Coordinator
CERVI ROBOTICS 

Organization address
address: JASIONKA NR 954 E
city: JASIONKA
postcode: 36 002
website: n.a.

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Poland [PL]
 Total cost 1˙622˙987 €
 EC max contribution 1˙197˙216 € (74%)
 Programme 1. H2020-EU.2.1.6.3. (Enabling exploitation of space data)
 Code Call H2020-SPACE-EGNSS-2019
 Funding Scheme IA
 Starting year 2019
 Duration (year-month-day) from 2019-12-01   to  2021-05-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    CERVI ROBOTICS PL (JASIONKA) coordinator 251˙300.00
2    RECTANGLE SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA PL (RZESZOW) participant 261˙187.00
3    EVERIS AEROESPACIAL Y DEFENSA SL ES (MADRID) participant 210˙000.00
4    LAPPEENRANNAN-LAHDEN TEKNILLINEN YLIOPISTO LUT FI (LAPPEENRANTA) participant 203˙750.00
5    BRIMATECH SERVICES GMBH AT (WIEN) participant 172˙812.00
6    BLADESCAPE AIRBORNE SERVICES GMBH AT (SCHWECHAT) participant 74˙541.00
7    GINA SOFTWARE SRO CZ (BRNO) participant 23˙625.00

Map

 Project objective

The project HUUVER - Hybrid UAV-UGV for Efficient Relocation of Vessels will result with a prototype UAV-UGV platform that combines two types of propulsion systems. This patented technical solution will activate flying and driving capabilities in one compact and highly integrated autonomous drone.

The HUUVER drone will be the first fully integrated with the Galileo navigation system that provides the authentication service and precise navigation and will be fundamental in the navigation system. The positioning accuracy shall be achieved with the sensor fusion system based on multi-constellation satellite navigation system, inertial data and ranging information. The dual-frequency Galileo signals on the E1 and E5b bands will be used for correction of the ionospheric error, will also protect against malitious attacs. The credibility of the provided Galileo positioning will be assured by the new Open Service Navigation Message Authentication.

The motivation of the presented product takes its origin directly from the user perspective and expectations, where the flexibility, reliability, extended range are among the most mentioned. Completing for interfacing with an end-user, the HUUVER system will also include a core management system with features like mission planning navigation, guidance and control.

A complementary part of the system will be an end-user mobile application enabling mission demand, launch control. The HUUVER platform is expected to be successful in professional missions for search & rescue, patroling & monitoring and industrial logistics. The solution will be tested by end users during the project realization.

 Deliverables

List of deliverables.
Management guidelines Documents, reports 2020-04-07 19:02:01

Take a look to the deliverables list in detail:  detailed list of HUUVER deliverables.

Are you the coordinator (or a participant) of this project? Plaese send me more information about the "HUUVER" project.

For instance: the website url (it has not provided by EU-opendata yet), the logo, a more detailed description of the project (in plain text as a rtf file or a word file), some pictures (as picture files, not embedded into any word file), twitter account, linkedin page, etc.

Send me an  email (fabio@fabiodisconzi.com) and I put them in your project's page as son as possible.

Thanks. And then put a link of this page into your project's website.

The information about "HUUVER" are provided by the European Opendata Portal: CORDIS opendata.

More projects from the same programme (H2020-EU.2.1.6.3.)

AMPERE (2020)

ASSET MAPPING PLATFORM FOR EMERGING COUNTRIES ELECTRIFICATION

Read More  

CERTO (2020)

Copernicus Evolution – Research for Transitional-water Observation

Read More  

DELOREAN (2019)

Drones and Egnss for LOw aiRspacE urbAN mobility

Read More