Hiberband | The low-power global area network enabling affordable and ubiquitous connectivity for the Internet of Things

Summary
Hiberband is a new IoT connectivity platform that combines the low-cost and low-power consumption of terrestrial networks with the ubiquity of satellite coverage. Hiberband provides ubiquitous and affordable IoT connectivity with ultra-low-power consumption, intuitive installation and simple service provisioning.
Hiberband is composed of a fleet of communication nodes deployed with the assets, a satellite constellation owned by us and a supporting data processing infrastructure. The end-user application gathers data on a given asset and hands over the data to the communication sensor. The data is transmitted directly to our satellite, which stores all collected data and sends the data back to Earth, once in contact with a ground station, where the messages are stored and forwarded for analysis and insights.
We have completed all key operational and regulatory preparation (e.g. ITU frequency application, satellite operator license) and have successfully launched our first 2 satellites in November and December 2018. With this initial deployment, we are able to cover 100% of the Earth’s surface reliably at least once per day while providing long battery life (>10 years) and low connectivity cost (
Unfold all
/
Fold all
More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/945764
Start date: 01-06-2020
End date: 30-09-2021
Total budget - Public funding: 3 488 750,00 Euro - 2 442 125,00 Euro
Cordis data

Original description

Hiberband is a new IoT connectivity platform that combines the low-cost and low-power consumption of terrestrial networks with the ubiquity of satellite coverage. Hiberband provides ubiquitous and affordable IoT connectivity with ultra-low-power consumption, intuitive installation and simple service provisioning.
Hiberband is composed of a fleet of communication nodes deployed with the assets, a satellite constellation owned by us and a supporting data processing infrastructure. The end-user application gathers data on a given asset and hands over the data to the communication sensor. The data is transmitted directly to our satellite, which stores all collected data and sends the data back to Earth, once in contact with a ground station, where the messages are stored and forwarded for analysis and insights.
We have completed all key operational and regulatory preparation (e.g. ITU frequency application, satellite operator license) and have successfully launched our first 2 satellites in November and December 2018. With this initial deployment, we are able to cover 100% of the Earth’s surface reliably at least once per day while providing long battery life (>10 years) and low connectivity cost (

Status

CLOSED

Call topic

EIC-SMEInst-2018-2020

Update Date

27-10-2022
Images
No images available.
Geographical location(s)
Structured mapping
Unfold all
/
Fold all
Horizon 2020
H2020-EU.2. INDUSTRIAL LEADERSHIP
H2020-EU.2.1. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies
H2020-EU.2.1.0. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Cross-cutting calls
H2020-EIC-SMEInst-2018-2020
H2020-EIC-SMEInst-2018-2020-3
H2020-EU.2.3. INDUSTRIAL LEADERSHIP - Innovation In SMEs
H2020-EU.2.3.0. INDUSTRIAL LEADERSHIP - Innovation In SMEs - Cross-cutting calls
H2020-EIC-SMEInst-2018-2020
H2020-EIC-SMEInst-2018-2020-3
H2020-EU.3. SOCIETAL CHALLENGES
H2020-EU.3.0. Cross-cutting call topics
H2020-EIC-SMEInst-2018-2020
H2020-EIC-SMEInst-2018-2020-3