Horizon 2020 (2014 - 2020)

Innovative Wireless Power Devices Using micro-Thermoelectric Generators arrays: WiPTherm

Last update: Dec 9, 2020 Last update: Dec 9, 2020

Details

Locations:France, Portugal, Spain
Start Date:Nov 1, 2019
End Date:Oct 31, 2022
Contract value: EUR 2,315,892
Sectors:Science & Innovation, Telecommunications
Science & Innovation, Telecommunications
Categories:Grants
Date posted:Dec 9, 2020

Associated funding

Associated experts

Description

Programme(s): H2020-EU.1.2.1. - FET Open
Topic(s): FETOPEN-01-2018-2019-2020 - FET-Open Challenging Current Thinking
Call for proposal: H2020-FETOPEN-2018-2019-2020-01
Funding Scheme: RIA - Research and Innovation action

Grant agreement ID: 863307

Project description:
CubeSat energy storage components wirelessly powered
CubeSats are small satellites that have revolutionised access to Space. They have embraced new developments in various sectors such as weather information and climatic research, multimedia communications, telephone and television, data distribution, transportation and logistics, navigation, security, and rescue. CubeSat technology advances have propelled market demand for larger solar arrays, lower-power electronics, and more efficient energy harvesting systems. The EU-funded WiPTherm project will develop an innovative wireless energy transfer system that will wirelessly recharge the energy storage components used in CubeSat technologies. It comprises dozens of microarrays of 2D thermoelectric generators that end up being connected to a photo-thermoelectric plasmonic system that converts photons into electrical energy. The WiPTherm technology is a truly pioneering, clean, and cheap solution for energy transfer.

Objective:
Micro and Nanosatellites (often referred to as CubeSats) are revolutionizing the paradigm of engineering and space exploration in the last years, in several areas such as weather information and climatic research, multimedia communications, telephone and television, data distribution, transportation and logistics, navigation, safety, security, and rescue. The field of CubeSat is being pointed out as one of the emergent technological markets and it is expected to reach $6.35 billion by 2021, with a CAGR growth of 37.91% in the 2017-2021 period.
With advances in CubeSat technologies, the energy demand in this market segment has also increased dramatically, requiring larger deployable solar arrays, lower power electronics, efficient energy storage systems and further energy transfer/harvesting systems.
The WiPTherm project will design, implement and pilot an innovative Wireless Energy Transfer (WET) system, able to wirelessly recharge the energy storage components used in CubeSat technologies. The WiPTherm technology consists of a pioneering, clean, easy and cheap solution for energy transfer. The energy harvesting system comprises dozens of microarrays of 2D thermoelectric generators, resulting in a photo-thermoelectric plasmonic (HPTP) system that has the ability to convert photon energy into electrical energy (via thermal gradient). The wireless thermal stimulation will be performed through a large-range pulsed high
power laser beam capable of operating at large distances.

 

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