Research breakthrough will lead to more accurate weather forecasts

The ECIT team has developed a high performance electronic device – known as a dual polarized Frequency Selective Surface filter – that is to be used in future European Space Agency (ESA) missions.

The filters will be installed in instruments being developed by ESA for meteorological satellites it plans to launch between 2018 and 2020. The ESA instruments are used to detect thermal emissions in the Earth's atmosphere. The data measures temperature, humidity profiles, and gas composition, which are in turn entered into operational systems and used to forecast weather and pollution.

Lead ECIT engineer Raymond Dickie said: “Measuring just 30mm in diameter and 1/100mm thick, the devices will help to provide a much more comprehensive analysis of conditions in the Earth's atmosphere than has been possible previously.

“Up to now, spaceborne remote sensing instruments have only been capable of separating either the vertically or horizontally polarized components of naturally occurring thermal emissions from gases in the Earth's atmosphere – but not both together at the same time. The invention of the new filter resolves this problem and will enable complex imaging of clouds to be undertaken for the first time at very short wavelengths.”

Global patent applications have already been filed for the filters which are constructed by ECIT engineers and research staff at Queen's University's Northern Ireland Semiconductor Research Centre in Belfast. The filters have been developed as a result of a £1.2 million investment in Queen's by EPSRC, EADS Astrium and ESA to develop the technology, and have taken over 10 years to develop.

Robert Cahill, a member of the project team added: “As a result of the new filter, scientists will gain access to completely new data on a range of phenomenon including ozone depletion and the size of water particles in cirrus clouds. This in turn will enable more accurate global weather forecasts to be compiled and will provide important new insights into climate change.”

The ECIT research team that developed the filters is also working on versions that operate at much higher frequencies in a project funded by the UK Centre for Earth Observation Instrumentation, the European Space Agency and EADS Astrium Ltd.

ECIT is the main supplier of this technology to the UK space industry and the European Space Agency.

ECIT designs and tests the devices using one of only two instruments in the UK capable of measuring the performance of the filters.

Further information on the work of ECIT can be found by visiting www.ecit.qub.ac.uk/

Media Contact

Lisa McElroy EurekAlert!

More Information:

http://www.qub.ac.uk

All latest news from the category: Physics and Astronomy

This area deals with the fundamental laws and building blocks of nature and how they interact, the properties and the behavior of matter, and research into space and time and their structures.

innovations-report provides in-depth reports and articles on subjects such as astrophysics, laser technologies, nuclear, quantum, particle and solid-state physics, nanotechnologies, planetary research and findings (Mars, Venus) and developments related to the Hubble Telescope.

Back to home

Comments (0)

Write a comment

Newest articles

A universal framework for spatial biology

SpatialData is a freely accessible tool to unify and integrate data from different omics technologies accounting for spatial information, which can provide holistic insights into health and disease. Biological processes…

How complex biological processes arise

A $20 million grant from the U.S. National Science Foundation (NSF) will support the establishment and operation of the National Synthesis Center for Emergence in the Molecular and Cellular Sciences (NCEMS) at…

Airborne single-photon lidar system achieves high-resolution 3D imaging

Compact, low-power system opens doors for photon-efficient drone and satellite-based environmental monitoring and mapping. Researchers have developed a compact and lightweight single-photon airborne lidar system that can acquire high-resolution 3D…

Partners & Sponsors