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乢茤啒遅
S u s t a i n a b l e i n t e n s i f i c a t i o n c a n b e r e a l i z e d t h r o u g h t h e u s e o f a w i d e r a n g e o f d i f f e r e n t t e c h n o l o g i e s , t h i s c a l l f o c u s e s o n s t i m u l a t i n g f u r t h e r i n n o v a t i o n i n t h e a p p l i c a t i o n o f s p a c e t e c h n o l o g i e s , e i t h e r i n t h e i r p r i m a r y a p p l i c a t i o n s , o r a s s p i n offs. The two main technologies to be considered are:
Technology focus
1. Remote sensing, Earth Observation (EO), Big Data processing and modelling
Application of remote sensing and big data technologies should focus on:
exploiting Chinese, UK and European Earth observation data to provide new information products and services
linking EO-derived with other forms of data from Internet of Things, in-situ monitoring networks and government and/or industry held data
advanced modelling and data integration techniques
Innovation and advancement from the current state-of-the art could come from:
novel platforms: such as small satellite constellations, UAVs and airships
novel instrumentation: such as spectrometers or fluorescence imaging
novel algorithms for image processing or data integration
2. Robotics and autonomous systems
Application of novel technical solutions that show high potential for addressing any of the themes below. This includes using autonomous systems that were originally developed for space applications:
Robotic rovers, Unmanned Ariel Vehicles (fixed wing, rotary systems and airships) to help in field monitoring of the crop, soiland micro-climate
Precision guidance and autonomous navigation
Imaging, computer vision and advanced in situ sensors
Research proposals must address the overarching themes described below through the innovative use of the space enabled technologies described above.
Application themes
Proposals are welcomed which address one or more of the application themes described below, utilising any of the technologies described above:
The use of remote sensing techniques based on satellite and other flight platforms and the modelling of Earth Observation data products for assessing the impact that farming practices have on the climate and the effect that climate change has on agriculture production.
Management and reduction of the emissions of Short-Lived Climate Pollutants (SCLPs).
Developing techniques to improve yield while reducing agricultural inputs and to assess the impact that intensive farming practices have in order to intensify crop production sustainably.
Using satellite based observations to monitor crop health and as an input to yield modelling to provide an efficient tool to assess and manage crops.
Fundamental research of forecasting and monitoring in order to deal with emerging pest and disease threats. This includes examples such as exploiting technology to reduce or remove pest and dis
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