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Determination of leaf water status via Terahertz-sensors (Project)

The goal of sub-project S4 is the in vivo detection of water content and draught stress of agricultural crops by terahertz (THz) time domain spectroscopy. Implementing the innovative THz sensor technology (Fiber-coupled THz time domain spectrometer) will comprise industrial research as well as pre-competitive development of THz system components. Furthermore, compact device integration is planned...


Funding period: 2009 - 2013

Relevancy: 100%

Determination of leaf water status via Sub-Terahertz-sensors (Project)

In the sub-project S5, the potential of sub-THz-sensors for the non-invasive determination of the water content in plants will be evaluated. For that purpose we will build two sensor systems operating at different frequencies. Both devices will be transferred to our project partners in the crops group. The project partners will perform measurements on barley to identify characteristic measurands...


Funding period: 2009 - 2013

Relevancy: 100%

Procedural costs of young cattle in dairy farming (Project)

no details


Funding period: 2017 - 2017

Relevancy: 100%

Using hyperspectral sensors in plant breeding (Project)

keine Angaben


Funding period: 2009 - 2014

Relevancy: 100%

Chlorophyll fluorescence sensor optimization and data analysis (Project)

Cooperation with S2 and S9.


Funding period: 2009 - 2014

Relevancy: 100%

Quantification of upper canopy spatial structure (Project)

Three dimensional plant canopies are complex assemblages of leaves on various orientations and have an unpredictable three dimensional surface structure. Thus, light intensity changes quickly within natural canopies. With this project we will use a novel stereo camera system to map the 3-dimensional surface of the outer canopy. An semi-automated routine helps to select single leaves and compute...


Funding period: 2009 - 2014

Relevancy: 100%

Sensor Beta testing under field conditions (Project)

keine Angaben


Funding period: 2009 - 2014