Enabling Precision Farming

Mainstreaming Controlled Traffic Techniques and Optimization of Movements

Id 35778

Acronym CTF-OptiMove

Duration: 

1 February, 2016 to 31 January, 2020

Summary

Controlled Traffic Farming (CTF) management can play a key role in sustaining soils and future crop production, which are today threatened by heavy machinery traffic and intensive production systems. To play this role in sustainable intensification, CTF needs to be developed to become a mainstream technology rather than a niche practice.
The overall objective of this project is to develop an integrated CTF innovation package based on research, operational tools and decision support systems which will underpin the wider adoption of CTF and related position based technologies. Thus, this project in seeking to provide a solution to CTF and related position-based machine technology adoption, using a multi-actor approach, proposes to produce quantitative research data to demonstrate the benefits for CTF adoption across a wider range of European growing conditions, using existing dedicated optimization tools on vehicle routing, resource allocation, operations scheduling, etc., to show the benefit and the importance of adapting the technology use to the constraints of the implemented CTF system, through the evaluation of specific scenarios involving, for example, the effect of the design and configuration of the CTF, the optimal routing pattern, etc.
Transnational implementation will increase adoption of proposed technology by moving it from being a ‘niche’ technology to being a ‘mainstream’ practice. This will involve: applied research which will quantify and illustrate the benefits of controlled traffic and related technologies in terms of crop, soil, and machine efficiency and; development of innovative DSS and operational tools which will allow CTF technologies to be optimised. Optimisation of agricultural logistics will be based on the Geo-spatial Arable field optimization Service (GAOS) and implemented in a Service Oriented Architecture (SoA). Designated field trials will be carried out in four: Belgium, Ireland, the Netherlands and Denmark. Using information on field size and machinery size, simple modelling will be used to scale up the research results to individual farm and regional levels.

Consortium

No Partner Contact Country Total
1000€
Funded
1000€
Funder
1 Coord.

Department of Engineering
Aarhus School of Engineering
Aarhus University

Claus Grøn SørensenDenmark256.7229.1Danish AgriFish Agency
Ministry of Food, Agriculture and Fisheries
2

University of Warmia and Mazury

Adam CieckoPoland10.00.0None
3

Aarhus University

Dionysis BochtisDenmark110.8102.5Innovation Fund Denmark
Ministry of Science, Innovation and Higher Education
4

Wageningen University and Research Center

Sytze de BruinNetherlands48.348.3Ministry of Economic Affairs, Agriculture and Innovation
5

team Spatial Knowledge Systems
Alterra Wageningen UR

Onno RoosenschoonNetherlands72.672.6Ministry of Economic Affairs, Agriculture and Innovation
6

Agricultural Engineering
Technology & Food Science Unit
Institute for Agricultural and Fisheries Research (ILVO)

Jürgen VangeyteBelgium40.00.0None
7

National University of Ireland, Galway

Chaosheng ZhangIreland20.020.0Department of Agriculture, Food and the Marine (DAFM)
8

University College Dublin

Kevin McDonnellIreland19.019.0Department of Agriculture, Food and the Marine (DAFM)
9

TEAGASC - Agriculture and Food Development Authority

Dermot ForristalIreland308.0308.0Department of Agriculture, Food and the Marine (DAFM)
10

Institute of Food and Resource Economics
Faculty of Life Sciences
Faculty of Health and Medical Sciences
University of Copenhagen

Soren Marcus PedersenDenmark100.090.0Danish AgriFish Agency
Ministry of Food, Agriculture and Fisheries
11

Van Den Borne Aardappelen

Jacob Van Den BorneNetherlands110.00.0None
12

Gefion

Jakob KjærsgaardDenmark48.023.5Danish AgriFish Agency
Ministry of Food, Agriculture and Fisheries