Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals

Articles citing this paper

Precision agriculture — opportunities, benefits and pitfalls of site-specific crop management in Australia

S. E. Cook and R. G. V. Bramley
38(7) pp.753 - 763


79 articles found in Crossref database.

How will the next-generation of sensor-based decision systems look in the context of intelligent agriculture? A case-study
Colaço A.F., Richetti J., Bramley R.G.V., Lawes R.A.
Field Crops Research. 2021 270 p.108205
Improving pathways to adoption: Putting the right P's in precision agriculture
Lamb David W., Frazier Paul, Adams Peter
Computers and Electronics in Agriculture. 2008 61(1). p.4
Small-Scale Spatial Variability of Plant Nutrients and Soil Organic Matter: An Arable Cropping Case Study
Qiu Weiwen, Curtin Denis, Johnstone Paul, Beare Mike, Hernandez-Ramirez Guillermo
Communications in Soil Science and Plant Analysis. 2016 47(19). p.2189
Autonomous field management – An enabler of sustainable future in agriculture
Gackstetter David, von Bloh Malte, Hannus Veronika, Meyer Sebastian T., Weisser Wolfgang, Luksch Claudia, Asseng Senthold
Agricultural Systems. 2023 206 p.103607
Understanding variability in winegrape production systems
BRAMLEY R.G.V., HAMILTON R.P.
Australian Journal of Grape and Wine Research. 2008 10(1). p.32
Plant Communities and Their Environment (2020)
Martínez Álvaro, D. Gómez-Miguel Vicente
Technology requirements, and social impacts of technology for at-scale coral reef restoration
Gibbs Mark T.
Technology in Society. 2021 66 p.101622
Advances in Service and Industrial Robotics (2018)
Borgogno Mondino Enrico
A Bibliometric Network Analysis of Recent Publications on Digital Agriculture to Depict Strategic Themes and Evolution Structure
Sott Michele Kremer, Nascimento Leandro da Silva, Foguesatto Cristian Rogério, Furstenau Leonardo B., Faccin Kadígia, Zawislak Paulo Antônio, Mellado Bruce, Kong Jude Dzevela, Bragazzi Nicola Luigi
Sensors. 2021 21(23). p.7889
Safeguarding soil and water quality
Sparrow L. A., Sharpley A. N., Reuter D. J.
Communications in Soil Science and Plant Analysis. 2000 31(11-14). p.1717
Statistical models of yield in on‐farm precision experimentation
Paccioretti P., Bruno C., Gianinni Kurina F., Córdoba M., Bullock D. S., Balzarini M.
Agronomy Journal. 2021 113(6). p.4916
Do crop sensors promote improved nitrogen management in grain crops?
Colaço A.F., Bramley R.G.V.
Field Crops Research. 2018 218 p.126
The economic performances of different trial designs in on-farm precision experimentation: a Monte Carlo evaluation
Li Xiaofei, Mieno Taro, Bullock David S.
Precision Agriculture. 2023 24(6). p.2500
From Data to Decisions: Helping Crop Producers Build Their Actionable Knowledge
Evans Katherine J., Terhorst Andrew, Kang Byeong Ho
Critical Reviews in Plant Sciences. 2017 36(2). p.71
Integrating farmer knowledge, precision agriculture tools, and crop simulation modelling to evaluate management options for poor-performing patches in cropping fields
Oliver Y.M., Robertson M.J., Wong M.T.F.
European Journal of Agronomy. 2010 32(1). p.40
The Rhizosphere (2007)
Roose Tiina, Darrah Peter
Spatial patterns, species richness and cover in weed communities of organic and conventional no‐tillage spring wheat systems
POLLNAC F W, REW L J, MAXWELL B D, MENALLED F D
Weed Research. 2008 48(5). p.398
Two methods for processing yield maps from multiple sensors in large vineyards in California
Sams B., Litchfield C., Sanchez L., Dokoozlian N.
Advances in Animal Biosciences. 2017 8(2). p.530
Spatial variability in pH and key soil nutrients: is this an opportunity to increase fertiliser and lime-use efficiency in grazing systems?
Trotter Mark, Guppy Chris, Haling Rebecca, Trotter Tieneke, Edwards Clare, Lamb David
Crop and Pasture Science. 2014 65(8). p.817
Internet of Things (IoT) Device Management in Rural Areas to Support Precision Agriculture
Mulyana Agus, Wahjuni Sri, Djatna Taufik, Sukoco Heru, Rahmawan Hendra, Nidya Neyman Shelvie
IOP Conference Series: Earth and Environmental Science. 2022 1012(1). p.012083
Cotton Production and Uses (2020)
Ghaffar Abdul, Habib ur Rahman Muhammad, Ali Hafiz Rizwan, Haider Ghulam, Ahmad Saeed, Fahad Shah, Ahmad Shakeel
Impact of Camera Viewing Angle for Estimating Leaf Parameters of Wheat Plants from 3D Point Clouds
Li Minhui, Shamshiri Redmond R., Schirrmann Michael, Weltzien Cornelia
Agriculture. 2021 11(6). p.563
Economic benefits of variable rate technology: case studies from Australian grain farms
Robertson Michael, Carberry Peter, Brennan Lisa
Crop and Pasture Science. 2009 60(9). p.799
Managing Wine Quality (2022)
Bramley R.G.V.
Precision Agriculture Demands a New Approach to Soil and Plant Sampling and Analysis—Examples from Australia
Bramley R. G. V., Janik L. J.
Communications in Soil Science and Plant Analysis. 2005 36(1-3). p.9
Statistical analysis of comparative experiments based on large strip on-farm trials
Stefanova Katia T., Brown Jordan, Grose Andrew, Cao Zhanglong, Chen Kefei, Gibberd Mark, Rakshit Suman
Field Crops Research. 2023 297 p.108945
Comparative view for the impact of five eco factors on species distribution and weed community structure in Isthmus of Suez and adjoining farmland east Nile delta, Egypt
Mahgoub Alaa M.M.A.
Heliyon. 2019 5(8). p.e02161
Lessons from nearly 20 years of Precision Agriculture research, development, and adoption as a guide to its appropriate application
Bramley R. G. V.
Crop and Pasture Science. 2009 60(3). p.197
Optical remote sensing applications in viticulture - a review
HALL A., LAMB D.W., HOLZAPFEL B., LOUIS J.
Australian Journal of Grape and Wine Research. 2002 8(1). p.36
Precision agriculture in Australia: present status and recent developments
Bramley Robert, Trengove Sam
Engenharia Agrícola. 2013 33(3). p.575
Creating Economic Growth (2014)
Magnani Marco
A procedure for mapping the depth to the texture contrast horizon of duplex soils in south-western Australia using ground penetrating radar, GPS and kriging
Simeoni M. A., Galloway P. D., O'Neil A. J., Gilkes R. J.
Soil Research. 2009 47(6). p.613
The Optimal Harvest Decisions for Natural and Artificial Maturation Mangoes under Uncertain Demand, Yields and Prices
Chen Sheng-I, Chen Wei-Fu
Sustainability. 2021 13(17). p.9660
The application of small unmanned aerial systems for precision agriculture: a review
Zhang Chunhua, Kovacs John M.
Precision Agriculture. 2012 13(6). p.693
Embedding digital agriculture into sustainable Australian food systems: pathways and pitfalls to value creation
Cook Simon, Jackson Elizabeth L., Fisher Myles J., Baker Derek, Diepeveen Dean
International Journal of Agricultural Sustainability. 2022 20(3). p.346
Machine learning for optimizing complex site-specific management
Saikai Yuji, Patel Vivak, Mitchell Paul D.
Computers and Electronics in Agriculture. 2020 174 p.105381
Did someone say “farmer-centric”? Digital tools for spatially distributed on-farm experimentation
Bramley Robert G. V., Song Xinxin, Colaço André F., Evans Katherine J., Cook Simon E.
Agronomy for Sustainable Development. 2022 42(6).
An efficient geostatistical analysis tool for on-farm experiments targeted at localised treatment
Jin Huidong, Shuvo Bakar K., Henderson Brent L., Bramley Robert G.V., Gobbett David L.
Biosystems Engineering. 2021 205 p.121
A hybrid genetic algorithm for route optimization in the bale collecting problem
Gracia C., Diezma-Iglesias B., Barreiro P.
Spanish Journal of Agricultural Research. 2013 11(3). p.603
Flat earth economics and site-specific crop management: how flat is flat?
Rogers Andrew, Ancev Tiho, Whelan Brett
Precision Agriculture. 2016 17(1). p.108
Science mapping approach to analyze the research evolution on precision agriculture: world, EU and Italian situation
Pallottino Federico, Biocca Marcello, Nardi Pierfrancesco, Figorilli Simone, Menesatti Paolo, Costa Corrado
Precision Agriculture. 2018 19(6). p.1011
Quantifying the benefits of accounting for yield potential in spatially and seasonally responsive nutrient management in a Mediterranean climate
Oliver Y. M., Robertson M. J.
Soil Research. 2009 47(1). p.114
A comparison between multispectral aerial and satellite imagery in precision viticulture
Borgogno-Mondino E., Lessio A., Tarricone L., Novello V., de Palma L.
Precision Agriculture. 2018 19(2). p.195
Climate Change, Intercropping, Pest Control and Beneficial Microorganisms (2009)
Zamykal Daniel, Everingham Yvette L.
Managing Wine Quality (2010)
Bramley R.G.V.
Digital strategies for nitrogen management in grain production systems: lessons from multi-method assessment using on-farm experimentation
Colaço A. F., Whelan B. M., Bramley R. G. V., Richetti J., Fajardo M., McCarthy A. C., Perry E. M., Bender A., Leo S., Fitzgerald G. J., Lawes R. A.
Precision Agriculture. 2024 25(2). p.983
Key crop nutrient management issues in the Western Australia grains industry: a review
Chen W., Bell R. W., Brennan R. F., Bowden J. W., Dobermann A., Rengel Z., Porter W.
Soil Research. 2009 47(1). p.1
Regional scale application of the precision agriculture thought process to promote improved fertilizer management in the Australian sugar industry
Bramley R. G. V., Ouzman J., Gobbett D. L.
Precision Agriculture. 2019 20(2). p.362
Modelling and mapping agricultural opportunity costs to guide landscape planning for natural resource management
Bryan B.A., King D., Ward J.R.
Ecological Indicators. 2011 11(1). p.199
Using of GIS Tools for Analysis of Organic Waste Management in Slovenia Region Pomurje
Lakota Miran, Stajnko Denis
Procedia Technology. 2013 8 p.570
Classification of 3D Point Clouds Using Color Vegetation Indices for Precision Viticulture and Digitizing Applications
Mesas-Carrascosa Francisco-Javier, de Castro Ana I., Torres-Sánchez Jorge, Triviño-Tarradas Paula, Jiménez-Brenes Francisco M., García-Ferrer Alfonso, López-Granados Francisca
Remote Sensing. 2020 12(2). p.317
Precision viticulture: The state of the art
Grander Gustavo, Ferreira da Silva Luciano, Del Rosário Santibañez Gonzalez Ernesto
World Patent Information. 2021 66 p.102061
Assessment of the Use of Geographically Weighted Regression for Analysis of Large On-Farm Experiments and Implications for Practical Application
Evans Fiona H., Recalde Salas Angela, Rakshit Suman, Scanlan Craig A., Cook Simon E.
Agronomy. 2020 10(11). p.1720
Phenologic metrics derived from MODIS NDVI as indicators for Plant Available Water-holding Capacity
Araya Sofanit, Lyle Greg, Lewis Megan, Ostendorf Bertram
Ecological Indicators. 2016 60 p.1263
Opportunities and constraints for managing within-field spatial variability in Western Australian grain production
Robertson Michael, Isbister Bindi, Maling Ian, Oliver Yvette, Wong Mike, Adams Matt, Bowden Bill, Tozer Peter
Field Crops Research. 2007 104(1-3). p.60
Multi-constellation Network RTK for Automatic Guidance in Precision Agriculture
2022 IEEE Workshop on Metrology for Agriculture and Forestry (MetroAgriFor) (2022)
Radicioni Fabio, Stoppini Aurelio, Tosi Grazia, Marconi Laura
Preliminary considerations about costs and potential market of remote sensing from UAV in the Italian viticulture context
Borgogno Mondino E., Gajetti M.
European Journal of Remote Sensing. 2017 50(1). p.310
Agronomic Crops (2019)
Bhatt Rajan, Hossain Akbar, Singh Pritpal
Proximal Soil Sensing (2010)
Hedley C. B., Yule I.J., Tuohy M.P., Kusumo B.H.
Precision Agriculture Workflow, from Data Collection to Data Management Using FOSS Tools: An Application in Northern Italy Vineyard
Belcore Elena, Angeli Stefano, Colucci Elisabetta, Musci Maria Angela, Aicardi Irene
ISPRS International Journal of Geo-Information. 2021 10(4). p.236
Re-inventing model-based decision support with Australian dryland farmers. 2. Pragmatic provision of soil information for paddock-specific simulation and farmer decision making
Dalgliesh N. P., Foale M. A., McCown R. L.
Crop and Pasture Science. 2009 60(11). p.1031
Translational learnings from Australia: How SPAA plays a role in increasing the adoption of precision agriculture
Dimos N., Schaefer R., Leonard E., Koch J.
Advances in Animal Biosciences. 2017 8(2). p.694
The Coleambally agricultural component of Hyperion instrument validation
IGARSS 2001. Scanning the Present and Resolving the Future. Proceedings. IEEE 2001 International Geoscience and Remote Sensing Symposium (Cat. No.01CH37217) (2001)
Van Niel T., McVicar T., Campbell S., Liang S., Kaul M., Pearlman J., Clancy P., Segal C.
A Simple Method for the Analysis of On‐Farm Strip Trials
Lawes R. A., Bramley R. G. V.
Agronomy Journal. 2012 104(2). p.371
Farmer attitudes to the use of sensors and automation in fertilizer decision-making: nitrogen fertilization in the Australian grains sector
Bramley R. G. V., Ouzman J.
Precision Agriculture. 2019 20(1). p.157
Agricultural Bioeconomy (2023)
Agus Cahyono, Dohong Alue, Wulandari Dian Yuanita, Nugraheni Meilania, Sugiyanto Catur, Primananda Enggal, Mutiara Zahra Zafira
Capturing the in-field spatial - temporal dynamic of yield variation
Lawes R. A., Oliver Y. M., Robertson M. J.
Crop and Pasture Science. 2009 60(9). p.834
A methodology based on apparent electrical conductivity and guided soil samples to improve irrigation zoning
Fortes R., Millán S., Prieto M. H., Campillo C.
Precision Agriculture. 2015 16(4). p.441
Detection of nitrogen deficiency in wheat from spectral reflectance indices and basic crop eco-physiological concepts
Rodriguez D., Fitzgerald G. J., Belford R., Christensen L. K.
Australian Journal of Agricultural Research. 2006 57(7). p.781
Biodiversity, Biofuels, Agroforestry and Conservation Agriculture (2010)
Bhattarai Surya P., Midmore David J., Su Ninghu
The adoption of precision agriculture in an Australian broadacre cropping system—Challenges and opportunities
Jochinke David C., Noonon Bernard J., Wachsmann Nicholas G., Norton Robert M.
Field Crops Research. 2007 104(1-3). p.68
Site assessment of a woody crop where a shallow hardpan soil layer constrained plant growth
Pracilio Gabriella, Smettem Keith R. J., Bennett Don, Harper Richard J., Adams Matthew L.
Plant and Soil. 2006 288(1-2). p.113
Learning from commercial crop performance: Oil palm yield response to management under well-defined growing conditions
Cock J., Kam S.P., Cook S., Donough C., Lim Y.L., Jines-Leon A., Lim C.H., Primananda S., Yen B.T., Mohanaraj S.N., Samosir Y.M.S., Oberthür T.
Agricultural Systems. 2016 149 p.99
Bayesian inference of spatially correlated random parameters for on-farm experiment
Cao Zhanglong, Stefanova Katia, Gibberd Mark, Rakshit Suman
Field Crops Research. 2022 281 p.108477
Advances in precision agriculture in south-eastern Australia. III. Interactions between soil properties and water use help explain spatial variability of crop production in the Victorian Mallee
Armstrong R. D., Fitzpatrick J., Rab M. A., Abuzar M., Fisher P. D., O'Leary G. J.
Crop and Pasture Science. 2009 60(9). p.870
Spatial Map Generation from Low Cost Ground Vehicle Mounted Monocular Camera
Cossell Stephen, Whitty Mark, Liu Scarlett, Tang Julie
IFAC-PapersOnLine. 2016 49(16). p.231
Participative site-specific agriculture analysis for smallholders
Aragó Galindo Pau, Granell Carlos, Molin Paulo Guilherme, Huerta Guijarro Joaquín
Precision Agriculture. 2012 13(5). p.594
Combating Climate Change through Improved Agronomic Practices and Input-Use Efficiency
Norton Robert
Journal of Crop Improvement. 2014 28(5). p.575
Systematic agronomic farm management for improved coffee quality
Läderach Peter, Oberthür Thomas, Cook Simon, Estrada Iza Marcela, Pohlan Jürgen A., Fisher Myles, Rosales Lechuga Raul
Field Crops Research. 2011 120(3). p.321

Committee on Publication Ethics


Abstract Export Citation Get Permission