Agriculture 4.0: Broadening Responsible Innovation in an Era of Smart Farming

David Christian Rose1, Jason Chilvers1
1Science, Society and Sustainability (3S) Research Group, School of Environmental Sciences, University of East Anglia, Norwich, United Kingdom

Tóm tắt

Từ khóa


Tài liệu tham khảo

Asveld, 2015, Trustworthiness and responsible research and innovation: the case of the bio-economy, J. Agric. Environ. Ethics, 28, 571, 10.1007/s10806-015-9542-2

Bear, 2015, Country life: agricultural technologies and the emergence of new rural subjectivities, Geogr. Compass, 9, 303, 10.1111/gec3.12217

Blok, 2018, Responsible innovation in industry and the importance of customer orientation: introduction to the special issue, IFAMA, 21, 455, 10.22434/IFAMR2018.x001

Bronson, 2018, Smart farming: including rights holders for responsible agricultural innovation, Tech. Innov. Manage. Rev., 8, 7, 10.22215/timreview/1135

Burall, 2018, Rethink public engagement for gene editing, Nature, 555, 438, 10.1038/d41586-018-03269-3

Carbonell, 2016, The ethics of big data in big agriculture, Int. Policy Rev., 5, 1, 10.14763/2016.1.405

Carolan, 2016, Publicising food: big data, precision agriculture, and co-experimental techniques of addition, Soc. Ruralis, 57, 135, 10.1111/soru.12120

Carson, 1962, Silent Spring

Chilvers, 2016, Remaking Participation: Science, Environment and Emergent Publics

Chilvers, 2017, Public Engagement With Energy: Broadening Evidence, Policy and Practice

Chilvers, 2018, Ecologies of participation in socio-technical change: the case of energy system transitions, Energy Res. Soc. Sci., 42, 199, 10.1016/j.erss.2018.03.020

CrossleyD. Big Questions and Radical Change2018

Calls for New Tech Revolution in Agriculture

Dicks, 2013, Bees, lies and evidence-based policy, Nature, 494, 283, 10.1038/494283a

Dicks, 2018, What agricultural practices are most likely to deliver “sustainable intensification” in the UK?, Food Ener. Secur, 10.1002/fes3.148

Driessen, 2015, Cows desiring to be milked? Milking robots and the co-evolution of ethics and technology on Dutch dairy farms, Agric. Hum. Values, 32, 3, 10.1007/s10460-014-9515-5

Eastwood, 2017, Managing socio-ethical challenges in the development of smart farming: from a fragmented to a comprehensive approach for responsible research and innovation, J. Agric. Environ. Ethics, 1, 10.1007/s10806-017-9704-5

Green Plan to Digitise Agriculture Wins Eu Approval2018

Ai in Agriculture Expected to Grow Exponentially by 2025, Report States2017

Fennimore, 2017, Automated Weed Control: New Technology to Solve an Old Problem in Vegetable Crops, Conference presentation at ASA Section: Agronomic Production Systems

Why Agtech is Australia's Next $100 Billion Industry2016

Firbank, 2018, Grand challenges in sustainable intensification and ecosystem services, Front. Sustain. Food Syst., 2, 7, 10.3389/fsufs.2018.00007

Frankelius, 2017, Agricultural innovation and the role of institutions: lessons from the game of drones, J. Agric. Environ. Ethics, 1, 10.1007/s10806-017-9703-6

Gadanakis, 2015, Evaluating the sustainable intensification of arable farms, J. Environ. Manage., 150, 288, 10.1016/j.jenvman.2014.10.005

Goodman, 1987, From Farming to Biotechnology of Agro-Industrial Development

Gunton, 2016, How scalable is sustainable intensification?, Nat. Plants, 2, 16065, 10.1038/nplants.2016.65

Gupta, 2012, Socio-psychological determinants of public acceptance of technologies: a review, Publ. Understand. Sci., 21, 782, 10.1177/0963662510392485

Hajer, 2003, Policy without polity? Policy analysis and the institutional void, Policy Sci., 36, 175, 10.1023/A:1024834510939

Hartley, 2016, Essential features of responsible governance of agricultural biotechnology, PLoS Biol., 14, e1002453, 10.1371/journal.pbio.1002453

Higgins, 2017, Ordering adoption: materiality, knowledge and farmer engagement with precision agriculture technologies, J. Rural Stud., 55, 193, 10.1016/j.jrurstud.2017.08.011

Holloway, 2017, Bovine and human becomings in histories of dairy technology: robotic milking systems and remaking animal and human subjectivity, BJHS Themes, 2, 215, 10.1017/bjt.2017.2

Holloway, 2014, Robotic milking technologies and renegotiating situated ethical relationships on UK dairy farms, Agric Hum Values, 31, 185, 10.1007/s10460-013-9473-3

2018, AI in the UK: ready, willing and able?, Select Committee on Artificial Intelligence., 2017

Agri-Tech Revolution Transforming Traditional Farms2017

Japan's Farming Industry Poised for Automation Revolution2017

Jasanoff, 2018, A global observatory for gene editing, Nature, 555, 435, 10.1038/d41586-018-03270-w

KerrR. B. How Low-Tech Farming Innovations Can Make African Farmers Climate-Resilient, The Conversation2015

Klerkx, 2012, Design process outputs as boundary objects in agricultural innovation projects: functions and limitations, Agric. Syst., 113, 39, 10.1016/j.agsy.2012.07.006

Leach, 2010, Dynamic Sustainabilities: Technology, Environment, Social Justice, 10.4324/9781849775069

Lejon, 2015, Sweden innovation power—Agritechnica 2015

Long, 2018, Integrating the management of social-ethical factors into industry innovation: towards a concept of Open Innovation 2.0, IFAMA, 21, 463, 10.22434/IFAMR2017.0040

López, 2018, A smart farming approach in automatic detection of favorable conditions for planting and crop production in the upper basin of Cauca River, Adv. Intell. Syst. Comput., 687, 223, 10.1007/978-3-319-70187-5_17

Lottes, 2017, UAV-based crop and weed classification for smart farming, Proceedings – IEE International Conference on Robotics and Automation, 3024

MacmillianT. Learning From Farmer-Led Research2018

Macnaghten, 2015, A Responsible Innovation Governance Framework for GM Crops, Governing Agricultural Sustainability, 225, 10.4324/9781315709468-19

Macnaghten, 2016, Responsible innovation and the reshaping of existing technological trajectories: the hard case of genetically modified crops, J. Respons. Innov., 3, 282, 10.1080/23299460.2016.1255700

Macnaghten, 2014, The future of science governance: publics, policies, practices, Environ. Plann. C, 32, 530, 10.1068/c1245j

Mahon, 2017, Sustainable intensification–“oxymoron” or “third-way”? A systematic review, Ecol. Indicat., 74, 73, 10.1016/j.ecolind.2016.11.001

Marres, 2015, Why map issues? On Controversy Analysis as a Digital Method, Sci.Tech. Hum. Values, 40, 655, 10.1177/0162243915574602

Nordmann, 2014, Responsible innovation, the art and craft of anticipation, J. Respon. Innov., 1, 87, 10.1080/23299460.2014.882064

PaulH. UK Agricultural Research: A Different Approach Is Urgently Needed2018

PimbertM. Democratising Food and Agricultural Research2018

Pretty, 1997, The sustainable intensification of agriculture, Nat. Resour. Forum., 21, 247, 10.1111/j.1477-8947.1997.tb00699.x

Purwins, 2018, Improving market success of animal welfare programs through key stakeholder involvement: heading towards responsible innovation?, IFAMA, 21, 543, 10.22434/IFAMR2017.0047

Rogers, 2013, Digital Methods, 10.7551/mitpress/8718.001.0001

Rose, 2017, Finding the right connection – what makes a successful decision support system?, Food Energy Secur., 7, e00123, 10.1002/fes3.123

Rose, , Exploring the spatialities of technological and user re-scripting: the case of decision support tools in UK agriculture, Geoforum, 89, 11, 10.1016/j.geoforum.2017.12.006

Rose, , Involving stakeholders in agricultural decision support systems: improving user-centred design, Int. J. Agric. Manage., 6, 80, 10.5836/ijam/2017-06-80

Rose, 2016, Decision support tools for agriculture: towards effective design and delivery, Agric. Syst., 149, 165, 10.1016/j.agsy.2016.09.009

Satterthwaite, 2009, The implications of population growth and urbanization for climate change, Environ. Urban., 21, 545, 10.1177/0956247809344361

Sen, 1999, Development as Freedom

Smith, 2017, Measuring sustainable intensification in smallholder agroecosystems: a review, Glob. Food Secur., 12, 127, 10.1016/j.gfs.2016.11.002

Stilgoe, 2013, Developing a framework for responsible innovation, Res. Policy, 42, 1568, 10.1016/j.respol.2013.05.008

Struik, 2017, Sustainable intensification in agriculture: the richer shade of green. A Review, Agron. Sustain. Dev, 37, 39, 10.1007/s13593-017-0445-7

Tambo, 2017, Farmer-led innovations and rural household welfare: evidence from Ghana, J. Rural Stud., 55, 263, 10.1016/j.jrurstud.2017.08.018

A Second Green Revolution64692552014

Waters-Bayer, 2015, Exploring the impact of farmer-led research supported by civil society organisations, Agric. Food Secur., 4, 4, 10.1186/s40066-015-0023-7

Whitfield, 2018, Frontiers in climate smart food systems: outlining the research space, Front. Sustain. Food Syst, 2, 2, 10.3389/fsufs.2018.00002

Wolf, 1997, Precision farming: environmental legitimation, commodification of information, and industrial coordination, Rural Soc., 62, 180, 10.1111/j.1549-0831.1997.tb00650.x

Wolfert, 2017, Big data in smart farming – A review, Agricu. Syst., 153, 69, 10.1016/j.agsy.2017.01.023

Woolston, 2014, Beef's big impact on Earth, Nature, 511, 511, 10.1038/511511e