Climate smart agriculture for sustaining food production

2019 ◽  
Vol 15 (3) ◽  
pp. 59-64
Author(s):  
D. NONGMAITHEM ◽  
M. APON ◽  
A.P. SINGH ◽  
L. TZUDIR
Author(s):  
Dharm Singh Jat ◽  
Anton S. Limbo ◽  
Charu Singh

By combining the different monitoring and automation techniques available today, we can develop cutting-edge internet of things (IoT) systems that can support sustainable development through smart agriculture. Systems are able to monitor the farming areas and react to the parameters being monitored on their own without the presence of human beings. This automation can result in a more precise way of maintaining the aspects that affect the growth of plants, leading to an increase in the food production on farmlands. This chapter focuses on IOT for automation in smart agriculture and provides a pathway to develop automation system in the smart environment.


2019 ◽  
Vol 15 (6) ◽  
pp. 727-741 ◽  
Author(s):  
Steven Greenland ◽  
Elizabeth Levin ◽  
John F. Dalrymple ◽  
Barry O’Mahony

Purpose This paper aims to examine impediments to the adoption of sustainable water-efficient technological innovation in agriculture. Farming is the largest water consumer and food production expansion in response to global population growth, combined with increasing droughts from climate change, threatens water and food insecurity for many countries. Yet, climate smart agriculture (CSA) innovation adoption has been slow, and in this regard, governments and the agricultural sector are not fulfilling their social responsibility and sustainability obligations. Design/methodology/approach Barriers to water-efficient drip irrigation (DI) adoption in Australia were investigated via 46 depth interviews with agricultural stakeholders and a survey of 148 farmers. Findings While DI water efficiency is recognised, this is not the key determinant of farmers’ irrigation method selection. Complex interrelationships between internal and external barriers impede DI adoption are identified. These include costs, satisfaction with alternative irrigation methods, farmer characteristics that determine the suitability of the innovation and the extent it is incremental or radical, plus various multidimensional risks. Government support of alternative, less water-efficient irrigation methods is also a critical barrier. Originality/value A conceptual framework for understanding barriers to sustainability oriented innovation adoption is presented. Its insights should be applicable to researchers and practitioners concerned with understanding and improving the adoption of socially responsible and sustainable innovation in a wide range of contexts. Recommendations for overcoming such adoption barriers are discussed in relation to the research focus of water-efficient agriculture and encouraging uptake of DI.


2021 ◽  
Vol 8 (5) ◽  
pp. 310-315
Author(s):  
Jeffrey John R. Yasay

This article explores the technologies that can be used to establish smart farming in the Philippines, as well as the various smart systems that have been used to aid home-grown farmers. The emergence of smart agriculture and farming is a method that heavily integrates digital technology in order to increase food production while minimizing input costs. The importance of this technology has a significant effect on farmers and investors as a result of technological advancements. It should also be recognized that numerous promotions requiring government funding for the establishment of smart farming technology in the Philippines has been addressed. Keywords: Smart Farming; Hydroponics; Aquaponics; Aeroponics.


2022 ◽  
pp. 493-503
Author(s):  
Dharm Singh Jat ◽  
Anton S. Limbo ◽  
Charu Singh

By combining the different monitoring and automation techniques available today, we can develop cutting-edge internet of things (IoT) systems that can support sustainable development through smart agriculture. Systems are able to monitor the farming areas and react to the parameters being monitored on their own without the presence of human beings. This automation can result in a more precise way of maintaining the aspects that affect the growth of plants, leading to an increase in the food production on farmlands. This chapter focuses on IOT for automation in smart agriculture and provides a pathway to develop automation system in the smart environment.


1984 ◽  
Vol 63 (8) ◽  
pp. 23
Author(s):  
Stephen Margolis

2020 ◽  
pp. 587-611 ◽  
Author(s):  
Elena Viganò ◽  
Federico Gori ◽  
Antonella Amicucci

The central role of quality agri-food production in the promotion of a given territory is actually widely recognized by both the economic and marketing literature and the stakeholders involved in the enhancement process of rural systems. On this basis, this work analyzes one of the finest Italian agri-food products: the truffle. This work tries to point out the main problems characterizing the current regulatory framework, the trade and the production of the Italian truffle sector, emphasizing their causes, consequences and possible solutions.


Author(s):  
Francesco Marangon ◽  
Tiziano Tempesta ◽  
Stefania Troiano ◽  
Daniel Vecchiato

2002 ◽  
Author(s):  
S. Berardinelli ◽  
R. Lawrence ◽  
C. Coffey ◽  
E. Moyer ◽  
G. Kullman

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