This study was conducted over 35,300 hectares of irrigated and dry land wheat fields in Canterbury, New Zealand in the 2007-2008 harvest year. The Artificial Neural Network models (ANNs), after examining more than 140 several direct and indirect parameters, can predict energy use and fuel consumption based on farm conditions, farmers’ social considerations, farm operation, machinery condition and farm inputs, arable farms in Canterbury with an error margin of ±12% (± 2900 MJ/ha) and ±8% (± 5.6 l/ha), respectively
Two models have been developed for simulating CO₂ emissions from wheat farms: (1) an artificial neur...
The global population growth has led to a considerable rise in demand for wheat. Today, the amount o...
This study was developed to predict energy usage, based on the amount of fruit stored and environmen...
An artificial neural network (ANN) approach was used to model the energy consumption of wheat produc...
An artificial neural network (ANN) approach was used to model the energy consumption of wheat produc...
An ANN (artificial neural network) approach was used to model the fuel consumption of wheat producti...
An artificial neural network (ANN) approach was used to model the fuel consumption of wheat producti...
Abstract: An artificial neural network (ANN) approach was used to model the fuel consumption of whe...
An artificial neural network (ANN) approach was used to model the energy consumption of wheat produc...
New Zealand farmers practice a form of 'industrialised‘ agriculture that relies on relatively high i...
An artificial neural network (ANN) approach was used to model the fuel consumption of wheat producti...
An artificial neural network (ANN) approach was used to model the wheat production. From an extensiv...
Two models have been developed for simulating CO₂ emissions from wheat farms: (1) an artificial neur...
New Zealand farmers practice a form of 'industrialised‘ agriculture that relies on relatively high i...
An artificial neural network (ANN) approach was used to model the wheat production. From an extensiv...
Two models have been developed for simulating CO₂ emissions from wheat farms: (1) an artificial neur...
The global population growth has led to a considerable rise in demand for wheat. Today, the amount o...
This study was developed to predict energy usage, based on the amount of fruit stored and environmen...
An artificial neural network (ANN) approach was used to model the energy consumption of wheat produc...
An artificial neural network (ANN) approach was used to model the energy consumption of wheat produc...
An ANN (artificial neural network) approach was used to model the fuel consumption of wheat producti...
An artificial neural network (ANN) approach was used to model the fuel consumption of wheat producti...
Abstract: An artificial neural network (ANN) approach was used to model the fuel consumption of whe...
An artificial neural network (ANN) approach was used to model the energy consumption of wheat produc...
New Zealand farmers practice a form of 'industrialised‘ agriculture that relies on relatively high i...
An artificial neural network (ANN) approach was used to model the fuel consumption of wheat producti...
An artificial neural network (ANN) approach was used to model the wheat production. From an extensiv...
Two models have been developed for simulating CO₂ emissions from wheat farms: (1) an artificial neur...
New Zealand farmers practice a form of 'industrialised‘ agriculture that relies on relatively high i...
An artificial neural network (ANN) approach was used to model the wheat production. From an extensiv...
Two models have been developed for simulating CO₂ emissions from wheat farms: (1) an artificial neur...
The global population growth has led to a considerable rise in demand for wheat. Today, the amount o...
This study was developed to predict energy usage, based on the amount of fruit stored and environmen...