Day W, Audsley E, Frost A R
Silsoe Research Institute, Wrest Park, Silsoe, Bedford MK45 4HS, UK.
Philos Trans R Soc Lond B Biol Sci. 2008 Feb 12;363(1491):527-41. doi: 10.1098/rstb.2007.2168.
Engineering research and development contributes to the advance of sustainable agriculture both through innovative methods to manage and control processes, and through quantitative understanding of the operation of practical agricultural systems using decision models. This paper describes how an engineering approach, drawing on mathematical models of systems and processes, contributes new methods that support decision making at all levels from strategy and planning to tactics and real-time control. The ability to describe the system or process by a simple and robust mathematical model is critical, and the outputs range from guidance to policy makers on strategic decisions relating to land use, through intelligent decision support to farmers and on to real-time engineering control of specific processes. Precision in decision making leads to decreased use of inputs, less environmental emissions and enhanced profitability-all essential to sustainable systems.
工程研发通过创新的方法来管理和控制流程,以及通过使用决策模型对实际农业系统的运行进行定量理解,从而推动可持续农业的发展。本文描述了一种工程方法如何借鉴系统和流程的数学模型,贡献新的方法,以支持从战略规划到战术和实时控制等各级别的决策。用简单而稳健的数学模型描述系统或流程的能力至关重要,其输出范围从为政策制定者提供有关土地使用战略决策的指导,到为农民提供智能决策支持,再到对特定流程的实时工程控制。决策的精准性会减少投入的使用、降低环境排放并提高盈利能力——所有这些都是可持续系统的关键要素。