Usability improvements of the Thermipig model for precision pig farming

Q2 Agricultural and Biological Sciences
K. Grausa, V. Komašilovs, L. Brossard, N. Quiniou, M. Marcon, M. Querné, A. Kviesis, N. Bumanis, A. Zacepins
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引用次数: 0

Abstract

. Pig livestock farming systems encounter several economic and environmental challenges, connected with meat price decrease, sanitary norms, emissions etc. To deal with these issues, methods and models to assess the performance of a pig production system have been developed. For instance, Thermipig model represents the pig fattening room and simulates performances of pigs at the batch level, taking into account interactions between the individual variability of pigs, farmer's practices, room characteristics and outdoor climate conditions. The model requires some static basic inputs fulfilled in several spreadsheets (such as rooms, pigs, and dietary characteristics) but also data files for voluminous variable inputs (such as outdoor temperature or climate control box parameters) for further modelling and outcome producing. This leads to challenges in data providing by the farmers and have to be improved. This paper deals with the implementation of the separate modules of the developed data warehouse system for usability improvements of the Thermipig model. The idea is to substitute input from the data files with online data input and automated variable processing by the model using the python script for connection to the remote data warehouse. The data warehouse system is extended with ‘Property Sets’ section dealing with all the operations that can be performed to a set of input variables. This approach demonstrates the ability of the data warehouse to act as data supplier for the remote model. As well the outcome of the model is also transferable back to the data warehouse for evaluation. This work is done within the Era-Net SuSan PigSys project - Improving pig system performance through a whole system approach.
Thermipig模型用于精准养猪的可用性改进
. 猪畜牧业系统遇到了一些经济和环境挑战,与肉类价格下降、卫生规范、排放等有关。为了解决这些问题,已经开发了评估生猪生产系统性能的方法和模型。例如,Thermipig模型代表猪育肥房,并在批量水平上模拟猪的生产性能,考虑到猪的个体变异、农民的做法、房间特征和室外气候条件之间的相互作用。该模型需要一些静态的基本输入(如房间、猪和饮食特征),但也需要大量可变输入(如室外温度或气候控制箱参数)的数据文件,以便进一步建模和产生结果。这导致农民在提供数据方面面临挑战,必须加以改进。为了提高Thermipig模型的可用性,本文讨论了所开发的数据仓库系统的各个模块的实现。其思想是用在线数据输入和模型使用python脚本连接到远程数据仓库的自动变量处理来替换数据文件中的输入。数据仓库系统通过“Property Sets”部分进行扩展,该部分处理可以对一组输入变量执行的所有操作。这种方法演示了数据仓库作为远程模型的数据提供者的能力。同样,模型的结果也可以转移回数据仓库进行评估。这项工作是在Era-Net SuSan PigSys项目中完成的——通过整个系统方法提高养猪系统的性能。
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来源期刊
Agronomy research
Agronomy research Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
7 weeks
期刊介绍: Agronomy Research is a peer-reviewed international Journal intended for publication of broad-spectrum original articles, reviews and short communications on actual problems of modern biosystems engineering including crop and animal science, genetics, economics, farm- and production engineering, environmental aspects, agro-ecology, renewable energy and bioenergy etc. in the temperate regions of the world.
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