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Rethinking environment control strategy of confined animal housing systems through precision livestock farming

机译:通过精密畜牧业耕作重新思考狭窄的动物住房系统环境控制策略

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Climate represents one of the main limiting factors of production efficiency. Thermal stress events can cause reduced performance, morbidity, and mortality, resulting in significant economic losses and animal welfare concerns. Environment control in confined animal housing systems is typically based on heat and moisture production rates at predetermined ambient temperature levels measured between 1950 and 1980. This traditional control method can fall short in meeting the true thermal needs of the animals since it does not account for factors now acknowledged as affecting the animal's productive responses to surrounding conditions, such as humidity, drafts, radiation, physiological state, and social interactions. Also, advancements in animal genetics, nutrition, and management practices have led to considerable changes in sensible and latent heat loads of modern livestock buildings. In this context, precision livestock farming technologies (sensors, detectors, cameras, microphones, etc.), enabling the automatic monitoring of environmental, physiological, and behavioural variables, can be used to continuously assess livestock performance and well-being in relation to their environment. An innovative strategy for environment control of livestock buildings could include the analysis of: (i) heat and moisture production rates using the most recent bioenergetic models; (ii) thermal stress through multi-factor animal comfort indices based on some environmental and physiological measurements; and (iii) animal behaviour as a response to changing environmental conditions. This paper presents a critical review of the state of the art of precision environment control of livestock buildings, identifying knowledge gaps, research opportunities, and technical challenges.(C) 2016 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:气候代表了生产效率的主要限制因素之一。热应力事件可导致性能降低,发病率和死亡率,导致显着的经济损失和动物福利问题。限制动物壳体系统中的环境控制通常基于预定的环境温度水平在1950年至1980年之间的预定环境温度水平的热量和水分生产率。这种传统的控制方法可以在满足动物的真正热需求方面缺乏,因为它不考虑因素现在承认影响动物对周围条件的生产致力,如湿度,草稿,辐射,生理状态和社会互动。此外,动物遗传学,营养和管理实践的进步导致现代牲畜建筑的明智和潜热负荷的相当大的变化。在这方面,精密畜牧业农业技术(传感器,探测器,摄像机,麦克风等),可用于自动监测环境,生理和行为变量,可用于不断评估畜牧业的性能和福祉环境。畜牧业建筑环境控制的创新策略可包括:(i)使用最新生物植物模型的热量和水分生产率; (ii)基于一些环境和生理测量的多因素动物舒适指数的热应力; (iii)动物行为作为对不断变化的环境条件的反应。本文提出了对畜牧业建筑精密环境控制领域的批判性审查,确定知识差距,研究机会和技术挑战。(c)2016年IAGRE。 elsevier有限公司出版。保留所有权利。

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