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Establishing Modularized Environmental Measurements and Analyzing and Applying Environmental Information for a Windowless Broiler House in Taiwan

机译:在台湾建立模块化环境测量和分析和应用环境信息

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The purpose of this study was to apply wireless sensor modules to measure the environmental conditions in a windowless broiler house. An environmental index monitoring system was established that automatically estimated the temperature-humidity index(TH1) and temperature-humidity-velocity index (THVI) according to the collected database. Finally, prediction of the relationships between the TH1 or THVI and the feed conversion rate (FCR) was studied. Nine sets of temperature, relative humidity, and wind velocity sensors were usedfor measuring the inside environment. An additional set was located outside the broiler house. The environmental database used this system of wireless sensors for collecting environmental information, quantifying the environmental indices, and establishing a warning system. The system automatically estimated the THI and THVI according to the database and presented the results in a user interface. Two areas of the broiler house were arranged for daily measurement offeed consumption and individual weight of the broilers for two experiments. These data were applied to calculate the daily weight gain and FCR. The first experiment was conducted from 9 September to 9 October (from summer to autumn) in 2016, and the second experiment was conducted from 3 November to 9 December (from autumn to winter) in 2016. During the experiments, there were no errors in the messages sent by the environmental database and warning system. These results serve as important references for predicting the FCR as well as the THI and THVI. The THVI of the first experiment and the THI of the second experiment predicted the FCR with a good relationship. The results show that the indoor and outdoor THI values could be higher than the standard values. Inthe FCR statistical analysis, the FCR of the second experiment was lower than the FCR of the first experiment, and they were both lower than the criterion FCR. This implies that opportunities exist for improving the broiler house environment in this subtropical climate. The results of this study could become an important reference for predicting the FCR with the THI and THVI. Finally, prediction of the relationships between the THI or THVI and the FCR were conducted. The results of the second experiment(R2 = 0.8327) were significantly better than the results of the first experiment (R2 = 0.5184).
机译:本研究的目的是应用无线传感器模块,以测量无窗口肉鸡房屋中的环境条件。建立了环境指标监测系统,其根据收集的数据库自动估计温度湿度指数(TH1)和温度湿度 - 速度指数(THVI)。最后,研究了研究TH1或THVI与饲料转化率(FCR)之间的关系。九套温度,相对湿度和风速传感器用于测量内部环境。额外的一套位于肉鸡之外。环境数据库使用该系统的无线传感器,用于收集环境信息,量化环境指标,并建立一个警告系统。系统根据数据库自动估计THI和THV,并在用户界面中呈现结果。肉鸡房屋的两个区域被安排用于每日测量的脱离消费和两个实验的肉鸡的个体重量。应用这些数据来计算每日体重增加和FCR。第一次实验于2016年9月9日至10月9日(从夏季到秋季)进行,第二个实验于2016年11月3日至12月9日(从秋季到冬季)进行。在实验期间,没有错误环境数据库和警告系统发送的消息。这些结果作为预测FCR以及THI和THV的重要参考。第一个实验的THVI和第二个实验的THI预测了FCR的关系。结果表明,室内和室外THI值可能高于标准值。 INTHE FCR统计分析,第二个实验的FCR低于第一个实验的FCR,它们均低于标准FCR。这意味着存在在这种亚热带气候中改善肉鸡房屋环境的机会。该研究的结果可能成为预测与THI和THVI和THVI的FCR的重要参考。最后,进行了对THI或THVI和FCR之间的关系的预测。第二实验的结果(R2 = 0.8327)显着优于第一实验的结果(R2 = 0.5184)。

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