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An ultra-high frequency radio frequency identification system for studying individual feeding and drinking behaviors of group-housed broilers

机译:用于研究群养肉鸡个体进食和饮水行为的超高频射频识别系统

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摘要

Radio frequency identification (RFID) technology offers a real-time solution to monitor behavioral responses of individual animals to various stimuli, which provides crucial implications on farm management and animal well-being. The objectives of this study were to (1) develop and describe an ultra-high frequency radio frequency identification (UHF-RFID) system for continuously monitoring feeding and drinking behaviors of individual broilers in group settings; and (2) validate the performance of the UHF-RFID system against video analysis in determining the instantaneous bird number (IBN) and time spent (TS) at feeder and drinker. The UHF-RFID system consisted of cable-tie tags, antennas, a reader and a data acquisition (DAQ) system. The antennas generated electromagnetic fields where tags were detected and registered by the DAQ system. Electromagnetic fields of the antennas were modified to cover areas of concern (i.e. tube feeders and nipple drinkers) through a series of system evaluations and customizations including tag sensitivity test, power adjustment, radio wave shielding, and assessment of interference by add-ons (e.g. plastic wraps for protecting antennas and an empty carton box for zoning out broilers) and feed/feeder. System validation was performed in two experimental rooms, each with 60 tagged broilers. The results showed that the max reading distances of tags with an identical manufacturer’s specification were markedly different, indicating large variations in sensitivity among the tags. Desired electromagnetic fields could be achieved by adjusting the power supplied to antennas and by partially shielding antennas with customized stainless steel sheets. The protection materials and fully loaded feeder had little effect on electromagnetic fields of the antennas. The accuracies of the UHF-RFID system for determining IBN and TS were, respectively, 92.5±4.2% and 99.0±1.2% by the feeder antennas and 94.7±4.2% and 93.7±6.9% by the drinker antennas. It is concluded that the UHF-RIFD system can accurately detect and record feeding and drinking behaviors of individual broilers in group settings and thus is a useful tool for investigating impacts of resource allocations and management practices on these behaviors.
机译:射频识别(RFID)技术提供了一种实时解决方案,用于监视单个动物对各种刺激的行为响应,这对农场管理和动物福祉具有至关重要的意义。这项研究的目的是(1)开发和描述一种超高频射频识别(UHF-RFID)系统,用于连续监测群体环境中单个肉鸡的进食和饮水行为; (2)在确定喂食者和饮者的瞬时禽鸟数量(IBN)和花费时间(TS)时,通过视频分析验证UHF-RFID系统的性能。 UHF-RFID系统由电缆扎带标签,天线,阅读器和数据采集(DAQ)系统组成。天线产生电磁场,通过DAQ系统检测并记录标签。通过一系列系统评估和定制,包括标签灵敏度测试,功率调整,无线电波屏蔽以及附加组件对干扰的评估,对天线的电磁场进行了修改,以覆盖关注的区域(即管饲器和乳头饮水器)。用来保护天线的保鲜膜和用于将肉鸡分区的空纸箱和饲料/喂料器。系统验证是在两个实验室进行的,每个实验室配有60个带标签的肉鸡。结果表明,具有相同制造商规格的标签的最大读取距离明显不同,表明标签之间的灵敏度差异很大。可以通过调节提供给天线的功率并用定制的不锈钢板部分屏蔽天线来获得所需的电磁场。保护材料和满载的馈线对天线的电磁场影响很小。 UHF-RFID系统通过馈线天线确定IBN和TS的准确度分别为92.5±4.2%和99.0±1.2%,通过饮水器天线确定为94.7±4.2%和93.7±6.9%。结论是,UHF-RIFD系统可以准确地检测和记录群体环境中单个肉鸡的进食和饮水行为,因此是调查资源分配和管理实践对这些行为影响的有用工具。

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