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Development and validation of an autonomous radio-frequency identification controlled soaking system for dairy cattle

机译:乳制品自主射频识别控制浸泡系统的开发与验证

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This study aim was to develop and validate a radio-frequency identification (RFID) controlled cattle soaking system for use in dairy cattle. The autonomous system was composed of a Raspberry Pi microcontroller, an ultra-high frequency (UHF) RFID system, a temperature-humidity sensor, and a water soaker. The system was developed and programmed to identify and tailor heat stress abatement to dairy cattle. The validation of the system was divided into static and dynamic phases. During the static phase,five UHF-RFID tags were placed 5 times in 11 point of interest on a ranging from 0 to 150 cm of the antenna. During the dynamic phase, 10 tags were moved 10 times each from 150 cm to the right to 150 cm to the left of the center of the antenna mimickinga cow's walking speed. During the static validation, the percentage of successful readings was moderate (MEAN±SD; 77.8±30.1%). We found that the distance from the antenna affected the percentage of successful readings (P<0.01), it was 100% up to 60 cmfrom the antenna and static readings were less successful from 120 cm left up to 90 cm to the right of the center of the antenna. During the dynamic validation, the percentage of successful readings was very high (96.0±7.0%). These results suggest thatthe autonomous soaker system seems to be able to detect cows in movement underneath the system. Future research should investigate the effects on the physiology, production, and behavior of heat-stressed dairy cows.
机译:本研究目的是开发和验证射频识别(RFID)控制的牛浸泡系统,用于奶牛。自主系统由覆盆子PI微控制器,超高频(UHF)RFID系统,温度湿度传感器和水浸泡器组成。该系统是开发和编程的,以识别和定制与奶牛的热应力消除。系统的验证分为静态和动态阶段。在静态阶段,在从0到150cm的天线的范围内,在11个兴趣点中放置5个UHF-RFID标签。在动态阶段,10个标签从150厘米到150厘米到150厘米到150厘米到天线的左侧的步行速度的左侧。在静态验证期间,成功读数的百分比适中(平均值±SD; 77.8±30.1%)。我们发现,从天线的距离影响成功读数的百分比(P <0.01),它的天线和静态读数从120厘米到中心左右90厘米的静态读数减少了100%。天线。在动态验证期间,成功读数的百分比非常高(96.0±7.0%)。这些结果表明,自主浸泡系统似乎能够检测系统下方运动中的奶牛。未来的研究应该调查热力强调奶牛的生理学,生产和行为的影响。

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