首页> 外文会议>International Livestock Environment Symposium >Validation of radio frequency identification with a current transducer to quantify the use of an automatic grooming brush in pre-weaned dairy calves.
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Validation of radio frequency identification with a current transducer to quantify the use of an automatic grooming brush in pre-weaned dairy calves.

机译:用电流换能器验证射频识别,以量化预先断奶乳制牛犊的自动梳理刷的使用。

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The objective of this study was to develop and validate an automated recording system of grooming brushes used in dairy calves aged 5 to 6 weeks. Holstein calves (n = 8) housed at the University of Kentucky were fitted with an ultra-high frequency (UHF) radio frequency identification (RFID) ear tag. The calf automatic grooming brush was isolated in a corner of the pen. Current transducers were used to confirm and log brush activation and motion. Two video cameras continuously recorded brush use to create a true value for brush use by each calf during the experimental period. All RFID recordings of brush use alone and in combination with the transducer meter system were regressed against video recordings. After development and adjustment of the system, we predicted the regression of all RFID readings and video observations to be moderate due to false positive readings, and to improve with inclusion of a transducer meter. For daily brush time (min), the coefficient of determination for RFID readingsagainst video observations was weak (i^= 0.26), and for daily brush visits, the correlation coefficient for the RFID reading system against video observations was moderate (1^=0.35). However, incorporation of a transducer meter data to eliminate false positive RFID readings resulted in a strong correlation coefficient for daily brush time (min r2=0.66). These results suggest that automatic grooming brush use in dairy calves has the potential to be automatically recorded using the UHF RFID system in combination with a transducer meter system. Future projects should include other variables and improve the UHF RFID recordings to avoid false negatives.
机译:本研究的目的是开发和验证在5至6周龄奶牛犊牛的修饰刷的自动录音系统。霍尔斯坦小牛(N = 8)位于肯塔基大学,配有超高频(UHF)射频识别(RFID)耳标。小牛自动梳理刷在笔的一角孤立。电流传感器用于确认和记录刷子激活和运动。两台摄像机连续录制刷子用于在实验期间创建每个小牛的刷子使用的真实值。单独使用刷子的RFID录制和与换能器仪表系统组合的所有RFID录制都是对录像来回归的。在制定和调整系统后,我们预测所有RFID读数和视频观测的回归由于假读数,并且通过包含传感器仪表来改善。对于日常刷时间(min),RFID读数视频观察的确定系数弱(I ^ = 0.26),并且对于日刷访问,RFID读取系统对视频观察的相关系数适中(1 ^ = 0.35 )。然而,结合换能器表数据以消除假阳性RFID读数,导致日常刷时间的强相关系数(最小R2 = 0.66)。这些结果表明,在乳制品小径中使用自动梳理刷使用有可能使用UHF RFID系统与传感器仪表系统组合自动记录。未来的项目应包括其他变量,并改善UHF RFID录音,以避免假底片。

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