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A sensor-based solution to monitor grazing cattle drinking behaviour and water intake

机译:基于传感器的解决方案,用于监控放牧牛饮用行为和水摄入量

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The aim of the study was to bring together a combination of stationary (Radio Frequency IDentification (RFID), water flow meter) and animal-attached (accelerometer) sensors in an automated approach to record beef cattle drinking behaviour and herd water intake in grazing systems. An experiment was conducted to collect and validate data from the behaviour monitoring system. A water trough located in an enclosed water point was equipped with a water flow meter. The water point entry and exit gates were each fitted with a RFID panel reader. The eight beef heifers that grazed the experimental site wore a RFID ear tag in the right ear and a motion sensing neck collar that contained a triaxial accelerometer. The heifers had ad libitum access to the water point at all times. Sensor data and video observations were recorded over four consecutive weeks. When operational, the RFID readers correctly recorded 95% (94/99) of heifer movements in and out of the water point and were correlated (r = 0.99) to observed entry and exit times. Volumes of water recorded by the water meter were correlated (r = 0.99) to measured water volumes taken from the trough's inlet and from water in the trough while under the control of a float valve. An algorithm was developed to classify drinking using accelerometer measures of head-neck position, activity and movement frequency. The accelerometer algorithm detected 94% (98/104) of drinking events that were greater than 10 s in duration (F1 score = 77%) and was correlated (r = 0.84) to the observed duration of drinking events. Differences between observed and predicted estimates of the number of drinking events that were greater than 10 s in duration (1.6 +/- 1.1 vs. 2.0 +/- 1.8, respectively) and the time spent drinking (45.8 +/- 24.1 vs. 43.1 +/- 42.8, respectively) per heifer visit to the water yard were not significant (p > 0.05). The approach is considered reliable for recording a number of behavioural measures including the number, duration and frequency of visits per animal to a water point, the number and duration of drinking events per animal visit and the time each animal spends drinking.
机译:该研究的目的是以自动化的方法汇集固定式(射频识别(RFID),水流量计)和动物附着(加速度计)传感器的组合,以记录放牧系统中的牛肉牛饮用行为和牛群水摄入量。进行实验以收集和验证行为监测系统的数据。位于封闭水点的水槽配备了水流量计。水点入口和出口栅极各自配有RFID面板读卡器。将实验部位放置的八个牛仔母牛母牛在右耳中穿着RFID耳标和包含三轴加速度计的运动传感颈圈。小母牛始终有广告利用水点。传感器数据和视频观察连续四周记录。当操作时,RFID读者在水点进出水点并从水点进行了95%(94/99),并与观察到的进入和退出时间相关(r = 0.99)。水表记录的水量被相关(r = 0.99),以测量从槽入口中取出的水体积,并在浮动阀的控制下从槽中的水中。开发了一种算法以使用头颈位置,活动和移动频率的加速度计测量来分类饮用。加速度计算法检测到94%(98/104)持续时间大于10 s的饮酒事件(F1得分= 77%),并与观察到的饮酒事件的持续时间相关(r = 0.84)。观察和预测估计的差异在持续时间大于10 s的饮酒事件的数量(分别为1.6 +/- 1.1,分别为2.0 +/- 1.8,饮酒时间(45.8 +/- 24.1与43.1) +/- 42.8分别为每次对水栅的小母船访问不显着(p> 0.05)。该方法被认为是可靠的,用于记录许多行为措施,包括每只动物访问的数量,持续时间和频率到水点,每只动物访问的饮酒事件的数量和持续时间以及每只动物花费饮酒的时间。

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