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Continuous and Wireless Skin Contact and Ear Implant Temperature Measurements and Relations to the Core Body Temperature of Heat Stressed Dairy Cows

机译:连续和无线皮肤接触和耳朵植入温度测量和与热压奶牛核心体温的关系

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Most dairy producers attempt to control the complex microenvironments inside their barns, and to do so they often rely on various types of electric fans as well as operational guidelines based solely on local temperature and/or relative humidity readings. Such constraints often produce an inefficient and suboptimal rate of air movement through the cow-occupied space. The present study attempts to find a viable alternative to this problem. Since well-being and productivity are directly related to corebody temperature (CBT), this measure should be integral to any attempt to quantify a cow's level of heat stress. However, if any particular significance is to be assigned to CBT, the CBT must be continuously measured to enable the timely control of theairflow. Consequently, this work aims to rely on multi-disciplinary approaches to (i) design ultra-low-power, low-cost, non-invasive skin and core body temperature sensors and (ii) design a framework for precision system operation based on the real-timeCBT. A wireless, skin- or core-body-temperature reader, which can be affixed to existing straps, is designed and tested. Using a low-power wireless frontend, the device can give the sensor a longer life. A framework that utilizes the real-time CBT measurements, integrated with ambient temperature and relative humidity readings, is discussed in terms of how it could achieve the desirable micro-environmental conditions. The present study thus seeks to provide commercial dairy farmers with a less invasiveway to gather data from their dairy cows in order to make key decisions concerning system operations and their animals' well-being, and as a consequence to maximize milk production in an economical and environmentally sustainable way.
机译:大多数乳制品生产商试图控制其谷仓内的复杂的微环境,并这样做,因此它们通常依靠各种类型的电风扇以及仅基于局部温度和/或相对湿度读数的操作指南。这种约束通常通过牛占空方的空间产生效率低下的空气运动速率。目前的研究试图找到这个问题的可行替代品。由于福祉和生产力与核心温度(CBT)直接相关(CBT),因此该措施应该是任何尝试量化牛热应激水平的尝试的一体化。但是,如果要将任何特定的意义分配给CBT,则必须连续测量CBT以使其能够及时控制TheaIrflow。因此,这项工作旨在依靠多学科方法(i)设计超低功耗,低成本,非侵入性皮肤和核心体温传感器和(ii)根据基于的精密系统运行设计框架真实时间。设计和测试可贴上现有带子的无线,皮肤或核心 - 体温读取器。使用低功耗无线前端,设备可以使传感器更长的寿命。利用与环境温度和相对湿度读数集成的实时CBT测量的框架是在其达到所需的微环境条件方面的讨论。因此,目前的研究旨在为商业乳制品农民提供具有较少的入侵者,以收集来自奶牛的数据,以便制定有关系统运营及其动物福祉的关键决策,并因此在经济和经济型和最大化牛奶生产中的关键决定。因此环境可持续的方式。

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