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Closed-Loop Control of Poultry Deep Body Temperature Using Variable Air Velocity: A Feasibility Study

机译:利用可变风速对家禽深体温度进行闭环控制的可行性研究

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Current poultry housing environmental controllers do not directly factor in the state of the birds themselves, such as their deep body temperature (DBT) responses. In this article, we propose and investigate the feasibility of a new approach for real-time closed-loop control of poultry DBT under heat stress conditions using variable air velocity. Using five commercial breed broilers, an experimental tunnel ventilation enclosure placed inside an environmentally controlled chamber, implanted radio telemetry sensors, and a programmable logic controller (PLC), four experimental trials were conducted using a proportional-integral type feedback controller. The results indicated that (1) air velocity has a measurable, dynamic, and almost immediate impact on DBT of birds under heat stress; and (2) DBT of heat-stressed broilers can be maintained below a setpoint by varying air velocity using feedback control. These preliminary results suggest that using DBT as a feedback variable to manipulate air velocity within poultry housing is a promising approach. This article represents a first step towards the design of the future poultry environmental controller that responds directly to the physiological needs of the birds.
机译:当前的禽舍环境控制者不能直接考虑禽类本身的状态,例如其深层体温(DBT)响应。在本文中,我们提出并研究了一种新方法在可变风速下热应激条件下对家禽DBT进行实时闭环控制的可行性。使用五只商品种肉鸡,置于环境控制室内的实验性隧道通风罩,植入的无线电遥测传感器和可编程逻辑控制器(PLC),使用比例积分型反馈控制器进行了四项实验。结果表明:(1)在热应激条件下,风速对家禽的DBT具有可测量,动态和几乎直接的影响; (2)通过使用反馈控制改变空气速度,可使热应激肉鸡的DBT保持在设定值以下。这些初步结果表明,使用DBT作为反馈变量来控制禽舍内的空气速度是一种很有前途的方法。本文代表了未来家禽环境控制器设计的第一步,该控制器直接响应鸟类的生理需求。

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