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CLIMATE CONTROL BASED ON TEMPERATURE MEASUREMENT IN THE ANIMAL-OCCUPIED ZONE OF A PIG ROOM WITH GROUND CHANNEL VENTILATION

机译:基于温度测量的带通道通风猪场动物区的温度控制

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It is known that there can be a significant temperature difference between the position of the climate controller sensor (room temperature) and the animal-occupied zone (AOZ) in a pig room. This study explores the advantages of using AOZ temperature in climate control. The objectives were: (1) to evaluate a current climate control system in a practical room with ground channel ventilation for weaned piglets by comparing AOZ and room temperature, and (2) to determine advantages of control of the heating system based on AOZ temperature by a model-based predictive (MBP) controller. Comparison of AOZ and room temperature showed that during the first 10 days of the two experimental batches, AOZ temperature was lower and showed greater fluctuations than room temperature, most likely due to the switching of the heating system (on/off). Animals close to the sensor could disturb the AOZ measurement. This was not the case during colder nights, when animals moved away from the sensor and the measured AOZ temperature was a good indicator of the air temperature around the animals. The data for those periods were suitable for use in this climate control study, but when applying the system in practice the disturbing effect needs to be prevented by better protection of the AOZ sensor. For the second objective, the course of the AOZ temperature was modeled based on data for five nights when the heating switched on and off several times (goodness of fit R t 2 = 0.77). One of the models was integrated in a simulated MBP controller that uses the model to predict future AOZ temperature; the controller switches the heating system on before the AOZ gets too cold and off before it gets too warm. The simulated AOZ temperature was more stable during an 11 h cold period; the standard deviation was reduced from 0.44°C to 0.18°C
机译:众所周知,在猪舍中,气候控制器传感器的位置(室温)与动物占用区(AOZ)之间可能存在明显的温差。这项研究探索了在气候控制中使用AOZ温度的优势。目标是:(1)通过比较AOZ和室温来评估断奶仔猪地面通道通风的实际房间中的当前气候控制系统,以及(2)确定基于AOZ温度的供暖系统控制的优势。基于模型的预测(MBP)控制器。 AOZ和室温的比较表明,在两个实验批次的前10天中,AOZ温度比室温更低,并且波动幅度更大,这很可能是由于加热系统的切换(开/关)引起的。靠近传感器的动物可能会干扰AOZ测量。在较冷的夜晚,情况并非如此,当时动物从传感器移开,并且测得的AOZ温度很好地指示了动物周围的空气温度。这些时期的数据适合用于此气候控制研究,但是在实际应用该系统时,需要通过更好地保护AOZ传感器来防止干扰影响。对于第二个目标,基于连续五次加热和关闭多次加热的五个晚上的数据对AOZ温度的过程进行建模(拟合优度R t 2 = 0.77)。其中一个模型集成在模拟的MBP控制器中,该控制器使用该模型预测未来的AOZ温度。控制器会在AOZ变得太冷之前打开加热系统,并在AOZ变得太热之前关闭加热系统。在11小时的寒冷期间,模拟的AOZ温度更加稳定。标准偏差从0.44°C降低到0.18°C

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