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Ultrasonic air temperature sensing for automatic climate control-Vehicle test

机译:自动气候控制车辆测试超声波空气温度感应

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An ultrasonic air temperature sensor, intended to help improve automatic climate control (ACC), has been demonstrated in a vehicle. Ideally, ACC should be based on inputs correlated with thermal comfort. Current ACC systems do not measure the air temperature best correlated to thermal comfort at breath level in front of an occupant. This limits the thermal comfort that ACC can provide under transient conditions. An ultrasonic sensor measures the bulk air temperature, is transparent to the driver, and can use commercially available components. In a proof-of-concept test, we monitored the thermal transients in a vehicle during cool-down after a hot soak and also during warm-up after a cold soak. The ultrasonic path was along the roof console. The ultrasonic temperature always agreed to ±1°C with the air temperature measured by a thermocouple at the midpoint of the ultrasonic path. Compared to breath-level temperature, there was good agreement for the winter test but, for the summer test there was a 5°C constant shift. Thermocouple data taken at the two locations showed the same effect. The ultrasonic sensor is rapid and precise, and it is a good candidate for improving ACC.
机译:旨在帮助改善自动气候控制(ACC)的超声波空气温度传感器已经在车辆中进行了证明。理想情况下,ACC应基于与热舒适性相关的输入。当前的ACC系统不测量与乘员前面的呼吸水平的热舒适性最佳。这限制了ACC可以在瞬态条件下提供的热舒适度。超声波传感器测量散装空气温度,对驾驶员透明,可以使用市售的部件。在概念上的验证测试中,我们在热浸泡后在冷却后监测车辆中的热瞬变,并且在冷浸泡后在预热过程中也是如此。超声波路径沿着车顶控制台。超声波温度始终同意±1°C,通过超声波路径中的热电偶测量空气温度。与呼吸级温度相比,冬季测试良好的一致性,但是,对于夏季测试,有一个5°C的恒定变化。在两个位置拍摄的热电偶数据显示出相同的效果。超声波传感器快速且精确,并且是改善ACC的良好候选者。

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