COTS超声燃料量测量的可能性

Petr Petlach, M. Dub
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引用次数: 7

摘要

本文论述了现代工业传感器在飞机燃油量测量中的应用可能性。对固定翼或旋翼飞机进行燃料量测量的目的是提供关于所有飞机姿态和所有类型燃料下的燃料总量和燃料变化的信息。在飞机技术中,以油位测量为基础的燃油量测量有两种基本方法。这两种方法都是接触式测量方法,燃油计始终与燃油接触。旧的,更容易和更便宜的方法是基于浮子液位传感器。现代更精确的方法是基于电容式液位传感器。测量的燃油水平然后转换为燃料的体积或重量,并显示在驾驶舱的燃油指示器上。这两种方法都有一些局限性,因此,另一种燃料液位测量方法已经在船上引入。我们的实际实验探讨了将COTS超声传感器应用于小型飞机油箱内燃油测量的可能性。超声波燃料位测量是基于在液体和空气的界面反射声能。测试工况包括飞机姿态变化、机械力变化和温度变化对整个测量系统的影响。在实际实验中,采用参考电容式燃油计测量燃油量。根据实验结果对COTS超声液位测量误差进行了量化,并提出了系统误差最小化的技术措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Possibilities of COTS ultrasonic fuel quantity measurement
The article deals with possibilities of utilization of modern industrial sensors for aircraft fuel quantity measurement. The purpose of the fuel quantity measurement in aircraft with either stationary or rotary wings is to provide information about the total amount of fuel and fuel variations under all aircraft attitudes and with all types of fuel. In aircraft technology, there are especially two basic methods of fuel quantity measurement used that are based on measurement of fuel level. Both methods are contact measurement methods and the fuel gauge is always in contact with fuel. The older, easier and cheaper method is based on float level sensors. Modern and more precise method is based on capacitance level sensors. The measured fuel level is then converted to volume or weight of the fuel and displayed on a fuel indicator in the cockpit. Both methods have some limitations and for that reason another fuel level measurement methods have been introduced onboard. Our practical experiments deal with possibilities of COTS ultrasonic sensors utilization for fuel gauging inside small aircraft fuel tank. Ultrasonic fuel level measurement is based on reflecting sound energy at an interface of liquid and air. Tested operating conditions include influence of aircraft attitude changes, mechanical forces changes and temperature changes on whole measuring systems. Fuel volume is also measured by reference capacitance fuel gauge during practical experiments. Experimental results lead to error quantification of COTS ultrasonic fluid level measurement and following technical measures to minimization of systematic errors.
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