Zanoni Andrea, Garbo Pierre, Masarati Pierangelo, Quaranta Giuseppe
Department of Aerospace Science and Technology, Politecnico di Milano, 20156 Milan, Italy.
Sensors (Basel). 2023 Jul 11;23(14):6308. doi: 10.3390/s23146308.
Sensing the interaction between the pilot and the control inceptors can provide important information about the pilot's activity during flight, potentially enabling the objective measurement of the pilot workload, the application of preventive actions against loss of situational awareness, and the identification of the insurgence of adverse couplings with the vehicle dynamics. This work presents an innovative pressure-sensing device developed to be seamlessly integrated into the grips of conventional aircraft control inceptors. The sensor, based on frustrated total internal reflection of light, is composed of low-cost elements and can be easily manufactured to be applicable to different hand pressure ranges. The characteristics of the sensor are first demonstrated in laboratory calibration tests. Subsequently, applications in flight simulator testing are presented, focusing on the objective representation of the pilot's instantaneous workload.
感知飞行员与控制输入设备之间的相互作用,可以提供有关飞行过程中飞行员活动的重要信息,这有可能实现对飞行员工作负荷的客观测量、针对态势感知丧失采取预防措施,以及识别与飞行器动力学的不良耦合的出现。这项工作展示了一种创新的压力传感装置,该装置被开发用于无缝集成到传统飞机控制输入设备的握把中。该传感器基于光的受抑全内反射原理,由低成本元件组成,并且可以很容易地制造以适用于不同的手部压力范围。该传感器的特性首先在实验室校准测试中得到展示。随后,介绍了在飞行模拟器测试中的应用,重点是对飞行员瞬时工作负荷的客观呈现。