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A Flight Simulator Study of an Energy Control System for Manual Flight

机译:手动飞行能量控制系统的飞行模拟器研究

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This article describes a flight simulator study to validate a new command control system for longitudinal load factor n(x). The system is called nxControl and actuates thrust, speedbrakes, and wheel brakes that directly influence the total energy state of the aircraft. It aims at manually flying with higher precision and lower workload. After a brief overview of the functionality of nxControl and its cockpit interfaces, the key results of earlier proof-of-concept simulator studies are summarized. The focus lies on the comprehensive flight simulator study with 24 airline pilots to conclusively evaluate the complete system. The task was a highly demanding approach trajectory containing segmented-continuous-descent in gusty wind conditions, touch-down, deceleration, and taxi as well as engine failure at low altitude. With nxControl, the pilots achieved higher precision in airspeed and energy control with lower workload compared to conventional manual thrust control. In addition, nxControl achieved safety benefits in case of an engine failure.
机译:本文介绍了一种飞行模拟器研究,用于验证用于纵向负载因子N(x)的新命令控制系统。该系统称为NXControl,并致动螺杆,速度卷,以及直接影响飞机总能量状态的轮式制动器。它旨在用更高的精度和更低的工作量来手动飞行。简要概述了NXControl及其驾驶舱接口的功能后,概述了早期概念验证模拟器研究的关键结果。重点在于,全面飞行模拟器与24航空公司飞行员进行了综合性,以得出完整的系统。该任务是一种高苛刻的方法,旨在陷入阵风风力条件,触控,减速和出租车的分段连续下降,以及低海拔的发动机故障。通过NXControl,飞行员在空速和能量控制方面取得了更高的精度,与传统的手动推力控制相比,工作量较低。此外,在发动机故障的情况下,NXControl实现了安全益处。

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