Research on Pilot Control Strategy and Workload for Tilt-Rotor Aircraft Conversion Procedure

IF 0.1 4区 工程技术 Q4 ENGINEERING, AEROSPACE Aerospace America Pub Date : 2023-08-22 DOI:10.3390/aerospace10090742
Xufei Yan, Ye Yuan, Renliang Chen
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Abstract

This paper studies the pilot control strategy and workload of a tilt-rotor aircraft dynamic conversion procedure between helicopter mode and fixed-wing mode. A nonlinear flight dynamics model of tilt-rotor aircraft with full flight modes is established. On this basis, a nonlinear optimal control model of dynamic conversion is constructed, considering factors such as conversion corridor limitations, pilot control, flight attitude, engine rated power, and wing stall effects. To assess pilot workload, an analytical method based on wavelet transform is proposed, which examines the mapping relationship between pilot control input amplitude, constituent frequencies, and control tasks. By integrating the nonlinear optimal control model and the pilot workload evaluation method, an analysis of the pilot control strategy and workload during the conversion procedure is conducted, leading to the identification of strategies to reduce pilot workload. The results indicate that incorporating the item of pilot workload in the performance index results in a notable reduction in the magnitude of collective stick inputs and longitudinal stick inputs. Moreover, it facilitates smoother adjustments in altitude and pitch attitude. Additionally, the conversion of the engine nacelle can be achieved at a lower and constant angular velocity. In summary, the conversion and reconversion procedures are estimated to have a low workload (level 1~2), with relatively simple and easy manipulation for the pilot.
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倾转旋翼飞机转换过程飞行员控制策略及工作量研究
本文研究了倾转旋翼飞机在直升机模式和固定翼模式之间动态转换过程中的飞行员控制策略和工作量。建立了倾转旋翼飞机全飞行模式的非线性飞行动力学模型。在此基础上,考虑转换通道限制、飞行员控制、飞行姿态、发动机额定功率和机翼失速效应等因素,构建了动态转换的非线性最优控制模型。为了评估导频工作量,提出了一种基于小波变换的导频控制输入幅值、组成频率和控制任务之间的映射关系分析方法。将非线性最优控制模型与飞行员工作量评估方法相结合,分析了转换过程中飞行员的控制策略和工作量,从而确定了减少飞行员工作量的策略。结果表明,在绩效指标中纳入试点工作量项目,可以显著降低集体投入和纵向投入的规模。此外,它有助于更平稳的调整高度和俯仰姿态。此外,发动机短舱的转换可以在较低的恒定角速度下实现。总之,转换和再转换程序估计具有较低的工作量(1~2级),对飞行员来说相对简单和易于操作。
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来源期刊
Aerospace America
Aerospace America 工程技术-工程:宇航
自引率
0.00%
发文量
9
审稿时长
4-8 weeks
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