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Progress in the development of a versatile pilot model for the evaluation of rotorcraft performance, control strategy and pilot workload

机译:用于评估旋翼飞机性能,控制策略和飞行员工作量的通用飞行员模型的开发进展

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摘要

The evaluation of rotorcraft performance and handling qualities in piloted flight using a desk-top simulation is a desirable facility. The development of the SYCOS pilot model has brought this capability closer by simulating piloted flight along prescribed trajectories such as the Mission Task Elements of ADS-33. This development has overcome some of the limitations of the precise control of inverse simulation, by adopting a structure which includes a corrective component that adjusts the control strategy to counteract departures from the desired flight path. The development and implementation of SYCOS for a range of rotorcraft types and applications is shown to be well defined and straightforward. The capability and reliability of SYCOS is demonstrated through a number of recent applications in performance, control strategy and pilot workload studies. Some of the applications benefit from enhancements to the basic structure and these are described in context. The accumulation of experience with the SYCOS pilot indicates that it is a significant advance as a predictor of human control activity during helicopter manoeuvring flight.
机译:使用台式仿真器评估旋翼飞机性能和操纵飞行中的操纵质量是一种理想的工具。 SYCOS飞行员模型的发展通过模拟沿着预定轨迹(例如ADS-33的任务任务元素)的飞行员飞行,使这种能力更加接近。通过采用包括校正组件的结构,该改进克服了逆仿真的精确控制的某些限制,该结构可以调整控制策略以抵消偏离所需飞行路径的问题。 SYCOS针对多种旋翼飞机类型和应用的开发和实施已被明确定义且简单明了。 SYCOS的功能和可靠性通过性能,控制策略和飞行员工作量研究中的许多最新应用得到了证明。一些应用程序受益于基本结构的增强,并且在上下文中进行了描述。 SYCOS飞行员的经验积累表明,作为直升机机动飞行中人类控制活动的预测指标,这是一个重大进步。

著录项

  • 来源
    《The Aeronautical Journal》 |2003年第1078期|p.731-738|共8页
  • 作者

    R. Bradley; G. Brindley;

  • 作者单位

    School of Computing and Mathematical Sciences Glasgow Caledonian University Glasgow, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空;
  • 关键词

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