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EVALUATION OF A SLUNG LOAD CONTROL SYSTEM FOR PILOTED CARGO OPERATIONS

机译:虚假货物运行的负载控制系统评估

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Helicopter operations with externally slung loads are highly demanding for the flight crew. Without having a direct view on the load, the pilot requires assistance from an additional crew member for load handling to achieve operational requirements (e.g. precise load positioning). An automatic load stabilization and positioning system for cargo operations has been designed with the aim to reduce pilot workload, damp load pendulum motion and to improve the load positioning performance. This system uses the concept of load-motion feedback to the rotor control. To avoid degradation of Handling Qualities (HQs), as found in previous investigations, a function has been developed that monitors pilot control inputs. Dependent on the amplitude and duration of pilot control stick deflection, the feedback signal for slung load damping is blended between two different gain sets. One set provides improved HQs during piloted control and one set provides good load damping when the pilot is passive. A further novel aspect is the evaluation of an automatic load control system using a Translational Rate Command as method of helicopter control. A piloted simulation study has been conducted using this advanced load control system with automatic load stabilization and positioning. Three test pilots evaluated the system in different control law configurations using a Mission Task Element simulating an external load cargo operation. HQs and pilot workload were evaluated using the Cooper-Harper Rating Scale and NASA Task Load Index respectively. The results of the study show that improved HQs in combination with improved task performance can be achieved with the advanced slung load control system.
机译:具有外部悬挂载荷的直升机操作对飞行机组人员提出了很高的要求。在不直接了解负载的情况下,飞行员需要其他机组人员的协助来进行负载处理,以达到操作要求(例如精确的负载定位)。设计了一种用于货物运行的自动负载稳定和定位系统,旨在减少飞行员的工作量,抑制负载摆运动并改善负载定位性能。该系统使用负载运动反馈到转子控制的概念。为避免操作质量(HQ)下降,如先前的研究中发现的那样,已开发了一种功能来监视飞行员控制输入。根据先导控制杆挠曲的幅度和持续时间,用于倾斜负载阻尼的反馈信号会在两个不同的增益集之间进行混合。一组可在先导控制期间提供改进的HQ,而另一组可在先导为被动时提供良好的负载阻尼。另一个新颖的方面是使用平移率命令作为直升机控制方法的自动负载控制系统的评估。使用这种具有自动负载稳定和定位功能的高级负载控制系统,已经进行了试验性模拟研究。三名测试飞行员使用模拟外部负载货物运行的任务任务元素,以不同的控制律配置对系统进行了评估。分别使用Cooper-Harper评分量表和NASA任务负荷指数评估了总部和飞行员的工作量。研究结果表明,通过先进的悬挂负载控制系统,可以提高总部的质量,同时提高任务性能。

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