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Operating Performance Evaluation of Actuator System for Subsonic GA Wind Tunnel Testing

机译:亚音速GA风洞测试执行器系统的运行性能评估

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JAXA has been conducting research and development of the on-board safety avionics technology to prevent turbulence-induced aircraft accidents (Safe Avio) that uses Doppler light detection and ranging (LIDAR) to detect the turbulence in advance and the preview controller to utilize the turbulent velocity information measured by LIDAR to attenuate the aircraft acceleration in turbulence. The preview controller should be validated by a subsonic GA (Gust Alleviation) wind tunnel testing as the first step. The high performance actuator system, which drives the control surfaces to alleviate the gust influence on the aircraft, is required to realize the wind tunnel testing. So far the design study, prototyping and performance evaluation of the piezoelectric actuator system are carried out successfully as the first stage. Then, the bench test is carried out to evaluate the operability of the actuator system with an isolated configuration and demonstrates that the aileron follows the simulated control command with very little time lag. Finally, it is demonstrated by the integrated configuration test with the wind tunnel testing set up that the actuator system can achieve the aileron operation capability to realize the gust response and mitigation algorithm during the wind tunnel test.
机译:JAXA一直在进行机载安全航空电子技术的研究和开发,以防止湍流引起的飞机事故(Safe Avio),该技术使用多普勒光检测和测距(LIDAR)预先检测湍流,并使用预览控制器来利用湍流LIDAR测得的速度信息,以减弱飞机在湍流中的加速度。作为第一步,应通过亚音速GA(阵风)风洞测试来验证预览控制器。为了实现风洞测试,需要高性能的执行器系统来驱动控制面以减轻阵风对飞机的影响。到目前为止,作为第一阶段,压电致动器系统的设计研究,原型设计和性能评估已成功进行。然后,进行了台架试验,以评估具有隔离结构的执行器系统的可操作性,并证明了副翼遵循仿真控制命令的时间非常短。最后,通过对风洞测试的综合配置测试证明,执行器系统可以实现副翼操作能力,从而在风洞测试期间实现阵风响应和缓解算法。

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