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Investigation of the effects of bandwidth and time delay on helicopter roll-axis handling qualities

机译:研究带宽和时间延迟对直升机侧倾轴操纵质量的影响

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摘要

Several years of cooperative research conducted under the U.S./German Memorandum of Understanding (MOU) in helicopter flight control has recently resulted in a successful handling qualities study. The focus of this cooperative research has been the effects on handling qualities due to time delays in combination with a high bandwidth vehicle. The jointly performed study included the use of U.S. ground-based simulation and German in-flight simulation facilities. The NASA-Ames Vertical Motion Simulator (VMS) was used to develop a high bandwidth slalom tracking task which took into consideration the constraints of the facilities. The VMS was also used to define a range of the test parameters and to perform initial handling qualities evaluations. The flight tests were conducted using DLR's variable-stability BO 105 S3 Advanced Technology Testing Helicopter System (ATTHeS). Configurations included a rate command and an attitude command response system with added time delays up to 160 milliseconds over the baseline and bandwidth values between 1.5 and 4.5 rad/sec. Sixty-six evaluations were performed in about 25 hours of flight time during ten days of testing. The results indicate a need to more tightly constrain the allowable roll axis phase delay for the Level 1 and Level 2 requirements in the U.S. Army's specification for helicopter handling qualities, ADS-33C.
机译:根据美国/德国谅解备忘录(MOU)在直升机飞行控制方面进行的几年合作研究最近取得了成功的操纵品质研究。这项合作研究的重点是与高带宽车辆相结合的时间延迟对操作质量的影响。联合进行的研究包括使用美国地面模拟和德国空中模拟设施。 NASA-Ames垂直运动模拟器(VMS)用于开发考虑了设施限制的高带宽激流回旋跟踪任务。 VMS还用于定义一系列测试参数并执行初始处理质量评估。使用DLR的可变稳定性BO 105 S3先进技术测试直升机系统(ATTHeS)进行了飞行测试。配置包括速率命令和姿态命令响应系统,在基线上的时间延迟最多增加了160毫秒,带宽值在1.5到4.5 rad / sec之间。在测试的10天中,约25个小时的飞行时间进行了66次评估。结果表明,需要更严格地限制美国陆军直升机处理质量规范ADS-33C中1级和2级要求的侧倾轴相位延迟许可。

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