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The second wind-tunnel test of DLR's multiple swashplate system

机译:DLR多斜盘系统的第二个风洞试验

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After proving its individual blade control (IBC) capabilities on a four-bladed rotor system in the wind tunnel, the DLR's multiple swashplate system and its control software were developed further to allow IBC operation on a five-bladed rotor system. After preliminary tests in hover conditions, a second wind-tunnel test was performed in the DNW-LLF wind tunnel in late 2016. The goal of this test on a Mach-scaled model rotor was to reduce vibration, noise, and required rotor power in different flight conditions using proven IBC strategies as well as localized pitch control (LPC) on five blades. In descent flight condition, significant reductions of blade-vortex interaction noise relative to the baseline case were achieved on both sides of the rotor disk through the application of 2/rev higher harmonic control as well as using an LPC schedule. Through the application of 3/rev IBC as well as a vibration controller using a 4-6/rev multi-harmonic IBC signal, 5/rev hub loads were reduced significantly and the 5/rev vertical vibrations were nearly eliminated. In addition, during simulated high-speed-level flight with a wind speed of 76 m/s, the required rotor power was successfully reduced using a 2/rev input with an amplitude of 1°.
机译:在证明其在风隧道中的四叶转子系统上的各个刀片控制(IBC)功能之后,进一步开发了DLR的多次斜盘系统及其控制软件,以允许IBC操作在五叶转子系统上。在悬停条件下进行初步测试后,2016年底在DNW-LLF风隧道中进行了第二个风隧道试验。该测试在Mach-Scaled模型转子上的目的是减少振动,噪声和所需的转子电力使用经过验证的IBC策略以及五个刀片的本地化音高控制(LPC)不同的飞行条件。在下降的飞行条件下,在转子盘的两侧通过应用2 / Rev更高的谐波控制以及使用LPC时间表,在转子盘的两侧实现了相对于基线情况的显着降低了相对于基线情况。通过3 / Rev IBC以及使用4-6 / Rev多谐波IBC信号的振动控制器,5 / Rev集线器载荷显着降低,几乎消除了5 / Rev垂直振动。此外,在带有76米/秒的风速的模拟高速级飞行期间,使用2 / REV输入成功降低了所需的转子功率,幅度为1°。

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