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首页> 外文期刊>International Journal of Turbo and Jet Engines >A New Turbo-shaft Engine Control Law during Variable Rotor Speed Transient Process
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A New Turbo-shaft Engine Control Law during Variable Rotor Speed Transient Process

机译:转子瞬变过程中涡轮轴发动机的新控制规律

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摘要

A closed-loop control law employing compressor guided vanes is firstly investigated to solve unacceptable fuel flow dynamic change in single fuel control for turbo-shaft engine here, especially for rotorcraft in variable rotor speed process. Based on an Augmented Linear Quadratic Regulator (ALQR) algorithm, a dual-input, single-output robust control scheme is proposed for a turbo-shaft engine, involving not only the closed loop adjustment of fuel flow but also that of compressor guided vanes. Furthermore, compared to single fuel control, some digital simulation cases using this new scheme about variable rotor speed have been implemented on the basis of an integrated system of helicopter and engine model. The results depict that the command tracking performance to the free turbine rotor speed can be asymptotically realized. Moreover, the fuel flow transient process has been significantly improved, and the fuel consumption has been dramatically cut down by more than 2% while keeping the helicopter level fight unchanged.
机译:首先研究了采用压缩机导向叶片的闭环控制定律,以解决涡轮轴发动机,特别是旋翼飞机在可变转速过程中单燃料控制中不可接受的燃料流动动态变化。基于增强线性二次调节器(ALQR)算法,提出了一种涡轮发动机双输入单输出鲁棒控制方案,该方案不仅涉及燃料流的闭环调节,还涉及压缩机导叶的闭环调节。此外,与单燃料控制相比,在直升机和发动机模型的集成系统的基础上,已经实现了一些使用这种关于可变转子速度的新方案的数字仿真案例。结果表明,可以渐近实现对自由涡轮转子速度的指令跟踪性能。此外,燃油流量过渡过程得到了显着改善,燃油消耗已显着降低了2%以上,同时保持了直升机的水平战斗不变。

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