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高转速高增压比压气机导叶控制装置设计与研究

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为充分考核压气机性能、寻求最佳导叶角度控制规律,满足高转速高增压比压气机性能试验所需,亟需压气机导叶角度实时可调导叶控制装置.针对压气机台架试验环境和试验场景,提出了双通道数字式电子控制导叶控制装置架构,开展了部件选型和设计,对装置的重要组成部件——电子控制器的硬件电路进行了设计和仿真.该装置经过安装调零、最优PID参数选取及系统联调,配合高转速高增压比压气机开展多轮性能摸底试验.台架试验结果表明,所设计的导叶控制装置控制稳定,性能良好,能安全可靠地按需实时调节压气机导叶角度,满足压气机性能试验所需.
Design and Research of a High-Speed,High-Pressure Ratio Compressor Guide Vane Control Device
In order to fully evaluate the performance of the compressor,seek the best control law for the angle of the guide vane,and meet the requirements of the high-speed,high-pressure ratio compressor performance test,it is urgent to develop a compressor guide vane angle adjustable control device.In view of the compressor test bed environment and test scenarios,a dual-channel digital electronic control guide vane control device architecture is proposed.Component selection and design are carried out,and the hardware circuit of the electronic controller,an important component of the device,is designed and simulated.After installation and adjustment,optimal PID parameter se-lection and system integration,the device is used to carry out multiple rounds of performance exploration tests with high-speed,high-pres-sure ratio compressors.The test bed results show that the designed guide vane control device has stable control and good performance,and can adjust the angle of the compressor guide vane safely and reliably in real time to meet the needs of compressor performance testing.

compressorinlet-vanecontrolcircuitdesign

杨琴、邓文革

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中国航发湖南动力机械研究所,湖南 株洲 412002

压气机 导叶 控制 电路 设计

2024

电子器件
东南大学

电子器件

CSTPCD
影响因子:0.569
ISSN:1005-9490
年,卷(期):2024.47(4)