[1] 张书刚, 郭迎清, 陆军. 基于GasTurb/MATLAB的航空发动机部件级模型研究[J]. 航空动力学报, 2012, 27(12): 2850-2856.
[2] 黄开明, 周剑波, 刘杰, 等. 涡轴发动机起动过程的一种气动热力学实时模型[J]. 航空动力学报, 2004, 19(5): 703-707.
[3] Lietzau K, Kreiner A. Model Based Control Concepts for Jet Engines[C]. Louisiana: Proceedings of ASME Turbo Expo, 2001.
[4] Myers L P, Walsh K R. Performance Improvements of an F-15 Airplane with an Integrated Engine-Flight Control System[J]. Journal of Aircraft, 1992, 28(12): 812-817.
[5] Kern J M, Qu R, Young C D. Integrated Boost Cavity Ring Generator For Turbofan and Turbo Shaft Engines[P]. US: US8198744, 2012.
[6] 于达仁, 郭玉锋, 牛军, 等. 涡喷发动机风车起动工况的神经网络建模[J], 推进技术, 2001, 22(3):183-186 . (YU Da-ren, GUO Yu-feng, NIU Jun, et al. Turbojet Modeling in Windmilling Based on Radial Basis Function Networks[J]. Journal of Propulsion Technology, 2001, 22(3): 183-186.)
[7] 卓刚. 航空发动机智能建模与故障诊断研究[D]. 南京:南京航空航天大学, 2004.
[8] 刘建勋, 王剑影, 李应红. 某型发动机起动建模的支持向量机辨识及应用[J]. ?推进技术, 2004, 25(5):401-404. (LIU Jian-xun, WANG Jian-ying, LI Ying-hong, et al. An Identification Model of Aero Engine Starting Based on Support Vector Machine and Its Application[J]. Journal of Propulsion Technology, 2004, 25(5): 401-404.)?
[9] 李永进, 张海波, 张天宏. 一种考虑非线性余项的机载发动机自适应模型建立及其在寻优控制中的应用[J]. 推进技术, 2016, 37(1): 172-180. (LI Yong-jin, ZHANG Hai-bo, ZHANG Tian-hong. Establishment and Application in Performance Seeking Control of an on-Board Adaptive Aero-Engine Model Considering Nonlinear Remainders [J]. Journal of Propulsion Technology, 2016, 37(1): 172-180.)
[10] 郑前钢, 张海波, 李永进. 基于单纯B样条的航空发动机机载稳态模型研究[J], 推进技术, 2015, 36(12): 1889-1893. ( ZHENG Qian-gang, ZHANG Hai-bo, LI Yong-jin. Research on Simplex B-Splines Algorithm in on-Board Steady State Modeling of Turbofan Engines[J]. Journal of Propulsion Technology, 2015, 36(12): 1889-1893.)
[11] 孙丰勇, 张海波, 叶志锋, 等. 航空发动机超声速巡航性能寻优控制研究[J], 推进技术, 2015, 36(8): 1248-1256. (SUN Feng-yong, ZHANG Hai-bo, YE Zhi-feng, et al. A Study of Aero-Engine Supersonic Cruise Performance Seeking Control [J]. Journal of Propulsion Technology, 2015, 36(8): 1248-1256.)
[12] 周文祥. 航空发动机及控制系统建模与面向对象的仿真研究[D]. 南京:南京航空航天大学, 2006.
[13] 姚文荣. 涡轴发动机/旋翼综合建模控制及优化研究[D]. 南京:南京航空航天大学, 2008.
[14] 杨刚, 孙健国, 黄向华, 等. 一种不需要迭代的发动机辅助变量建模方法[J]. 航空动力学报, 2003, 18(2): 289-294.
[15] Snyder C A, Thurman D R. Gas Turbine Characteristics for a Large Civil Tilt-Rotor (LCTR)[M]. Cleveland: National Aeronautics and Space Administration, Glenn Research Center, 2010.
[16] Yazar I, Kiyak E, Caliskan F. A New Approach for Compressor and Turbine Performance Map Modeling Using ANFIS Structure[M]. GER: Progress in Exergy, Energy, and the Environment, Springer International Publishing, 2014: 541-551.
[17] Vance J M, Royal A C. High-Speed Rotor Dynamics- an Assessment of Current Technology for Small Turboshaft Engines[J]. Journal of Aircraft, 2012, 12(4).
[18] Ryan D May, Jeffrey Csank, Thomas M Lavelle, et al. A High- Fidelity Simulation of a Generic Commercial Aircraft Engine and Controller[R]. AIAA 2010-6630.
[19] Karpman B, Shade J L, Kane D E. Controlling Turbine Blade Tip Clearance According to Thermal Growth Model[P]. EP: EP1314857, 2006.(编辑:梅瑛) * 收稿日期:2016-01-26;修订日期:2016-03-25。基金项目:国家自然科学基金(51576096);江苏省普通高校研究生科研创新计划项目(SJLX16_0095);中国高校基本科研 业务费专项资金资助。作者简介:居新星,男,硕士生,研究领域为航空发动机控制。E-mail:15705186380@163.com通讯作者:张海波,男,教授,研究领域为航空发动机建模及控制。E-mail: zh_zhhb@126.com
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