论文:2022,Vol:40,Issue(2):391-400
引用本文:
代桂成, 范彦铭, 李东辉, 马宏图, 梅莉. 通用飞机飞控系统地面验证试验平台研究[J]. 西北工业大学学报
DAI Guicheng, FAN Yanming, LI Donghui, MA Hongtu, MEI Li. Study on experiment platform for flight control system of general aircraft[J]. Northwestern polytechnical university

通用飞机飞控系统地面验证试验平台研究
代桂成1,2,3, 范彦铭1, 李东辉4, 马宏图2, 梅莉2
1. 沈阳飞机设计研究所, 辽宁 沈阳 110035;
2. 辽宁通用航空研究院, 辽宁 沈阳 110136;
3. 辽宁锐翔通用飞机制造有限公司, 辽宁 沈阳 110136;
4. 沈阳航空航天大学 航空宇航学院, 辽宁 沈阳 110136
摘要:
通用飞机研制目前是国内民用航空领域的新兴热点,相比于军用与大型民用飞机,我国在通用飞机研发领域发展相对滞后,缺少适用于通用飞机飞行控制系统的验证试验平台。在研究试验平台必要性、设计原则以及试验要求的基础上,提出了一种通用的试验平台设计方案。建立了人机接口、铁鸟台架、飞机运动仿真、数据采集与处理等子系统,实现了人在环的飞行模拟与试验。利用该平台对某型电动通用飞机飞行控制系统特性进行测试,试验结果表明该平台运行稳定可靠,可有效解决通用飞机飞行控制系统地面验证试验问题,从而提高通用飞机研发效率。
关键词:    通用飞机    飞控系统    舵面载荷模拟    人在环测试   
Study on experiment platform for flight control system of general aircraft
DAI Guicheng1,2,3, FAN Yanming1, LI Donghui4, MA Hongtu2, MEI Li2
1. Shenyang Aircraft Design and Research Institute, Shenyang 110035, China;
2. Liaoning General Aviation Academy, Shenyang 110136, China;
3. Rhyxeon General Aircraft Manufacturing Co. Ltd, Shenyang 110136, China;
4. Institute of Aerospace Engineering, Shenyang Aerospace University, Shenyang 110136, China
Abstract:
Currently, the development of general aircraft is a new hotspot in the field of domestic civil aviation. But the development of general aircraft R & D is relatively lag comparing to the military and commercial transport aircraft, and lack of validation and experiment platform for flight control system. Based on the necessity, basic design principles of the experiment platform and the test items of general aircraft, a design scheme of the general platform was proposed. The scheme was composed of the human-aircraft interface subsystem, hardware construction environment subsystem, aircraft motion simulation subsystem, signal acquisition/processing subsystem and so on. At the same time, the flight simulation and test of man-in-loop are realized. This platform is used to test the flight control system characteristics of an electric general aircraft. The test results demonstrated that the platform is stable and reliable, and can resolve the problem of general aircraft fight control system testing effectively.
Key words:    general aircraft    flight control system    aero-surface loading simulation    man-in-loop test   
收稿日期: 2021-06-29     修回日期:
DOI: 10.1051/jnwpu/20224020391
基金项目: 辽宁省教育厅重点攻关和服务地方项目(JYT2020159)资助
通讯作者: 李东辉(1988-),沈阳航空航天大学讲师,主要从事飞机机动载荷设计研究。e-mail:gripen275@hotmail.com     Email:gripen275@hotmail.com
作者简介: 代桂成(1982-),沈阳飞机设计研究所博士研究生,主要从事飞行控制研究。
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参考文献:
[1] 耿建华, 王霞, 谢钧. 通用航空概论[M]. 北京:航空工业出版社, 2007 GENG Jianhua, WANG Xia, XIE Jun. An introduction to general aviation[M]. Beijing:Aviation Industry Press, 2007 (in Chinese)
[2] JANET R. Daly bednarek, dreams of flight[M]. Texas:Texas A&M University Press, 2005
[3] JOSEPH J. Corn, the wing gospel[M]. New York:Oxford University Press, 1983
[4] ROGER E. Bilstein, the American aerospace industry[M]. New Jersey:Twayne Publisher, 1996
[5] 覃睿, 赵嶷飞, 黄燕晓. 现代通用航空基础与实务[M]. 北京:科学出版社,2014 QIN Rui, ZHAO Yifei, HUANG Yanxiao. Contemporary general aviation foundation and practice[M]. Beijing:Science Press, 2014 (in Chinese)
[6] BENTO S, DE Mattos. Santos dumont and the dawn of aviation[C]//AIAA Aerospace Science Meeting and Exhibit, 2004
[7] GERKENS T, FRITSCH G. The iron bird for the Fairchild-Dornier 728[J]. Aerospace Science and Technology, 2004, 8:231-243
[8] LI D, LIN M, TIAN L. Design of iron bird for a regional jet aircraft[J]. Proceedings of the Institution of Mechanical Engineers Part G:Journal of Aerospace Engineering, 2020, 234(3):681-688
[9] LI Zhenshui, XI Ying. Modular design of iron bird for modern aircraft[C]//IEEE/CSAA international conference on aircraft utility system(AUS), Beijing, 2016
[10] HWANG S J, CHOI S W. Iron bird ground test for tilt rotor unmanned aerial vehicle[J]. International Journal of Aeronautical and Space Science, 2010, 11(4):313-318
[11] HAKAN Aydemir, UGUR Zengin, UMUT Durak, et al. Designing a virtual iron bird as a digital twin[C]//AIAA SciTech Forum, 2021
[12] 孙银娣, 周侣勇, 王风. 水陆两栖飞机铁鸟台简易飞行模拟座舱系统设计[J]. 航空计算技术,2020,50(1):110-113 SUN Yindi, ZHOU Lüyong, WANG Feng. Design of a simple flight simulator for iron bird platform of amphibious aircraft[J]. Aeronautical Computing Technique, 2020, 50(1):110-113 (in Chinese)
[13] 张勇, 曾宪忠, 沈宗璋. 某型飞机飞控系统地面模拟试验加载系统设计[J]. 液压与气动,2020(10):139-144 ZHANG Yong, ZENG Xianzhong, SHEN Zongzhang. Loading system design for the aircraft flight control system in lab testing[J]. Hydraulics Pneumatics&Seals, 2020(10):139-144 (in Chinese)
[14] 张家盛, 段婷婷, 刘波. 大型飞机铁鸟升降舵集中式加载方法分析研究[J]. 液压与气动,2014(8):80-83 ZHANG Jiasheng, DUAN Tingting, LIU Bo. Concentrated loading method for the large airplane iron bird's elevator[J]. Hydraulics Pneumatics & Seals, 2014(8):80-83 (in Chinese)
[15] 王立, 乔伟, 芦涛. 飞机飞控铁鸟试验台舵面加载系统设计[J]. 航空科学与技术, 2017, 28(3):41-45 WANG Li, QIAO Wei, LU Tao. Design of flight control surface loading system on iron bird test bed[J]. Aeronautical Computing Technique, 2017, 28(3):41-45 (in Chinese)
[16] 马莉, 李丽, 严超. 大型水陆两栖飞机铁鸟液压系统试验简述[J]. 液压气动与密封,2019(6):70-72 MA Li, LI Li, YAN Chao. Introduction on hydraulic system test for large-scale amphibious aircraft iron bird[J]. Hydraulics Pneumatics & Seals, 2019(6):70-72 (in Chinese)
[17] BART Elias. Securing General Aviation[EB/OL]. (2009-03-03)[2021-04-21]. https://www.aopa.org/advocacy/advocacy-briefs/general-aviation-security-overview
[18] 郑淑涛, 廖峰, 王立文, 等. 飞行模拟机操纵负荷系统实验研究[J]. 系统仿真学报,2008, 20(4):965-969 ZHENG Shutao, LIAO Feng, WANG Liwen, et al. Experiment and study of control loading system in flight simulator[J]. Jouranl of System Simulation, 2008, 20(4):965-969 (in Chinese)
[19] 孙玉凯, 张仁嘉, 吴志刚, 等. 航模舵机的动态特性测试与系统辨识[J]. 北京航空航天大学学报,2020,46(2):294-303 SUN Yukai, ZHANG Renjia, WU Zhigang. Dynamic property test and system identification of model aircraft actuators[J]. Journal of Beijing University of Aeronautics and Astronautics, 2020, 46(2):294-303 (in Chinese)
[20] 徐海亮, 李骏扬, 费树岷. 全数字飞行仿真平台的设计与实现[J]. 东南大学学报,2011,41(1):113-117 XU Hailiang, LI Junyang, FEI Shumin. Design and implementation of digital flight simulation platform[J]. Journal of Southeast University, 2011, 41(1):113-117 (in Chinese)
[21] 周自全. 飞行试验工程[M]. 北京:航空工业出版社, 2010 ZHOU Ziquan. Flight test engineering[M]. Beijing:Aviation Industry Press, 2010 (in Chinese)
[22] 陈迎春, 宋文滨, 刘洪. 民用飞机总体设计[M]. 上海:上海交通大学出版社, 2010 CHEN Yinchun, SONG Wenbin, LIU Hong. Civil aircraft design[M]. Shanghai:Shanghai Jiaotong University Press, 2010 (in Chinese)