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Virtual flight test of pitch and roll attitude control based on circulation control of tailless flying wing aircraft without rudders
作者姓名:Liu ZHANG  Yong HUANG  Zhenglong ZHU  Lihua GAO  Fuzheng CHEN  Fuzhang WU  Meng HE
作者单位:1. Low Speed Aerodynamics Institute, China Aerodynamics Research and Development Center;2. State Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center;3. Computational Aerodynamics Institute, China Aerodynamics Research and Development Center
基金项目:supported by the Equipment Pre-research Common Technology Project, China (No. 41406010101);
摘    要:Circulation Control(CC) realizes rudderless flight control by driving compressed air jet to generate a virtual rudder surface, which significantly improves low detectability. The layout plan of combined control rudder surface is proposed based on the tailless flying wing aircraft. The closed-loop jet actuator system and stepless rudder surface switching control strategy are used to quantitatively study the control characteristics of circulation actuator for pitch and roll attitude through 3-DOF ...

收稿时间:27 June 2022

Virtual flight test of pitch and roll attitude control based on circulation control of tailless flying wing aircraft without rudders
Liu ZHANG,Yong HUANG,Zhenglong ZHU,Lihua GAO,Fuzheng CHEN,Fuzhang WU,Meng HE.Virtual flight test of pitch and roll attitude control based on circulation control of tailless flying wing aircraft without rudders[J].Chinese Journal of Aeronautics,2023,36(6):52-62.
Institution:1. Low Speed Aerodynamics Institute, China Aerodynamics Research and Development Center, Mianyang 621000, China;2. State Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center, Mianyang 621000, China;3. Computational Aerodynamics Institute, China Aerodynamics Research and Development Center, Mianyang 621000, China
Abstract:Circulation Control (CC) realizes rudderless flight control by driving compressed air jet to generate a virtual rudder surface, which significantly improves low detectability. The layout plan of combined control rudder surface is proposed based on the tailless flying wing aircraft. The closed-loop jet actuator system and stepless rudder surface switching control strategy are used to quantitatively study the control characteristics of circulation actuator for pitch and roll attitude through 3-DOF virtual flight test in a wind tunnel with a powered model at wind speed of 40 m/s. The results show that the combined use of circulation actuators can achieve bidirectional continuous and stable control of the aircraft’s pitch and roll attitude, with the maximum pitch rate of 12.3 (°)/s and the maximum roll rate of 21.5 (°)/s; the response time of attitude angular rate varying with the jet pressure ratio is less than 0.02 s, which can satisfy the control response requirements of aircraft motion stability for the control system; the jet rudder surface has a strong moment control ability, and the pitch moment of the jet elevator with a pressure ratio of 1.28 is the same as that of the mechanical elevator with 28° rudder deflection, which can expand the flight control boundary.
Keywords:Active flow control  Circulation Control (CC)  Flying wing  Wind tunnel test  Virtual flight test
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