A study on optimal rotor speed control method for helicopter power system considering the influence of infrared suppressors

Author:

Wang Zhaoguang12,Du Jiatong3,Guo Haoran3

Affiliation:

1. Research Institute of Aero-Engine, Beihang University , Beijing 102206 , China

2. AECC Hunan Aviation Powerplant Research Institute , Zhuzhou 412002 , China

3. Nanjing University of Aeronautics and Astronautics, JiangSu Province Key Laboratory of Aerospace Power System , NO. 29 Yudao Street , Nanjing 210016 , China

Abstract

Abstract In order to realize the most economical operation of helicopter power system, the optimal rotor speed control method is proposed and designed. Firstly, the simplified performance calculation model of helicopter required power and turboshaft engine are established, which constitute the performance calculation model of helicopter power system together. Then, according to the above model, through applying blade loading constraint and selecting the minimum engine fuel flow as the optimization objective, an integrated optimization method of optimal rotor speed based on golden section method is proposed, which reveals the variation law of optimal rotor speed under different operation conditions. Finally, the numerical simulation and hardware-in-loop (HIL) simulation are conducted separately to validate the optimal rotor speed control method. The results indicate that compared with constant rotor speed operation, optimal rotor speed control method can decrease engine fuel flow by more than 21 %, which proves the significant effectiveness and satisfactory feasibility. The optimal rotor speed control method ensures that the helicopter power system operates at the optimal rotor speed, and is beneficial to reach the most economical cruise target.

Publisher

Walter de Gruyter GmbH

Subject

Aerospace Engineering

Reference20 articles.

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2. Amri, H, Feil, R, Hajek, M. Possibilities and difficulties for rotorcraft using variable transmission drive trains. CEAS Aeronaut J 2016;7:333–44. https://doi.org/10.1007/s13272-016-0191-6.

3. Garre, W, Amri, H, Pflumm, T, Paschinger, P, Weigand, M. Helicopter configurations and drive train concepts for optimal variable rotor-speed utilization. Munich: Deutsche Gesellschaft für Luft-und Raumfahrt-Lilienthal-Oberth eV; 2017.

4. Stevens, MA, Handschuh, RF, Lewicki, DG. Variable/multispeed rotorcraft drive system concepts. TM-2009-215456; March 2009.

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