Optimizing Aircraft Performance With Adaptive, Integrated Flight/Propulsion Control

Author:

Smith R. H.1,Chisholm J. D.1,Stewart J. F.2

Affiliation:

1. McDonnell Douglas Corporation, St. Louis, MO

2. NASA-AMES/DRYDEN, Edwards Air Force Base, CA

Abstract

An adaptive, integrated flight/propulsion control algorithm called Performance Seeking Control (PSC) has been developed to optimize total aircraft performance during steady state engine operation. The multi-mode algorithm will minimize fuel consumption at cruise conditions; maximize excess thrust (thrust minus drag) during aircraft accelerations, climbs, and dashes; and extend engine life by reducing Fan Turbine Inlet Temperature (FTIT) when the extended life mode is engaged. On-board models of the inlet, engine, and nozzle are optimized to compute a set of control trims, which are then applied as increments to the nominal engine and inlet control schedules. The on-board engine model is continually updated to match the operating characteristics of the actual engine cycle through the use of a Kalman filter, which accounts for anomalous engine operation. The PSC algorithm will be flight demonstrated on an F-15 test aircraft under the direction of the NASA Ames/Dryden Flight Research Facility. This paper discusses the PSC design strategy, describes the control algorithm, and presents results from high fidelity, nonlinear aircraft/engine simulations. Simulation results indicate that thrust increases as high as 15% and specific fuel consumption reductions up to 3% are realizable by the PSC system.

Publisher

American Society of Mechanical Engineers

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Integrated Model-Based Controls and PHM for Improving Turbine Engine Performance, Reliability, and Cost;45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit;2009-08-02

2. Control strategies for space boosters using air collection systems;Journal of Spacecraft and Rockets;1994-03

3. Dual Engine application of the Performance Seeking Control algorithm;29th Joint Propulsion Conference and Exhibit;1993-06-28

4. Integrated flight propulsion control research results using the NASAF-15 HIDEC Flight Research Facility;6th AIAA Biennial Flight Test Conference;1992-08-17

5. Performance benefits of adaptive in-flight propulsion system optimization;28th Joint Propulsion Conference and Exhibit;1992-07-06

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