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Aircraft Engine Controls

Aircraft Engine Controls
Author: Link C. Jaw
Publisher: AIAA Education
Total Pages: 0
Release: 2009
Genre: Technology & Engineering
ISBN: 9781600867057

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Overview of engine control systems -- Engine modeling and simulation -- Model reduction and dynamic analysis -- Design of set-point controllers -- Design of transient and limit controllers -- Control system integration -- Advanced control concepts -- Engine monitoring and health management -- Integrated control and health monitoring -- Appendix A. Fundamentals of automatic control systems -- Appendix B. Gas turbine engine performance and operability.


Real-Time Simulation of Jet Engines with a Digital Computer (1), Fabrication and Characteristics of the Simulator

Real-Time Simulation of Jet Engines with a Digital Computer (1), Fabrication and Characteristics of the Simulator
Author: K. Nishio
Publisher:
Total Pages: 51
Release: 1974
Genre: Aerodynamics
ISBN:

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Today the designers of engine control systems are required to provide the control systems of a newly-developed engine which is workable at the first test run. However, this means that both the dynamic and static characteristics of the new engine should be known in the early stage of development when the characteristics of each engine component are given. In such a case designers usually adopt a simulation technique. In this paper are reported the fabrication and performances of a real-time jet engine simulation test results with actual engine test data for the lift jet engine JR-100H.


Development and Validation of a Civil Aircraft Engine Simulation Model for Advanced Controller Design

Development and Validation of a Civil Aircraft Engine Simulation Model for Advanced Controller Design
Author: Sonny Martin
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

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This thesis is concerned with the results of a joint academic and industrial study on the development of a detailed nonlinear dynamic model of a turbofan jet engine to be used for research into advanced control strategies for civil turbofan aircraft engines. The model is representative of a dual shaft engine with variable bleed, variable stator vanes, turbine cooling, heat transfer, and a duct and exhaust nozzle. A switched, gain-scheduled, feedback control system incorporating bumpless transfer and antiwindup functionality has been designed and implemented according to current industrial practice. This baseline implementation permits realistic transient operation of the simulation and may act as a reference design for further control work. The simulation computes a non-iterative solution, by progressing calculations in the direction of the gas stream flow. Where possible the underlying physics are used and empirical approximations are avoided so that the model requires minimum data. This approach also makes a future inclusion of component failure easier to implement. The simulation is modular in nature so that engine or control modules can be easily replaced or modified if an improved design becomes available. The Simulink implementation of the control architecture has been redesigned to permit the addition or removal of control loops, also during the simulation?s operation, to allow testing of advanced control strategies. The entire controller can also be easily replaced. A detailed description of the modeling process, the various simulation issues that arise with a model of this complexity, and the results of the overall aero-engine system are presented. The design of the switched, gain-scheduled aero-engine controller with bumpless transfer and antiwindup which achieves dynamic performance that closely matches that of a real aero-engine is also discussed.


Design and Development of Jet Engine Testing Training Simulator

Design and Development of Jet Engine Testing Training Simulator
Author: Harjot Singh Chawla
Publisher:
Total Pages: 0
Release: 2016
Genre:
ISBN:

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Training simulators are used in a variety of industries that require the skill of handling complex or sophisticated technologies and having knowledge of advanced controls. Training simulators have a long history; a number of studies have already been done to make the training simulators more flexible. Jet engine testing operators have to follow a proper methodology to carry out the procedures of safe engine testing. While performing the tests, the operators have to deal with various emergency conditions and should have proper information on how to deal with those situations. This thesis presents the design and development of a training simulator for aviation engine testing operators. Engine simulation software, GasTurb, is used to develop the jet engine model files and to get the output variables from the simulator. These model files are made accessible in Simulink (MATLAB) with the help of second order S-function. The S-function accesses the Dynamic Link Library (DLL) of GasTurb, to read the model files and to provide real time output on the basis of inputs from external hardware. The user interface to display these output values is developed in Unity game engine. Five different emergency scenarios have been designed and evaluated using the developed simulator. Related variables for these emergency scenarios are plotted to compare the reaction of the operators. The feedback is also taken from the operators regarding the effectiveness of training simulator. The result shows that training simulator would promote and develop their understanding of process. It would help to enhance the ability of operator to identify parameters causing the emergency scenarios and enable them to overcome such situations.