Abstract
This paper proposes a scheme for limit protection in aeroengines with two control inputs and two regulated variables. The strategy extends existing results based on single-input sliding mode regulators and the min-max switching logic. The proposed multi-input strategy is able to manage engine limits effectively and offers better transient response than the traditional min-max architecture with linear regulators. The paper presents design guidelines for the multivariable sliding mode controller and the switching logic. The influence of key parameters is described and a simulation-based comparative study is made between the proposed approach and the existing single-input approach. It is shown that the multi-input technique has two clear advantages over the single-input approach, namely the ability to track fan speed (or other output related to thrust) even with harsh constrains, and the possibility of faster responses with smaller fuel flows by adjusting a secondary setpoint reference.
| Original language | English |
|---|---|
| Title of host publication | ASME 2015 Dynamic Systems and Control Conference, DSCC 2015 |
| Place of Publication | usa |
| Publisher | American Society of Mechanical Engineers |
| Volume | 1 |
| ISBN (Electronic) | 9780791857243 |
| DOIs | |
| State | Published - Jan 1 2015 |
| Event | ASME 2015 Dynamic Systems and Control Conference, DSCC 2015 - Columbus, United States Duration: Oct 28 2015 → Oct 30 2015 |
Conference
| Conference | ASME 2015 Dynamic Systems and Control Conference, DSCC 2015 |
|---|---|
| Country/Territory | United States |
| City | Columbus |
| Period | 10/28/15 → 10/30/15 |
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