4.4 Review

A scientometric analysis and critical review of gas turbine aero-engines control: From Whittle engine to more-electric propulsion

期刊

MEASUREMENT & CONTROL
卷 54, 期 5-6, 页码 935-966

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/0020294020956675

关键词

Aero-engine; control algorithm; Min-Max control; modern control; more-electric propulsion; cascade control; aircraft engine

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This review thoroughly investigates the development of gas turbine aero-engine control systems over the past eight decades and categorizes possible control strategies and concepts into four distinct phases. The benefits, historical coverage, and challenges of aircraft engine control systems are discussed comprehensively to provide researchers with a comprehensive reference for design and development.
The gas turbine aero-engine control systems over the past eight decades have been thoroughly investigated. This review purposes are to present a comprehensive reference for aero-engine control design and development based on a systematic scientometric analysis and to categorize different methods, algorithms, and approaches taken into account to improve the performance and operability of aircraft engines from the first days to present to enable this challenging technology to be adopted by aero-engine manufacturers. Initially, the benefits of the control systems are restated in terms of improved engine efficiency, reduced carbon dioxide emissions, and improved fuel economy. This is followed by a historical coverage of the proposed concepts dating back to 1936. A comprehensive scientometric analysis is then presented to introduce the main milestones in aero-engines control. Possible control strategies and concepts are classified into four distinct phases, including Single input- single output control algorithms, MIN-MAX or Cascade control algorithms, advanced control algorithms, More-electric and electronic control algorithms and critically reviewed. The advantages and disadvantages of milestones are discussed to cover all practical aspects of the review to enable the researchers to identify the current challenges in aircraft engine control systems.

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