Perspective Algorithms in Control of Turbojet Engines

R. Andoga
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Abstract

Turbojet engines are nowadays mostly controlled by full authority digital engine control (FADEC) systems using electronic engine control units. Microprocessor based control systems allow application of sophisticated control algorithms. The aim of the presentation is to show the state-of-the-art control systems and perspective algorithms based on integrated situational control methodology, which are aimed to increase the efficiency, reliability, and safety of operation of turbojet engines. Situational control is applied in this case in control and management of turbojet engines under all operational conditions including atypical ones using intelligent elements and strong integration with diagnostic systems. The concept of highly integrated control and diagnostic system is leading to a novel modular control framework with morphing structure and a degree of intelligence. It will be presented for application on general turbojet engines with specific implementation tested on a small turbojet engine in laboratory conditions as a proof of concept with positive results. These algorithms are designed as modular and robust with perspective applications in control of other large scale systems.
涡轮喷气发动机控制中的透视算法
目前,涡轮喷气发动机主要由使用电子发动机控制单元的全授权数字发动机控制(FADEC)系统控制。基于微处理器的控制系统允许应用复杂的控制算法。该报告的目的是展示基于综合态势控制方法的最先进的控制系统和透视算法,旨在提高涡轮喷气发动机的效率、可靠性和运行安全性。在这种情况下,情境控制应用于涡轮喷气发动机在所有工况下的控制和管理,包括非典型工况,使用智能元件并与诊断系统强集成。高度集成控制和诊断系统的概念导致了一种具有变形结构和一定程度智能的新型模块化控制框架。它将在一般涡轮喷气发动机上进行应用,并在实验室条件下在小型涡轮喷气发动机上进行具体实施测试,作为概念验证,并取得积极成果。这些算法被设计成模块化和鲁棒性,在其他大规模系统的控制中具有前景应用。
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