Author:
Wang Bin,Zhao Haocen,Ye Zhifeng
Abstract
AbstractData-fused and user-friendly design of aero-engine accessories is required because of their structural complexity and stringent reliability. This paper gives an overview of a typical aero-engine control system and the development process of key mechatronic devices used. Several essential aspects of modeling and simulation in the process are investigated. Considering the limitations of a single theoretic model, feature-based co-modeling methodology is suggested to satisfy the design requirements and compensate for diversity of component sub-models for these devices. As an example, a stepper motor controlled Fuel Metering Unit (FMU) is modeled in view of the component physical features using two different software tools. An interface is suggested to integrate the single discipline models into the synthesized one. Performance simulation of this device using the co-model and parameter optimization for its key components are discussed. Comparison between delivery testing and the simulation shows that the co-model for the FMU has a high accuracy and the absolute superiority over a single model. Together with its compatible interface with the engine mathematical model, the feature-based co-modeling methodology is proven to be an effective technical measure in the development process of the device.
Reference48 articles.
1. Numerical analysis of flow through a contour nozzle kept in a supersonic stream;Int J Turbo Jet-Engines,2014
2. Modeling and control of hybrid stepping motors Conference Record of the Industry Toronto Ontario;Mizutami;IEEE Applications Society Annual Meeting,1993
3. An object-oriented framework for simulation-based green building design optimization with genetic algorithms;Adv Eng Inf,2005
4. Improvement on main/backup controller switching device of the nozzle throat area control system for a turbofan aero engine;Int J Turbo Jet-Engines,2014
5. Fuzzy fuel flow selection logic for a real time embedded full authority digital engine control;ASME J Eng Gas Turb Power,2003
Cited by
2 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