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A High-Fidelity Simulation of a Generic Commercial Aircraft Engine and Controller

机译:通用商用飞机发动机和控制器的高保真仿真

摘要

A new high-fidelity simulation of a generic 40,000 lb thrust class commercial turbofan engine with a representative controller, known as CMAPSS40k, has been developed. Based on dynamic flight test data of a highly instrumented engine and previous engine simulations developed at NASA Glenn Research Center, this non-proprietary simulation was created especially for use in the development of new engine control strategies. C-MAPSS40k is a highly detailed, component-level engine model written in MATLAB/Simulink (The MathWorks, Inc.). Because the model is built in Simulink, users have the ability to use any of the MATLAB tools for analysis and control system design. The engine components are modeled in C-code, which is then compiled to allow faster-than-real-time execution. The engine controller is based on common industry architecture and techniques to produce realistic closed-loop transient responses while ensuring that no safety or operability limits are violated. A significant feature not found in other non-proprietary models is the inclusion of transient stall margin debits. These debits provide an accurate accounting of the compressor surge margin, which is critical in the design of an engine controller. This paper discusses the development, characteristics, and capabilities of the C-MAPSS40k simulation
机译:已经开发了一种新的高保真模拟,该模拟是具有代表控制器的通用40,000 lb推力级商用涡轮风扇发动机,称为CMAPSS40k。根据美国国家航空航天局格伦研究中心开发的高度仪表化发动机的动态飞行测试数据和先前的发动机仿真,该非专有仿真专门用于开发新的发动机控制策略。 C-MAPSS40k是用MATLAB / Simulink(The MathWorks,Inc.)编写的高度详细的组件级引擎模型。由于该模型是在Simulink中构建的,因此用户可以使用任何MATLAB工具进行分析和控制系统设计。引擎组件以C代码建模,然后进行编译以允许比实时更快的执行。发动机控制器基于通用的行业架构和技术,可产生逼真的闭环瞬态响应,同时确保不违反安全性或可操作性限制。在其他非专有模型中未发现的一个重要功能是包括了瞬态失速保证金借方。这些借记提供了压缩机喘振裕度的准确计算,这对发动机控制器的设计至关重要。本文讨论了C-MAPSS40k仿真的发展,特点和功能

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