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FUZZY FUEL FLOW SELECTION LOGIC FOR A REAL TIME EMBEDDED FULL AUTHORITY DIGITAL ENGINE CONTROL

机译:模糊燃料流选择逻辑实时嵌入式全权限数字引擎控制

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The control logic of the modern Full Authority Digital Engine Control (FADEC) is comprised of many control loops, each of which has a specific purpose. Typical control loops include (but are not limited to) a high or low rotor speed governor, an Acceleration and Deceleration loop, and various limiting loops for temperature, speed, fuel flow, and rate of change of fuel flow. The logic that determines which of these loops is "in control" at any particular time has a history of being very simplistic. This Selection Logic is usually nothing more that a cascade of minimum and maximum selection logic gates. Since this logic is so simplistic, the control engineer often has to "fine tune" the compensator design for each loop, in order to achieve proper performance. The purpose of this paper is to a present a means of achieving a selection logic design based on Fuzzy Logic principles. Hereafter, this shall be referred to as a Fuzzy Fuel Flow Selector. The paper provides a brief overview of the most typical architecture for real time embedded FADEC control logic, rule development for the Fuzzy Fuel Flow Selector, and a realistic implementation of the Fuzzy Fuel Flow Selector. Also provided is a typical application that is used to contrast the performance between traditional selection logic and the Fuzzy Fuel Flow Selector. An overview of the Fuzzy Logic process is also included for completeness.
机译:现代全权力数字引擎控制(FADEC)的控制逻辑由许多控制环组成,每个控制环都具有特定目的。典型的控制环包括(但不限于)高或低转子速度调速器,加速度和减速环,以及用于温度,速度,燃料流量的各种限制环,以及燃料流量的变化率。确定这些循环中哪一个在任何特定时间的逻辑中的逻辑有一个非常简单的历史。此选择逻辑通常更多的是,最小和最大选择逻辑门的级联。由于这种逻辑是如此简单,因此控制工程师通常必须为每个环路“微调”补偿器设计,以便实现适当的性能。本文的目的是提出一种基于模糊逻辑原理实现选择逻辑设计的方法。以下,这应被称为模糊燃料流量选择器。本文简要概述了最典型的嵌入式FADEC控制逻辑,规则开发的模糊燃料流量选择器,以及模糊燃料流量选择器的实际实现。还提供了一种典型的应用,用于对比传统选择逻辑和模糊燃料流量选择器之间的性能对比。模糊逻辑过程的概述也包括完整性。

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