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Nonlinear programing in design of control systems with specified handling qualities

机译:具有指定处理质量的控制系统设计中的非线性编程

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A method is described for using nonlinear programing in the computer-aided design of airplane control systems. It is assumed that the quality of such systems depends on many criteria. These criteria are included in the constraints vector (instead of attempting to combine them into a single scalar criterion, as is usually done), and the design proceeds through a sequence of nonlinear programing solutions in which the designer varies the specification of sets of requirements levels. The method is applied to design of a lateral stability augmentation system (SAS) for a fighter airplane, in which the requirements vector is chosen from the official handling-qualities specifications. Results are shown for several simple SAS configurations designed to obtain desirable handling qualities over all design flight conditions with minimum feedback gains. The choice of the final design for each case is not unique but depends on the designer's decision as to which achievable set of requirements levels represents the best for that system. Results indicate that constant gain systems can substantially exceed the highest required levels of handling qualities in all design flight conditions of the example considered. The role of the designer as a decision maker, interacting with the computer program, is discussed. Advantages of this type of designer-computer interaction are emphasized. Desirable extensions of the method are indicated.
机译:描述了一种在飞机控制系统的计算机辅助设计中使用非线性编程的方法。假定这种系统的质量取决于许多标准。这些标准包含在约束向量中(而不是像通常那样尝试将它们组合为单个标量标准),并且设计通过一系列非线性编程解决方案进行,设计人员在其中改变了需求级别集的规范。该方法用于战斗机的横向稳定性增强系统(SAS)的设计,其中需求向量是从官方的操纵质量规范中选择的。显示了几种简单SAS配置的结果,这些配置旨在以最小的反馈增益在所有设计飞行条件下获得理想的操作质量。对于每种情况,最终设计的选择不是唯一的,而是取决于设计者的决定,即可实现的一组需求级别代表该系统的最佳选择。结果表明,在所考虑的示例的所有设计飞行条件下,恒定增益系统都可以大大超过操纵质量的最高要求水平。讨论了设计者作为决策者的角色,与计算机程序进行交互。强调了这类设计者与计算机交互的优点。指出了该方法的理想扩展。

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