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Describing function method of servomechanism analysis applied to most commonly encountered nonlinearities

机译:伺服机构分析的描述函数方法应用于最常见的非线性

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Most of the literature dealing with the analysis and synthesis of servomechanisms confines itself to treating only linear systems in which all relationships can be expressed mathematically in the form of ordinary differential equations. However, in actual practice many systems are encountered containing elements which exhibit marked nonlinearities. The principal reason for ignoring such nonlinearities in much of the analysis and design of feedback-control systems is mathematical expediency. There is no simple mathematical method available to cope with nonlinear systems. There are certain types of nonlinear differential equations which are solvable, and techniques such as step-by-step solutions exist for more general nonlinear differential equations. Even to use these, however, involves so much tedious labor that the effort is rarely justifiable.1
机译:有关伺服机构的分析和综合的大多数文献都将其自身局限于仅处理线性系统,在该线性系统中,所有关系都可以用常微分方程的形式数学表示。但是,在实际中,会遇到许多系统,其中包含表现出明显非线性的元素。在反馈控制系统的许多分析和设计中,忽略此类非线性的主要原因是数学上的权宜之计。没有简单的数学方法可用于应对非线性系统。有某些类型的非线性微分方程是可解的,对于更通用的非线性微分方程,存在逐步解决之类的技术。但是,即使要使用这些工具,也要花费大量的乏味劳动,以致于这种努力很少是合理的。1

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