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Envelope transfer function analysis in A-C servo systems

机译:A-C伺服系统中的包络传递函数分析

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IN THE ANALYSIS of a-c servo systems for stability and performance, attention is centered upon the carrier ¿envelope,¿ i.e., the signal proper. Extension of the convenient transfer function description used in direct-signal (low-pass) servo systems thus requires that the dynamic behavior of each element in the a-c system be described in terms of its effect on the carrier envelope by ¿envelope transfer functions¿ which are functions of signal frequency. In general, three types of elements are encountered in a-c servo systems: type-1 elements in which both input and output are modulated carriers; type-2 elements which have inputs at signal frequencies and outputs which are modulated carriers, and are called ¿modulators¿ and type-3 elements which accept modulated carriers as inputs, produce outputs at signal frequencies, and are called ¿demodulators.¿ Both type-2 and type-3 elements readily lend themselves to simple envelope transfer function description if their dynamic behavior occurs on the signal side. Type-1 elements, however, have known transfer functions in terms of actual frequency, rather than signal frequency, and the envelope or signal transfer function must be derived.
机译:在分析交流伺服系统的稳定性和性能时,注意力集中在载波的包络上,即信号正确。因此,对直接信号(低通)伺服系统中使用的便捷传递函数描述的扩展要求通过交流传递函数来描述交流系统中每个元素对载流子包络的影响的动态行为。这是信号频率的函数。通常,在a-c伺服系统中会遇到三种类型的元素:输入和输出均为调制载波的Type-1元素;具有在信号频率处的输入和被调制载波的输出的2类元素,称为“调制器”,以及将已调制载波作为输入,在信号频率处产生输出的3类元素,被称为“解调器”。如果类型2和类型3的动态行为发生在信号侧,则它们很容易采用简单的包络传递函数描述。但是,类型1元素在实际频率而不是信号频率方面具有已知的传递函数,因此必须导出包络或信号传递函数。

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