反馈控制系统中引线控制器的最优合成

L. G. Walters
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引用次数: 2

摘要

相位引线网络,如图1所示,在被那些对伺服机构的新领域感兴趣的人采用作为主要稳定网络之一之前,就已经证明了它提高线性反馈放大器相对稳定性的能力。它的广泛接受是基于它在处理直流信号时的简单形式,以及它在没有机械装置的情况下产生速率型信号元件的能力。当将其作为与奈奎斯特回路传递特性图(1)*结合使用的合成工具时,它允许相当大的自由度来塑造轮廓,使其符合一般可接受的性能标准,在有限的程度上可以在奈奎斯特图上进行解释。引相网络的主要缺点是其信号分量的衰减,如果将该网络视为静态(直流)条件下的电阻分压器,则很容易理解这种衰减。在存在高频噪声成分的应用中,这种牺牲是更令人讨厌的,并且需要保持信噪比,实际上已经从输入包含大噪声成分的系统中消除了这种有用的工具。一个由雷达信号控制的系统就提供了这样一种情况。
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Optimum lead-controller synthesis in feedback-control systems
The phase lead network, shown in figure 1, had demonstrated its ability to improve the relative stability of linear feedback amplifiers long before it was adopted as one of the principal stabilizing networks by those interested in the newer field of servomechanisms. Its wide acceptance was based upon its simple form when dealing with d.c. signals and its ability to produce rate-type signal components without mechanical devices. When used as a synthesis tool in connection with the Nyquist plot (1)* of the loop-transfer characteristics, it allows considerable freedom in shaping the contour to conform to generally acceptable standards of performance to the limited extent with which they can be interpreted on this Nyquist plot. The major drawback of the phase-lead network is its attenuation of the signal components, an attenuation which may be readily appreciated if this network is viewed as a resistance voltage divider under static (d.c.) conditions. This sacrifice is all the more objectionable in applications where higher-frequency noise components are present and the need to maintain the signal-to-noise ratio has virtually eliminated this useful tool from systems whose inputs contain large noise components. A system controlled by a radar signal provides just such a situation.
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