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zero pole point
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  相似匹配句对
     Research Into Methodologies of Zero-pole Configure
     对极点配置方法的探讨
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     The Arctic pole, 35℃ below zero.
     北极。 摄氏零下35度。
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     Zero-pole Point Identification Based On Genetic Algorithm
     遗传算法在零极点辩识中的应用
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     SUSPECT ZERO
     [零号嫌疑犯]
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     HOW TO JUDGE SIMILAR ZERO AND POLE POINT OF SYSTEM MODEL
     如何判别模型的近似零极点
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None of the root locus of G(S)H(S)=K(S+a)/(S+b) open-loop transfer function system dealt with in numerous documents take into consideration whether there are separation points and junction points.The author does not think it comprehensive.Through the analysis of some examples, the author concludes that the above system has the following three states; (1) There may be both separation points and junction points; (2) There are not only separation points with zero pole points...

None of the root locus of G(S)H(S)=K(S+a)/(S+b) open-loop transfer function system dealt with in numerous documents take into consideration whether there are separation points and junction points.The author does not think it comprehensive.Through the analysis of some examples, the author concludes that the above system has the following three states; (1) There may be both separation points and junction points; (2) There are not only separation points with zero pole points but also junction points; (3) There is only one separation point with zero pole points.From the above exmples, this paper derives an equation and a general expression of the root locus of the system.

多种文献讨论的G(S)H(S)=K(S+a)/S~2(S+b)型的开环传递函数系统的根轨迹,均未考虑它是否有分离点与会合点问题。作者认为这是不全面的。本文通过特例分析,认为上述系统有三种情况:1.既可能有分离点,又有会合点。2.有零极点的分离点,还有会合点。3.只有零极点的分离点。本文还通过上述特例导出该型系统的根轨迹的方程式及通项式。

The properties of a nonlinear transfer function are studied. The new ideas of nth-order .stability, nth-order zero-pole point, nth-order frequency response and nth-order sensitivity as well as a new theory and implementation on sensitivity of nonlinear circuits and systems are proposed.

本文研究了非线性传递函数的性质,提出了n阶稳定性、n阶零极点,n阶频率响应、n阶零灵敏度等新概念和非线性系统灵敏度分析的新理论和方法。

zero-pole points identification based on genetc algorithm by substituting gene flow for mutation operator and realization steps are discussed and the stimulation showes this method available and practical and avoids premature convegence.

介绍了遗传算法的基本原理,给出了遗传算法在零极点辩识中系统时延、零极点辩识的实现步骤,在种群进化过程中采用基因流代替突变算子,仿真结果说明了该方法的有效性和实用性,并说明该方法有效地避免算法早熟收敛。

 
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