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Browsing by Author "Singh, V."

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    Article
    Citation - WoS: 3
    Citation - Scopus: 5
    Equivalent Forms of Single-Operational Transconductance Amplifier Rc Oscillators With Application To Grounded-Capacitor Oscillators
    (inst Engineering Technology-iet, 2010) Singh, V.; Department of Mechatronics Engineering
    It is shown that, given a single-operational transconductance amplifier (OTA) resistor-capacitor (RC) sinusoidal oscillator circuit, it can be put in three other, structurally distinct forms without altering its characteristic equation. This result may facilitate the transformation of some of the available single-OTA RC oscillators employing floating capacitors into the desirable form of employing grounded capacitors. The result turns out to be an aid to a Boolean circuit synthesis method previously given by Tao and Fidler for the generation of single-OTA RC oscillators.
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    Citation - WoS: 2
    Citation - Scopus: 2
    Global Robust Stability of Interval Delayed Neural Networks
    (inst Engineering Technology-iet, 2009) Singh, V.; Sıngh, Vımal; Sıngh, Vımal; Department of Mechatronics Engineering; Department of Mechatronics Engineering
    In recent years, the problem of global robust stability of Hopfield-type interval delayed neural networks has received considerable attention. A number of criteria for the global robust stability of such networks have been reported in the literature. On the basis of the idea of dividing (in respect of both the connection weight matrix A and the delayed connection weight matrix B) the given interval into two intervals, four new criteria for the global robust stability of such networks are established. The criteria are in the form of linear matrix inequality and, hence, computationally tractable. The criteria yield a less conservative condition compared with many recently reported criteria, as is demonstrated with an example.
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    Citation - WoS: 4
    Citation - Scopus: 5
    Improved Global Robust Stability Criterion for Interval Delayed Neural Networks
    (inst Engineering Technology-iet, 2009) Singh, V.; Department of Mechatronics Engineering
    A novel criterion for the global robust stability of Hopfield-type interval neural networks with delay is presented. Some existing criteria turn out to be special cases of the present criterion. An example shows the effectiveness of the present criterion.
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    Editorial
    Citation - WoS: 2
    Citation - Scopus: 2
    Robust Stability of Cellular Neural Networks With Delay: Linear Matrix Inequality Approach - Reply
    (inst Engineering Technology-iet, 2007) Singh, V.; Department of Mechatronics Engineering
    [No Abstract Available]