Efficiency assessment of the frequency method and the moment method of impulse response characteristics for parameter identification of two-pole circuits (original) (raw)
Access this article
Subscribe and save
- Starting from 10 chapters or articles per month
- Access and download chapters and articles from more than 300k books and 2,500 journals
- Cancel anytime View plans
Buy Now
Price excludes VAT (USA)
Tax calculation will be finalised during checkout.
Instant access to the full article PDF.
References
- Kneller, V.Yu., Avtomaticheskoe izmerenie sostavlyayushchikh kompleksnogo soprotivleniya (Automatic Measurement of Impedance Components), Moscow: Energiya, 1967.
Google Scholar - Kneller, V.Yu. and Borovskikh, L.P., Opredelenie parametrov mnogoelementnykh dvukhpolyusnikov (Determination of Parameters of the Multielement Two-Pole Circuits), Moscow: Energoatomizdat, 1986.
Google Scholar - Agamalov, Yu.R., Bobylev, D.A., and Kneller, V.Yu., PC-based Meters/Analyzers for Impedance Parameters, Datch. Sist., 2004, no. 5, pp. 14–18.
Google Scholar - Bobylev, D.A., Phase-Sensitive Transformations Invariant to Additive Noise Represented by a Finite-Degree Polynomial, Datch. Sist., 2007, no. 12, pp. 8–14.
Google Scholar - Max, J., Méthodes et techniques de traitement du signal et application aux mesures physiques, vol. 1: Principes généraux et méthodes classiques, Paris: Masson, 1981. Translated under the title Metody i tekhnika obrabotki signalov pri fizicheskikh izmereniyakh, tom 1: Osnovnye printsipy i klassicheskie metody, Moscow: Mir, 1983.
Google Scholar - Degtyarenko, P.I. and Konovalenko, V.I., Opredelenie kharakteristik zven’ev sistem avtomaticheskogo regulirovaniya (Definition of Characteristics for Elements of Automatic Control Systems), Moscow: Energiya, 1973.
Google Scholar - Siebert, W.M., Circuits, Signals, and Systems, Boston: MIT Press, 1986. Translated under the title Tsepi, signaly, sistemy, Moscow: Mir, 1988, vol. 1.
Google Scholar - Ivanov, V.I., Titov, V.S., and Golubov, D.A., Using Generic Parameters of the Measuring Circuitry for Identification of Multiple-Unit Double-Pole Chains, Datch. Sist., 2010, no. 8, pp. 43–45.
Google Scholar - Martyashin, A.I., Shakhov, E.K., and Shlyandin, V.M., Preobrazovateli elektricheskikh parametrov dlya sistem kontrolya i izmereniya (Converters of Electrical Parameters for Systems of Control and Measurement), Moscow: Energiya, 1976.
Google Scholar - Svistunov, B.L., Analyzing Truncation Errors in the Measurements of Parameters of Electric Circuits with Intermediate Pulse-Time Conversion, Datch. Sist., 2003, no. 7, pp. 17–19.
Google Scholar - Fayans, A.M., The Capabilities of Unique Parameter Definition of Objects Represented by Multielement RLC Two-Pole Circuits Based on Transient Process Characteristics, Tr. II Ross. Konf. “Tekhnicheskie i programmnye sredstva sistem upravleniya, kontrolya i izmereniya” (UKI-10) (Proc. II All-Russian Conf. “Hardware and Software Means of Control, Inspection and Measuring Systems”), Moscow, October 18–20, 2010.
Google Scholar - Peredel’skii, G.I., Mostovye tsepi s impul’snym pitaniem (Bridge Circuits with an Impulsive Power Supply), Moscow: Energoatomizdat, 1988.
Google Scholar - Khurgin, Ya.I. and Yakovlev, V.P., Finitnye funktsii v fizike i tekhnike (Finite Functions in Physics and Engineering), Moscow: Nauka, 1971.
MATH Google Scholar - Bobylev, D.A., Using Polyharmonical Test Signal for Increase of the Speed of Impedance Meters/ Analysers, Datch. Sist., 2010, no. 12, pp. 19–25.
Google Scholar