Preview

Izmeritel`naya Tekhnika

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Group delay of a signal in the receiving path estimation of measuring devices with the use of the step response

https://doi.org/10.32446/0368-1025it.2024-5-48-53

Abstract

The current parameters coordinate-time measuring instruments calibration methods of global navigation satellite systems are considered. For coordinate-time measuring instruments calibration in the process of their development and testing, the global navigation satellite systems signals simulators are used. However, the simulators also need a calibration procedure. Currently, there are various methods for ensuring the metrological characteristics of simulators, including their calibration using oscilloscope. However, this method has not only advantages, but also limitations related to the use of an oscilloscope. VNIIFTRI develops a new reference measuring device – the calibrator of the global navigation satellite systems simulator. Since the work of the calibrator is based on the same principles as the work of the navigation receiver and the calibrator determine the time delay of accepted signal from the calibrated simulator, it is extremely important to accurately evaluate the own group time delay of the calibrator by the reception circuit and develop the methodology of determining the determination this metrological characteristic. The schematic solutions used of creating a calibrator include digital blocks, such as digital-analog or analog-cyphrane converters. The purpose of the study is to evaluate the group time delay in the input circuit of the calibrator containing an analog-digital converter. Traditional group delay estimation methods using S-parameters are not suitable for this purpose because they cannot compare analog and digital signals. This article has developed an indirect method for assessing the grouping time delay in the calibrator input circuit. The method proposed by the authors determines the group time delay time in the reception of the calibrator according to the circuit transition characteristic. The method is verification and calibration of measuring equipment using the input and output signals with an analog-digital converting. Using the proposed method, the group time delay in the calibrator circuit containing an analog-digital converter is estimated. The results of studies are given by the proposed method of this parameter of circuits with various microwave devices (power splitter, circulator). The proposed method allows you to obtain accurate assessments of the frequency characteristics of the measuring devices circuits and normalize their metrological characteristics.

About the Authors

E. G. Uyutnova
Russian Metrological Institute of Technical Physics and Radio Engineering
Russian Federation

Elizabetta G. Uyutnova, Technician 

Mendeleevo, Moscow region



D. S. Pecheritsa
Russian Metrological Institute of Technical Physics and Radio Engineering
Russian Federation

Dmitriy S. Pecheritsa, Deputy head of department 

Mendeleevo, Moscow region



S. Yu. Burtsev
Russian Metrological Institute of Technical Physics and Radio Engineering
Russian Federation

Svyatoslav Yu. Burtsev, Head of division 

Mendeleevo, Moscow region



A. S. Zavgorodnii
Russian Metrological Institute of Technical Physics and Radio Engineering
Russian Federation

Aleksey S. Zavgorodnii, Head of division 

Mendeleevo, Moscow region



References

1. Perov A. I., Kharisov V. N. GLONASS. Principles of construction and operation. 4th ed. Radio engineering, Moscow (2010). (In Russ.)

2. Pecheritsa D. S., Fedotov V .N. Calibration of global navigation satellite systems signal simulators. Measurement Techniques, 61(8), 824–830 (2018). https://doi.org/10.32446/0368-1025it-2018-8-60-64

3. Burtsev S. Y., Pecheritsa D. S., Frolov A. A. Method of estimating the carrier phase generation error by GNSS simulators. Proc. of the 13th annual Baška GNSS Conference, pp. 21–28, Baška, Croatia (2019).

4. Burtsev S. Y., Pecheritsa D. S., Fedotov V. N. Software of estimating the pseudorange generation error by GNSS simulators: сomputer program RU2021619933. Computer Programs. Databases. Topographies of integrated circuits, (6) (2021). (In Russ.)

5. Pecheritsa D. S., Burtsev S. Yu., Frolov A. A. Method for determining the fractional part of the cycle of the carrier frequency of the navigation signal of the GNSS signal simulator. Measurement Techniques, 63(11), 891–898 (2021). https://doi.org/10.1007/s11018-021-01868-7

6. Pecheritsa D. S. Method for calibrating signal simulators of the GLONASS system and foreign space navigation systems. Metrology in the XXI century: Materials of the V scientific and practical conference of young scientists, graduate students and specialists. Mendeleevo, VNIIFTRI, pp. 118–129 (2018). (In Russ.)

7. Burtsev S. Y., Pecheritsa D. S. Signal delay estimation of the measuring device ADC path. Almanac of modern metrology, (4(32)), 52–58 (2022). (In Russ.)

8. Gonorovsky I. S. Radio engineering circuits and signals: a textbook for universities. 4th ed. Radio and Communications, Moscow (1986). (In Russ.)

9. Ganesh E. N. Design of digital frequency sensitive phase detector and study its phase response. Journal of Microwave Engineering and Technologies, 8(3), 43–51 (2021).

10. Naylor J. R. Testing digital/analog and analog/digital converters. IEEE transactions on Circuits and Systems, 25(7), 526–538 (1978).

11. Medawar S., Händel P. On the calibration of wideband analog-digital converters, IEEE Transactions on Instrumentation and Measurement, 62(8), 2353–2355 (2013) https://doi.org/10.1109/TIM.2013.2255991

12. Tim W. Test analog-digital converter quickly and efficiently. Electronic design, 29(15), 193–198 (1981).

13. Lyons R. Understanding Digital signal processing. Prentice Hall PTR, New Jersey (2004).

14. Pupalaikis P. Group delay and its impact on serial data transmission and testing. IEC DesignCon 2006, February 6–9, 2006, Santa Clara, California, USA, 1, 1407–1429 (2006).

15. Antoniou A. Digital Signal Processing – Signals, Systems and Filters. McGraw Hill, New York (2006).


Supplementary files

Review

For citations:


Uyutnova E.G., Pecheritsa D.S., Burtsev S.Yu., Zavgorodnii A.S. Group delay of a signal in the receiving path estimation of measuring devices with the use of the step response. Izmeritel`naya Tekhnika. 2024;(5):48-53. (In Russ.) https://doi.org/10.32446/0368-1025it.2024-5-48-53

Views: 146


ISSN 0368-1025 (Print)
ISSN 2949-5237 (Online)