Research on OTA Testing Optimization of 5G IoT Devices

Authors

  • Xiaochen Chen China Telecommunication Technology Labs China Academy of Information and Communications Technology, Beijing, 100191, China
  • Xianhui Liu China Telecommunication Technology Labs China Academy of Information and Communications Technology, Beijing, 100191, China sunsiyang@caict.ac.cn
  • Siyang Sun China Telecommunication Technology Labs China Academy of Information and Communications Technology, Beijing, 100191, China https://orcid.org/0000-0002-6733-1272

DOI:

https://doi.org/10.13052/2023.ACES.J.380101

Keywords:

5G IoT, Measurement Grid, Measurement Uncertainty Analysis, OTA Testing

Abstract

Over-the-air (OTA) testing for wireless devices is crucial to guarantee actual network performance. Current OTA testing requires respectively 266 and 62 grid points for Total Radiated Power (TRP) and Total Isotropic Sensitivity (TIS) measurement. For 5G Internet of Things (IoT) devices, especially for low transmit duty-cycle devices, this number of grid points could lead to an unacceptably large amount of test time. Therefore, test time reduction is significant. The objective of this paper is to determine a suitable measurement grid for OTA testing of 5G IoT devices which balances measurement grid uncertainty/errors with test time. Two reference patterns representing a reasonable worst-case scenario of IoT devices are proposed for measurement uncertainty (MU) analysis of different grid configurations. The effects of different grid configurations on OTA testing accuracy are evaluated. The determination of associated MU term is proposed and determined based on statistical analysis. Finally, the reduction of grid points from currently required 62 (30/30 in theta/phi) to 32 (45/36) could save roughly 50% test time while requiring an uncertainty increase of less than 0.2 dB, which is acceptable for OTA testing of 5G IoT devices.

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Author Biographies

Xiaochen Chen, China Telecommunication Technology Labs China Academy of Information and Communications Technology, Beijing, 100191, China

Xiaochen Chen Senior Engineer, Chinese Leaders of EU FP6 GO4IT, FP7 WALTER, is responsible for several key research projects at the National Development and Reform Commission and the Ministry of Industry and Information Technology. He is responsible for formulating more than 20 domestic and foreign communication standards, applying for/owning 6 patents, and has published more than 20 academic papers. He is now with China Telecommunication Technology Labs, China Academy of Information and Communication Technology.

Xianhui Liu, China Telecommunication Technology Labs China Academy of Information and Communications Technology, Beijing, 100191, China sunsiyang@caict.ac.cn

Xianhui Liunn is currently a Senior Engineer with China Telecommunication Technology Labs, China Academy of Information and Communications Technology. He is mainly engaged in 5G OTA testing, MIMO OTA and related technology research.

Siyang Sun, China Telecommunication Technology Labs China Academy of Information and Communications Technology, Beijing, 100191, China

Siyang Sun is currently an Associate Professor with China Telecommunication Technology Labs, China Academy of Information and Communications Technology. He is mainly engaged in 5G standardization, 5G OTA testing, MIMO OTA and related technology research.

References

IMT-2020 (5G) Promotion Group, “White paper on 5G concept,” Feb. 2015.

ITU-R, “Recommendation ITU-R M.2083-0: IMT vision – framework and overall objectives of the future development of IMT for 2020 and beyond,” Sep. 2015.

Y. Qi, G. Yang, L. Liu, J. Fan, A. Orlandi, H. Kong, W. Yu, and Z. Yang, “5G over-the-air measurement challenges: Overview,” IEEE Trans. Electromagn. Compat., vol. 59, no. 6, pp. 1661-1670, 2017.

P. Shen, Y. Qi, W. Yu, J. Fan, and F. Li, “OTA measurement for IoT wireless device performance evaluation: Challenges and solutions,” IEEE Internet Things J., vol. 6, no. 1, pp. 1223-1237, 2019.

Y. Zhang, G. Tian, S. Zhang, and C. Li, “A knowledge-based approach for multiagent collaboration in smart home: From activity recognition to guidance service,” IEEE Trans. Instrum. Meas., vol. 69, no. 2, pp. 317-329, 2020.

L. Chettri and R. Bera, “A comprehensive survey on Internet of Things (IoT) toward 5G wireless systems,” IEEE Internet Things J., vol. 7, no. 1, pp. 16-32, 2020.

K. Shafique, B. A. Khawaja, F. Sabir, S. Qazi, and M. Mustaqim, “Internet of Things (IoT) for next-generation smart systems: A review of current challenges, future trends and prospects for emerging 5G-IoT scenarios,” IEEE Access, vol. 8, pp. 23022-23040, 2020.

S. Henry, A. Alsohaily, and E. S. Sousa, “5G is real: Evaluating the compliance of the 3GPP 5G new radio system with the ITU IMT-2020 Requirements,” IEEE Access, vol. 8, pp. 42828-42840,2020.

X. Chen, J. Tang, T. Li, S. Zhu, Y. Ren, Z. Zhang, and A. Zhang, “Reverberation chambers for over-the-air tests: An overview of two decades of research,” IEEE Access, vol. 6, pp. 49129-49143, 2018.

H. T. Chattha, M. K. Ishfaq, B. A. Khawaja, A. Sharif, and N. Sheriff, “Compact multiport MIMO antenna system for 5G IoT and cellular handheld applications,” IEEE Antennas Wireless Propag. Lett., vol. 20, no. 11, pp. 2136-2140, 2021.

X. Chen, “Measurement uncertainty of RC and its reduction techniques for OTA tests: A review,” IET Microw. Antennas Propag., vol. 13, no. 15, pp. 2598-2604, 2019.

B. Xiao, H. Wong, D. Wu, and K. L. Yeung, “Design of small multiband full-screen smartwatch antenna for IoT applications,” IEEE Internet Things J., vol. 8, no. 24, pp. 17724-17733, 2021.

R. Rodriguez-Cano and R. W. Ziolkowski, “Single-layer, unidirectional, broadside-radiating planar quadrupole antenna for 5G IoT applications,” IEEE Trans. Antennas Propag., vol. 69, no. 9, pp. 5224-5233, 2021.

CTIA Certification Program, “Test plan for wireless device Over-the-Air performance,” V3.9.3, Sep. 2021.

CTIA Certification Program, “Test plan for 2x2 downlink MIMO and transmit diversity Over-the-Air performance,” V1.2.2, Dec. 2021.

CTIA Certification Program, “Test plan for millimeter-wave wireless device Over-the-Air performance,” V1.0.2, Dec. 2020.

3GPP, TR 37.977, “Universal Terrestrial Radio Access (UTRA) and Evolved Universal Terrestrial Radio Access (E-UTRA); Verification ofradiated multi-antenna reception performance of User Equipment (UE),” V16.0.0, Jun. 2020.

3GPP, TR 38.810, “NR; Study on test methods,” V16.6.0, Sep. 2019.

C. W. Clenshaw and A. R. Curtis, “A method for numerical integration on an automatic computer,” Numerische Mathematik, vol. 2, p. 197-205,1960.

P. Shen, Y. Qi, W. Yu, F. Li, and J. Fan, “Fast and accurate TIS testing method for wireless user equipment with RSS reporting,” IEEE Trans. Electromagn. Compat., vol. 58, no. 3, pp. 887-895, 2016.

Y. Qi, P. Jarmuszewski, Q. Zhou, M. Certain, and J. Chen, “An efficient TIS measurement technique based on RSSI for wireless mobile stations,” IEEE Trans. Instrum. Meas., vol. 59, no. 9, pp. 2414-2419, 2010.

F. Li, S. Huang, W. Xue, Y. Ren, and X. Chen, “Signal and coherence bandwidth effects on total radiated power measurements of LTE devices in reverberation chambers,” IEEE Trans. on Instrum. Meas., vol. 71, pp. 1-3, 2022.

W. Xue, F. Li, and X. Chen, “Effects of signal bandwidth on total isotropic sensitivity measurements in reverberation chamber,” IEEE Trans. Instrum. Meas., vol. 70, pp. 1-8, 2021.

CTIA Certification Program, “Test plan for wireless Large-Form-Factor device Over-the-Air performance,” V1.2.1, Feb. 2019.

W. Xue, F. Li, X. Chen, S. Zhu, A. Zhang, and T. Svensson, “A unified approach for uncertainty analyses for total radiated power and total isotropic sensitivity measurements in reverberation chamber,” IEEE Trans. Instrum. Meas., vol. 70, pp. 1-12, 2021.

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Published

2023-05-30

How to Cite

[1]
X. . Chen, X. . Liu, and S. . Sun, “Research on OTA Testing Optimization of 5G IoT Devices”, ACES Journal, vol. 38, no. 01, pp. 1–6, May 2023.

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Section

Antennas, Metasurfaces, and Testing Methodologies for 5G/6G Communication

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