Nothing Special   »   [go: up one dir, main page]

Skip to main content
Log in

Design of horizontal airspace dividing radar antenna array

  • Published:
Cluster Computing Aims and scope Submit manuscript

Abstract

Antenna array has been widely used due to its advantages of high gain, low side lobe and narrow beam. For vehicle radar, antenna array is required to have narrow beam, wide measurement range, middle and long distance coverage in order for the high accuracy, wide angle range, middle and long distance of detection. Therefore, according to the Taylor polynomial microstrip antenna array theory, a 16-unit series-fed microstrip antenna array was designed in this study. Based on this and the beam forming technology, the 3-beam transmission antenna was designed to realize the division of airspace. Then the high frequency structure simulator and the optimization design module of the advanced design system are adopted for the frequency sweeping analysis, and the design size model data of antenna is optimized. The final experimental result shows that the design is qualified for the requirement of spatial division of narrow antenna beam.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Subscribe and save

Springer+ Basic
$34.99 /Month
  • Get 10 units per month
  • Download Article/Chapter or eBook
  • 1 Unit = 1 Article or 1 Chapter
  • Cancel anytime
Subscribe now

Buy Now

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1
Fig. 2
Fig. 3
Fig. 4
Fig. 5
Fig. 6
Fig. 7
Fig. 8
Fig. 9
Fig. 10
Fig. 11
Fig. 12
Fig. 13
Fig. 14
Fig. 15
Fig. 16

Similar content being viewed by others

References

  1. Pauli, M., Göttel, B., Scherr, S., et al.: Miniaturized millimeter-wave radar sensor for high-accuracy applications. IEEE Trans. Microw. Theory Tech. 65(5), 1707–1715 (2017)

    Article  Google Scholar 

  2. Menzel, W., Moebius, A.: Antenna concepts for millimeter-wave automotive radar sensors. Proc. IEEE 100(7), 2372–2379 (2012)

    Article  Google Scholar 

  3. Changlu, Lin: Modern Antenna Design, 1st edn. Post and Telecom Press, Beijing (1990)

    Google Scholar 

  4. Balanis, C.A.: Antenna Theory: Analysis and Design, 3rd edn. Wiley, Hoboken (2005)

    Google Scholar 

  5. Das, S., Bhattacharya, M., Sen, A., Mandal, D.: Linear antenna array synthesis with decreasing sidelobe and narrow beam-width. ACEEE Int. J. Commun. 3(1), 10–14 (2012)

    Google Scholar 

  6. Jiang, H., Xue, Z., Zeng, Q., et al.: High-gain low-RCS slot antenna array based on checkerboard surface. IET Microw. Antennas Propag. (2017)

  7. Krishna, S., Mishra, G., Sharma, S.K.. A series fed planar microstrip patch array antenna with 1D beam steering for 5G spectrum massive MIMO applications. In: 2018 IEEE of Radio and Wireless Symposium (RWS), pp. 209–212 (2018)

  8. Grau, A., Romeu, J., Blanch, S., et al.: Optimization of linear multielement antennas for selection combining by means of a butler matrix in different MIMO environments. IEEE Trans. Antennas Propag. 54(11), 3251–3264 (2006)

    Article  Google Scholar 

  9. Malekzadeh, M., Khosravi, A., Alighale, S., et al.: Optimization of orthogonal poly phase coding waveform based on bees algorithm and artificial bee colony for MIMO radar. In: International Conference on Intelligent Computing Technology, pp. 95–102. Springer, Berlin (2012)

    Google Scholar 

  10. Fang, L., Yansen, S., Jingwei, L., et al.: Multi-line array beam switching strategy for mesh network. Comput. Eng. Des. 35(7), 2299–2304 (2014)

    Google Scholar 

  11. Weiping, Shu, Zhengyu, Zhao: Suppression of trigonometric size effect in wind field measurement of an airspace dividing antenna. Chin. J. Space Sci. 26(4), 257–263 (2006)

    Google Scholar 

  12. Sergeeva, M., Delahaye, D., Mancel, C., et al.: Dynamic airspace configuration by genetic algorithm. J. Traffic Transp. Eng. 4(3), 300–314 (2017)

    Google Scholar 

  13. Wang, S., Cao, X., Haiyun, L.I., et al.: Air route network optimization in fragmented airspace based on cellular automata. Chin. J. Aeronaut. 30(3), 1184–1195 (2017)

    Article  Google Scholar 

  14. Hu, N., Duan, B., Xu, W., Zhou, J.: A new interval pattern analysis method of array antennas based on taylor expansion. IEEE Trans. Antennas Propag. 65(11), 6151–6156 (2017)

    Article  Google Scholar 

  15. Rahardjo, E.T., Sandi, E., Zulkifli, F.Y.: Design of linear sparse array based on the Taylor line source distribution element spacing. In: 2017 IEEE Asia Pacific of IEEE Asia Pacific Microwave Conference, pp. 61–64. IEEE (2017)

  16. Solano, L.A.R., Perez, M.S., Santos, D.P.: Design, simulation and test of a slot antenna array using one parameter taylor synthesis in the GHz range. IEEE Latin Am. Trans. 13(10), 3210–3215 (2015)

    Article  Google Scholar 

  17. Jian, W., Yinong, Z., Ziyuan, H.: Theory and Engineering Application of Antenna Array, vol. 5, 1st edn. Electronic Industry Press, Beijing ISBN978-7-121-25462-8 (2015)

  18. Khaleghi, A., TalePour, Z., Ramazan, M.: Resonant slot antenna array on a ridge gap waveguide. IET Microw. Antennas Propag. 11(8), 1092–1097 (2017)

    Article  Google Scholar 

  19. Vorob’Ev, S.N., Nechaev, Y.B., Prosvirnin, S.L.: Mutual coupling of elements in finite microstrip antennas. Radiophys. Quantum Electron. 35(8), 440–451 (1992)

    Article  Google Scholar 

  20. Shan, L., Geyi, W.: Optimal design of focused antenna arrays. IEEE Trans. Antennas Propag. 62(11), 5565–5571 (2014)

    Article  MathSciNet  Google Scholar 

  21. Zhao, F.: Integrated Technology and Experimental study on Analysis of Conformal Phased Antenna Array. National University of Defense Technology, Changsha (2012)

    Google Scholar 

  22. Feng, L., Yizhi, L.: Design of low-sidelobe multi-beam rotman lens antenna. Telecommun. Eng. 51(10), 92–98 (2011)

    Google Scholar 

  23. Jiang, Y., Geyi, W., Yang, L., Sun, H.: Circularly-polarized focused microstrip antenna arrays. IEEE Antennas Wirel. Propag. 15, 52–55 (2016)

    Article  Google Scholar 

  24. Xinde, J., Zhao, Y.: Practical Antenna Engineering Technology, vol. 4, 1st edn. Xidian University Press, Xi’an. ISBN978-7-5606-3378-9 (2015)

  25. Mingxiang, L., Min, L.: HFSS Electromagnetic Simulation from Primary to Advance, 1st edn. Post and Telecom Press, Beijing (2013)

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Wei Li.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Li, W., Xu, C., He, Y. et al. Design of horizontal airspace dividing radar antenna array. Cluster Comput 22 (Suppl 3), 6767–6780 (2019). https://doi.org/10.1007/s10586-018-2648-3

Download citation

  • Received:

  • Revised:

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s10586-018-2648-3

Keywords

Navigation