Capacity characteristics of the indoor pRopagation channel for MIMO system at 5.25 GHz

Jung Ha Kim, Seong Hyun Ryu, Se Woong Kwon, Young Joong Yoon, Jae Ho Seok, In Pyo Hong

Research output: Contribution to conferencePaper

Abstract

This paper investigates capacity characteristics of the indoor NLOS(Non Line-Of-Sight) propagation channel for MIMO system at 5 GHz. To get an indoor MIMO channel, a 3D ray tracing and a patch scattering model are applied to various antenna parameters. Measured statistical channel parameters in the same NLOS environment verify the accuracy of the simulated results. After channel matrices are obtained from the simulated model, eigenvalues and channel capacities are calculated at specific positions. Eigenvalues are analyzed with accumulated distributions. Also, channel capacities are simulated and analyzed with spacing of antenna elements, receiver moving route, and number of antennas. It is appropriate to increase number of antenna elements and select 0.5 wavelength element spacing in a high reflection and diffraction environment to get an enhanced channel capacity.

Original languageEnglish
Pages587-590
Number of pages4
Publication statusPublished - 2004 Nov 2
EventProceedings - 5th World Wireless Congress - San Francisco, CA, United States
Duration: 2004 May 252004 May 28

Other

OtherProceedings - 5th World Wireless Congress
CountryUnited States
CitySan Francisco, CA
Period04/5/2504/5/28

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MIMO systems
Channel capacity
Antennas
Ray tracing
Diffraction
Scattering
Wavelength

All Science Journal Classification (ASJC) codes

  • Engineering(all)

Cite this

Kim, J. H., Ryu, S. H., Kwon, S. W., Yoon, Y. J., Seok, J. H., & Hong, I. P. (2004). Capacity characteristics of the indoor pRopagation channel for MIMO system at 5.25 GHz. 587-590. Paper presented at Proceedings - 5th World Wireless Congress, San Francisco, CA, United States.
Kim, Jung Ha ; Ryu, Seong Hyun ; Kwon, Se Woong ; Yoon, Young Joong ; Seok, Jae Ho ; Hong, In Pyo. / Capacity characteristics of the indoor pRopagation channel for MIMO system at 5.25 GHz. Paper presented at Proceedings - 5th World Wireless Congress, San Francisco, CA, United States.4 p.
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abstract = "This paper investigates capacity characteristics of the indoor NLOS(Non Line-Of-Sight) propagation channel for MIMO system at 5 GHz. To get an indoor MIMO channel, a 3D ray tracing and a patch scattering model are applied to various antenna parameters. Measured statistical channel parameters in the same NLOS environment verify the accuracy of the simulated results. After channel matrices are obtained from the simulated model, eigenvalues and channel capacities are calculated at specific positions. Eigenvalues are analyzed with accumulated distributions. Also, channel capacities are simulated and analyzed with spacing of antenna elements, receiver moving route, and number of antennas. It is appropriate to increase number of antenna elements and select 0.5 wavelength element spacing in a high reflection and diffraction environment to get an enhanced channel capacity.",
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Kim, JH, Ryu, SH, Kwon, SW, Yoon, YJ, Seok, JH & Hong, IP 2004, 'Capacity characteristics of the indoor pRopagation channel for MIMO system at 5.25 GHz' Paper presented at Proceedings - 5th World Wireless Congress, San Francisco, CA, United States, 04/5/25 - 04/5/28, pp. 587-590.

Capacity characteristics of the indoor pRopagation channel for MIMO system at 5.25 GHz. / Kim, Jung Ha; Ryu, Seong Hyun; Kwon, Se Woong; Yoon, Young Joong; Seok, Jae Ho; Hong, In Pyo.

2004. 587-590 Paper presented at Proceedings - 5th World Wireless Congress, San Francisco, CA, United States.

Research output: Contribution to conferencePaper

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AB - This paper investigates capacity characteristics of the indoor NLOS(Non Line-Of-Sight) propagation channel for MIMO system at 5 GHz. To get an indoor MIMO channel, a 3D ray tracing and a patch scattering model are applied to various antenna parameters. Measured statistical channel parameters in the same NLOS environment verify the accuracy of the simulated results. After channel matrices are obtained from the simulated model, eigenvalues and channel capacities are calculated at specific positions. Eigenvalues are analyzed with accumulated distributions. Also, channel capacities are simulated and analyzed with spacing of antenna elements, receiver moving route, and number of antennas. It is appropriate to increase number of antenna elements and select 0.5 wavelength element spacing in a high reflection and diffraction environment to get an enhanced channel capacity.

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Kim JH, Ryu SH, Kwon SW, Yoon YJ, Seok JH, Hong IP. Capacity characteristics of the indoor pRopagation channel for MIMO system at 5.25 GHz. 2004. Paper presented at Proceedings - 5th World Wireless Congress, San Francisco, CA, United States.