The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. ex. Some numerals are expressed as "XNUMX".
Copyrights notice
The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. Copyrights notice
Dalam kertas kerja ini, prestasi sistem MIMO E-SDM berbilang pengguna dalam penghantaran pautan bawah dinilai dalam kedua-dua persekitaran pudar yang berubah-ubah masa yang tidak berkorelasi dan berkorelasi. Dalam kes yang ideal, menggunakan skema penjurusan blok, gangguan antara pengguna boleh dihapuskan sepenuhnya pada setiap pengguna; dan menggunakan teknik E-SDM untuk setiap pengguna, peruntukan sumber optimum boleh dicapai, dan substream ortogonal spatial boleh diperolehi. Oleh itu, gabungan skema penjurusan blok dan teknik E-SDM yang digunakan pada sistem MIMO berbilang pengguna memberikan hasil yang sangat baik. Walau bagaimanapun, dalam persekitaran yang realistik, disebabkan sifat saluran yang dinamik dan kelewatan pemprosesan pada kedua-dua pemancar dan penerima, perubahan saluran semasa kelewatan boleh menyebabkan gangguan antara pengguna walaupun skema BD digunakan. Di samping itu, perubahan itu juga boleh mengakibatkan gangguan antara substream yang besar dan menghalang peruntukan sumber optimum daripada dicapai. Akibatnya, prestasi sistem mungkin merosot dengan serius. Untuk mengatasi masalah tersebut, kami mencadangkan kaedah ekstrapolasi saluran untuk mengimbangi perubahan saluran. Menggunakan kaedah yang dicadangkan kami, hasil simulasi menunjukkan bahawa prestasi sistem yang jauh lebih baik boleh diperolehi daripada kes konvensional. Selain itu, ia juga menunjukkan bahawa prestasi sistem dalam persekitaran pudar yang berkorelasi banyak bergantung pada konfigurasi antena dan sudut penyebaran dari stesen pangkalan kepada penyebar.
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Salinan
Huu Phu BUI, Yasutaka OGAWA, Toshihiko NISHIMURA, Takeo OHGANE, "Performance Evaluation of Multiuser MIMO E-SDM Systems in Time-Varying Fading Environments" in IEICE TRANSACTIONS on Communications,
vol. E92-B, no. 7, pp. 2374-2388, July 2009, doi: 10.1587/transcom.E92.B.2374.
Abstract: In this paper, the performance of multiuser MIMO E-SDM systems in downlink transmission is evaluated in both uncorrelated and correlated time-varying fading environments. In the ideal case, using the block diagonalization scheme, inter-user interference can be completely eliminated at each user; and using the E-SDM technique for each user, optimal resource allocation can be achieved, and spatially orthogonal substreams can be obtained. Therefore, a combination of the block diagonalization scheme and the E-SDM technique applied to multiuser MIMO systems gives very good results. In realistic environments, however, due to the dynamic nature of the channel and processing delay at both the transmitter and the receiver, the channel change during the delay may cause inter-user interference even if the BD scheme is used. In addition, the change may also result in large inter-substream interference and prevent optimal resource allocation from being achieved. As a result, system performance may be degraded seriously. To overcome the problem, we propose a method of channel extrapolation to compensate for the channel change. Applying our proposed method, simulation results show that much better system performance can be obtained than the conventional case. Moreover, it also shows that the system performance in the correlated fading environments is much dependent on the antenna configuration and the angle spread from the base station to scatterers.
URL: https://global.ieice.org/en_transactions/communications/10.1587/transcom.E92.B.2374/_p
Salinan
@ARTICLE{e92-b_7_2374,
author={Huu Phu BUI, Yasutaka OGAWA, Toshihiko NISHIMURA, Takeo OHGANE, },
journal={IEICE TRANSACTIONS on Communications},
title={Performance Evaluation of Multiuser MIMO E-SDM Systems in Time-Varying Fading Environments},
year={2009},
volume={E92-B},
number={7},
pages={2374-2388},
abstract={In this paper, the performance of multiuser MIMO E-SDM systems in downlink transmission is evaluated in both uncorrelated and correlated time-varying fading environments. In the ideal case, using the block diagonalization scheme, inter-user interference can be completely eliminated at each user; and using the E-SDM technique for each user, optimal resource allocation can be achieved, and spatially orthogonal substreams can be obtained. Therefore, a combination of the block diagonalization scheme and the E-SDM technique applied to multiuser MIMO systems gives very good results. In realistic environments, however, due to the dynamic nature of the channel and processing delay at both the transmitter and the receiver, the channel change during the delay may cause inter-user interference even if the BD scheme is used. In addition, the change may also result in large inter-substream interference and prevent optimal resource allocation from being achieved. As a result, system performance may be degraded seriously. To overcome the problem, we propose a method of channel extrapolation to compensate for the channel change. Applying our proposed method, simulation results show that much better system performance can be obtained than the conventional case. Moreover, it also shows that the system performance in the correlated fading environments is much dependent on the antenna configuration and the angle spread from the base station to scatterers.},
keywords={},
doi={10.1587/transcom.E92.B.2374},
ISSN={1745-1345},
month={July},}
Salinan
TY - JOUR
TI - Performance Evaluation of Multiuser MIMO E-SDM Systems in Time-Varying Fading Environments
T2 - IEICE TRANSACTIONS on Communications
SP - 2374
EP - 2388
AU - Huu Phu BUI
AU - Yasutaka OGAWA
AU - Toshihiko NISHIMURA
AU - Takeo OHGANE
PY - 2009
DO - 10.1587/transcom.E92.B.2374
JO - IEICE TRANSACTIONS on Communications
SN - 1745-1345
VL - E92-B
IS - 7
JA - IEICE TRANSACTIONS on Communications
Y1 - July 2009
AB - In this paper, the performance of multiuser MIMO E-SDM systems in downlink transmission is evaluated in both uncorrelated and correlated time-varying fading environments. In the ideal case, using the block diagonalization scheme, inter-user interference can be completely eliminated at each user; and using the E-SDM technique for each user, optimal resource allocation can be achieved, and spatially orthogonal substreams can be obtained. Therefore, a combination of the block diagonalization scheme and the E-SDM technique applied to multiuser MIMO systems gives very good results. In realistic environments, however, due to the dynamic nature of the channel and processing delay at both the transmitter and the receiver, the channel change during the delay may cause inter-user interference even if the BD scheme is used. In addition, the change may also result in large inter-substream interference and prevent optimal resource allocation from being achieved. As a result, system performance may be degraded seriously. To overcome the problem, we propose a method of channel extrapolation to compensate for the channel change. Applying our proposed method, simulation results show that much better system performance can be obtained than the conventional case. Moreover, it also shows that the system performance in the correlated fading environments is much dependent on the antenna configuration and the angle spread from the base station to scatterers.
ER -