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 kepelbagaian pemancar, isyarat yang diterima ialah superposisi isyarat yang dihantar daripada antena pemancar. Oleh itu, pemisahan ciri saluran yang sepadan dengan setiap antena pemancar daripada isyarat ini adalah sangat penting. Skim anggaran saluran konvensional cenderung menunjukkan kerumitan pengiraan yang lebih tinggi untuk profil kelewatan saluran yang lebih besar. Untuk mengurangkan kerumitan pengiraan ini, kaedah tangkapan ketik yang ketara telah dicadangkan. Walau bagaimanapun, masih terdapat beban kerumitan untuk mod penghantaran data. Rujukan [14] telah menunjukkan bagaimana untuk mengurangkan kerumitan untuk mod penghantaran data dalam sistem dengan modulasi modulus malar. Walau bagaimanapun, kaedah ini tidak dapat mengurangkan kerumitan yang diperlukan untuk isyarat berbilang peringkat seperti QAM. Dalam makalah ini, kami mencadangkan skim anggaran saluran yang cekap untuk sistem OFDM dengan kepelbagaian pemancar menggunakan pengekodan trellis ruang masa. Kerumitan pengiraan skim yang dicadangkan adalah bebas daripada profil kelewatan saluran. Juga, berbanding dengan skim konvensional, kerumitan skim yang dicadangkan tidak berkaitan dengan kaedah modulasi termasuk isyarat pelbagai peringkat seperti QAM. Prestasi skim yang dicadangkan dinilai oleh simulasi komputer dalam pelbagai persekitaran pudar berbilang laluan.
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Salinan
Sang-Mun LEE, Hyung-Jin CHOI, "On Channel Estimation for Space-Time Trellis Coded OFDM Systems" in IEICE TRANSACTIONS on Communications,
vol. E85-B, no. 11, pp. 2353-2361, November 2002, doi: .
Abstract: In transmitter diversity, the received signal is the superposition of signals transmitted from transmitter antennas. Thus, the separation of channel characteristics corresponding to each transmitter antennas from these signals is very important. The conventional channel estimation scheme tends to show higher computational complexity for larger channel delay profile. To reduce this computational complexity, significant-tap-catching method has been proposed. However, there is still a burden of complexity for data transmission mode. Reference [14] has shown how to reduce the complexity for data transmission mode in system with constant modulus modulation. However, this method can't reduce the complexity required for multi-level signals such as QAM. In this paper, we propose an efficient channel estimation scheme for OFDM systems with transmitter diversity using space-time trellis coding. The computational complexity of the proposed scheme is independent of channel delay profile. Also, compared with the conventional scheme, the complexity of the proposed scheme is not related to modulation methods including multi-level signals such as QAM. The performance of the proposed scheme is evaluated by computer simulation in various multipath fading environments.
URL: https://global.ieice.org/en_transactions/communications/10.1587/e85-b_11_2353/_p
Salinan
@ARTICLE{e85-b_11_2353,
author={Sang-Mun LEE, Hyung-Jin CHOI, },
journal={IEICE TRANSACTIONS on Communications},
title={On Channel Estimation for Space-Time Trellis Coded OFDM Systems},
year={2002},
volume={E85-B},
number={11},
pages={2353-2361},
abstract={In transmitter diversity, the received signal is the superposition of signals transmitted from transmitter antennas. Thus, the separation of channel characteristics corresponding to each transmitter antennas from these signals is very important. The conventional channel estimation scheme tends to show higher computational complexity for larger channel delay profile. To reduce this computational complexity, significant-tap-catching method has been proposed. However, there is still a burden of complexity for data transmission mode. Reference [14] has shown how to reduce the complexity for data transmission mode in system with constant modulus modulation. However, this method can't reduce the complexity required for multi-level signals such as QAM. In this paper, we propose an efficient channel estimation scheme for OFDM systems with transmitter diversity using space-time trellis coding. The computational complexity of the proposed scheme is independent of channel delay profile. Also, compared with the conventional scheme, the complexity of the proposed scheme is not related to modulation methods including multi-level signals such as QAM. The performance of the proposed scheme is evaluated by computer simulation in various multipath fading environments.},
keywords={},
doi={},
ISSN={},
month={November},}
Salinan
TY - JOUR
TI - On Channel Estimation for Space-Time Trellis Coded OFDM Systems
T2 - IEICE TRANSACTIONS on Communications
SP - 2353
EP - 2361
AU - Sang-Mun LEE
AU - Hyung-Jin CHOI
PY - 2002
DO -
JO - IEICE TRANSACTIONS on Communications
SN -
VL - E85-B
IS - 11
JA - IEICE TRANSACTIONS on Communications
Y1 - November 2002
AB - In transmitter diversity, the received signal is the superposition of signals transmitted from transmitter antennas. Thus, the separation of channel characteristics corresponding to each transmitter antennas from these signals is very important. The conventional channel estimation scheme tends to show higher computational complexity for larger channel delay profile. To reduce this computational complexity, significant-tap-catching method has been proposed. However, there is still a burden of complexity for data transmission mode. Reference [14] has shown how to reduce the complexity for data transmission mode in system with constant modulus modulation. However, this method can't reduce the complexity required for multi-level signals such as QAM. In this paper, we propose an efficient channel estimation scheme for OFDM systems with transmitter diversity using space-time trellis coding. The computational complexity of the proposed scheme is independent of channel delay profile. Also, compared with the conventional scheme, the complexity of the proposed scheme is not related to modulation methods including multi-level signals such as QAM. The performance of the proposed scheme is evaluated by computer simulation in various multipath fading environments.
ER -