Presentation 2022-01-20
A Study on Effectiveness Evaluation of FTN Signaling in the Presence of Nonlinear Distortion under Multipath Fading Channels
Atsuya Nakamura, Yuta Kumagai, Shuhei Saito, Hirofumi Suganuma, Keita Kuriyama, Yu Ono, Hayato Fukuzono, Masafumi Yoshioka, Fumiaki Maehara,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) This report investigates the throughput performance of faster-than-Nyquist (FTN) signaling in the presence of nonlinear distortion under multipath fading channels. In our performance evaluation, we use a practical transmission method, in which single-carrier with frequency-domain equalization (SC-FDE) is applied to FTN signaling for broadband wireless communications. For a radio propagation model, the 3GPP tapped delay line (TDL) model is used to evaluate the effect of multipath fading, and the Rapp model is adopted as a power amplifier (PA) model that provides the impact of nonlinear distortion. We compare the throughput performance of FTN signaling with that of Nyquist signaling under the same transmission rate via computer simulations, which clarifies the applicability of FTN signaling to practical broadband wireless communications.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) faster-than-Nyquist (FTN) signaling / nonlinear distortion / multipath fading / peak-to-average power ratio (PAPR) / throughput
Paper # IT2021-33,SIP2021-41,RCS2021-201
Date of Issue 2022-01-13 (IT, SIP, RCS)

Conference Information
Committee RCS / SIP / IT
Conference Date 2022/1/20(2days)
Place (in Japanese) (See Japanese page)
Place (in English) Online
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair Eiji Okamoto(Nagoya Inst. of Tech.) / Yukihiro Bandou(NTT) / Tadashi Wadayama(Nagoya Inst. of Tech.)
Vice Chair Toshihiko Nishimura(Hokkaido Univ.) / Tomoya Tandai(Toshiba) / Fumihide Kojima(NICT) / Toshihisa Tanaka(Tokyo Univ. Agri.&Tech.) / Takayuki Nakachi(Ryukyu Univ.) / Tetsuya Kojima(Tokyo Kosen)
Secretary Toshihiko Nishimura(NEC) / Tomoya Tandai(Panasonic) / Fumihide Kojima(Xiaomi) / Toshihisa Tanaka(Takushoku Univ.) / Takayuki Nakachi(Tokyo Univ. Agri.&Tech.) / Tetsuya Kojima(Saitamai Univ.)
Assistant Koichi Adachi(Univ. of Electro-Comm.) / Osamu Nakamura(Sharp) / Manabu Sakai(Mitsubishi Electric) / Masashi Iwabuchi(NTT) / Tatsuki Okuyama(NTT DOCOMO) / Taichi Yoshida(UEC) / Seisuke Kyochi(Univ. of Kitakyushu) / Masanori Hirotomo(Saga Univ.)

Paper Information
Registration To Technical Committee on Radio Communication Systems / Technical Committee on Signal Processing / Technical Committee on Information Theory
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A Study on Effectiveness Evaluation of FTN Signaling in the Presence of Nonlinear Distortion under Multipath Fading Channels
Sub Title (in English)
Keyword(1) faster-than-Nyquist (FTN) signaling
Keyword(2) nonlinear distortion
Keyword(3) multipath fading
Keyword(4) peak-to-average power ratio (PAPR)
Keyword(5) throughput
1st Author's Name Atsuya Nakamura
1st Author's Affiliation Waseda University(Waseda Univ.)
2nd Author's Name Yuta Kumagai
2nd Author's Affiliation Waseda University(Waseda Univ.)
3rd Author's Name Shuhei Saito
3rd Author's Affiliation Waseda University(Waseda Univ.)
4th Author's Name Hirofumi Suganuma
4th Author's Affiliation Waseda University(Waseda Univ.)
5th Author's Name Keita Kuriyama
5th Author's Affiliation Nippon Telegraph and Telephone Corporation(NTT)
6th Author's Name Yu Ono
6th Author's Affiliation Nippon Telegraph and Telephone Corporation(NTT)
7th Author's Name Hayato Fukuzono
7th Author's Affiliation Nippon Telegraph and Telephone Corporation(NTT)
8th Author's Name Masafumi Yoshioka
8th Author's Affiliation Nippon Telegraph and Telephone Corporation(NTT)
9th Author's Name Fumiaki Maehara
9th Author's Affiliation Waseda University(Waseda Univ.)
Date 2022-01-20
Paper # IT2021-33,SIP2021-41,RCS2021-201
Volume (vol) vol.121
Number (no) IT-327,SIP-328,RCS-329
Page pp.pp.30-33(IT), pp.30-33(SIP), pp.30-33(RCS),
#Pages 4
Date of Issue 2022-01-13 (IT, SIP, RCS)