Presentation 2020-01-14
Field Experiment of IEEE 802.15.4 Based High-Speed FSK Transmission Scheme
Yueying Xiang, Ryota Okumura, Keiichi Mizutani, Hiroshi Harada,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Frequency shift keying (FSK) is a widely-used transmission scheme defined in IEEE 802.15.4 for Internet of things (IoT) due to the merits of simple implementation and low power consumption. To expand IoT systems, higher data rate is expected for massive IoT or new IoT application scenarios. In this report, we propose high-speed FSK transmission scheme that enhances data rate to 600 kbps. A prototype of integrated circuit (IC) is developed to validate the feasibility of the proposed scheme. Field experiment is carried out to show its practical feasibility for IoT systems in urban environment. Experimental results show that the high-speed FSK transmission scheme achieves communication at 600 kbps for 250 m on line-of-sight (LoS) routes.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) FSK / High-speed / IEEE 802.15.4 / ARIB STD-T108 / Field Experiment / sub-GHz
Paper # SRW2019-52
Date of Issue 2020-01-07 (SRW)

Conference Information
Committee SRW
Conference Date 2020/1/14(1days)
Place (in Japanese) (See Japanese page)
Place (in English) TBD
Topics (in Japanese) (See Japanese page)
Topics (in English) WLAN, WPAN, Sensor Networks, mmWave, etc.
Chair Satoshi Denno(Okayama Univ.)
Vice Chair Keiichi Mizutani(Kyoto Univ.)
Secretary Keiichi Mizutani(Tokyo Inst. of Tech.)
Assistant Masaaki Fuse(Anritsu) / Tomoki Murakami(NTT)

Paper Information
Registration To Technical Committee on Short Range Wireless Communications
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Field Experiment of IEEE 802.15.4 Based High-Speed FSK Transmission Scheme
Sub Title (in English)
Keyword(1) FSK
Keyword(2) High-speed
Keyword(3) IEEE 802.15.4
Keyword(4) ARIB STD-T108
Keyword(5) Field Experiment
Keyword(6) sub-GHz
1st Author's Name Yueying Xiang
1st Author's Affiliation Kyoto University(Kyoto Univ.)
2nd Author's Name Ryota Okumura
2nd Author's Affiliation Kyoto University(Kyoto Univ.)
3rd Author's Name Keiichi Mizutani
3rd Author's Affiliation Kyoto University(Kyoto Univ.)
4th Author's Name Hiroshi Harada
4th Author's Affiliation Kyoto University(Kyoto Univ.)
Date 2020-01-14
Paper # SRW2019-52
Volume (vol) vol.119
Number (no) SRW-363
Page pp.pp.7-12(SRW),
#Pages 6
Date of Issue 2020-01-07 (SRW)