default search action
Kenichi Takizawa
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j26]Cheikh Saliou Mbacke Babou, Yasunori Owada, Masugi Inoue, Kenichi Takizawa, Toshiaki Kuri:
Distributed Edge Cloud Proposal Based on VNF/SDN Environment. IEEE Access 12: 124619-124635 (2024) - [c76]Khanh Nam Nguyen, Kenichi Takizawa:
Deep Learning-Based Proactive Physical Layer Handover using Cameras for Indoor Environment. CCNC 2024: 364-367 - [c75]Nann Win Moe Thet, Kenichi Takizawa:
Low Latency Self-Interference Suppression in In-Band Full-Duplex Relay. CCNC 2024: 843-846 - [c74]Rikuto Tanaka, Daiki Nobayashi, Kazuya Tsukamoto, Takeshi Ikenaga, Goshi Sato, Kenichi Takizawa:
Dynamic Transmission Parameter Settings Based on Data Transmission and Reception Performance for 920MHz LoRa Communication. CCNC 2024: 1102-1103 - [c73]Cheikh Saliou Mbacke Babou, Yasunori Owada, Masugi Inoue, Kenichi Takizawa, Toshiaki Kuri:
AI-Driven Automation for Optimal Edge Cluster Network Management. INFOCOM (Workshops) 2024: 1-6 - [c72]Eisho Aramaki, Daiki Nobayashi, Kazuya Tsukamoto, Takeshi Ikenaga, Goshi Sato, Kenichi Takizawa:
Experimental Evaluation for TCP/IP Communication Performance in Multi-Hop Private LoRa Network. LANMAN 2024: 7-8 - [c71]Rikuto Tanaka, Daiki Nobayashi, Kazuya Tsukamoto, Takeshi Ikenaga, Goshi Sato, Kenichi Takizawa:
Performance Evaluation of Dynamic Transmission Parameter Control Method for Mobile Terminal with 920 MHz LoRa Communication. PACRIM 2024: 1-6 - 2023
- [j25]Ryouichi Nishimura, Byeongpyo Jeong, Hajime Susukita, Takashi Takahashi, Kenichi Takizawa:
A Cause of Momentary Level Shifts Appearing in Broadcast Satellite Signals. IEICE Trans. Commun. 106(8): 714-722 (2023) - [c70]Cheikh Saliou Mbacke Babou, Yasunori Owada, Masugi Inoue, Kenichi Takizawa, Toshiaki Kuri:
Distributed Self-Orchestration System based on Home 5G Concept. CloudNet 2023: 495-500 - [c69]Jumpei Sakamoto, Daiki Nobayashi, Kazuya Tsukamoto, Takeshi Ikenaga, Goshi Sato, Kenichi Takizawa:
Improvement of TCP Performance based on Characteristics of Private LoRa Interface. COMPSAC 2023: 998-999 - [c68]Khanh Nam Nguyen, Kenichi Takizawa:
Prediction-based Physical Layer Base Station Switching using Imaging Data. EuCNC/6G Summit 2023: 72-77 - [c67]Ryouichi Nishimura, Kenichi Takizawa:
Simultaneous Estimation of Direction of Arrival and Sound Speed Using a Non-Uniform Sensor Array. ICASSP 2023: 1-5 - [c66]Kouki Yonaga, Kenichi Takizawa:
Quantum Annealing-Aided Multi-User Detection: An Application to Uplink Non-Orthogonal Multiple Access. ICC 2023: 1357-1363 - 2022
- [j24]Haruaki Tanaka, Yusuke Yamasaki, Satoshi Yasuda, Nobuyasu Shiga, Kenichi Takizawa, Nicolas Chauvet, Ryoichi Horisaki, Makoto Naruse:
Experimental Demonstration of Delay-Bounded Wireless Network Based on Precise Time Synchronization. IEEE Access 10: 94285-94297 (2022) - [j23]Masafumi Moriyama, Kenichi Takizawa, Hayato Tezuka, Fumihide Kojima:
Use of Cyclic-Delay Diversity (CDD) with Modified Channel Estimation for FER Improvement in OFDM Downlink. IEICE Trans. Commun. 105-B(3): 326-337 (2022) - [c65]Nobuyasu Shiga, Satoshi Yasuda, Kouki Yonaga, Kenichi Takizawa, Maki Yoshida:
Virtual Wiretap Channel Based on Wireless Two-way Interferometry. GLOBECOM 2022: 6188-6193 - [c64]Cheikh Saliou Mbacke Babou, Yasunori Owada, Masugi Inoue, Kenichi Takizawa, Toshiaki Kuri:
HEC-NerveNet: A Resilient Edge Cloud Architecture for Beyond 5G Networks. ICC Workshops 2022: 295-300 - [c63]Khanh Nam Nguyen, Kenichi Takizawa:
Millimeter-Wave Received Power Prediction from Time-Series Images Using Deep Learning. ICC 2022: 5335-5340 - [c62]Jumpei Sakamoto, Daiki Nobayashi, Kazuya Tsukamoto, Takeshi Ikenaga, Goshi Sato, Kenichi Takizawa:
Poster: Implementation and Performance Evaluation of TCP/IP Communication over Private LoRa. ICNP 2022: 1-2 - [i4]Haruaki Tanaka, Yusuke Yamasaki, Satoshi Yasuda, Nobuyasu Shiga, Kenichi Takizawa, Nicolas Chauvet, Ryoichi Horisaki, Makoto Naruse:
Experimental Demonstration of Delay-Bounded Wireless Network Based on Precise Time Synchronization. CoRR abs/2207.00158 (2022) - 2021
- [j22]Yusuke Yamasaki, Nicolas Chauvet, Nobuyasu Shiga, Satoshi Yasuda, Kenichi Takizawa, Ryoichi Horisaki, Makoto Naruse:
Delay-Bounded Wireless Network Based on Precise Time Synchronization Using Wireless Two-Way Interferometry. IEEE Access 9: 85084-85100 (2021) - [c61]Kenichi Takizawa, Ryotaro Suga, Takashi Matsuda, Fumihide Kojima:
Underwater MIMO Communications by RF Signals: Capacity Analysis, Simulations, and Experiment. EuCNC/6G Summit 2021: 460-465 - [c60]Kenichi Takizawa, Ryotaro Suga, Huan-Bang Li, Fumihide Kojima, Kotaro Ikeda, Kentaro Kobayashi, Yuya Kaneko, Tadahide Kunitachi:
Interference Mitigation Against FMCW Signals Applicable Into IEEE 802.11ad for Intra-Vehicle Communications. PIMRC 2021: 765-770 - [c59]Huan-Bang Li, Lin Shan, Kenichi Takizawa, Fumihide Kojima, Yasushi Fuwa, Takeshi Matsumura:
A Lifelog Gathering System Based on Autonomous Device-to-Device Communications. PIMRC 2021: 1512-1517 - [c58]Kotaro Ikeda, Kentarou Kobayash, Yuya Kaneko, Tadahide Kunitachi, Kenichi Takizawa, Ryotaro Suga, Huan-Bang Li, Fumihide Kojima:
Transmission Experiment of IEEE 802.11ad under FMCW Radar Interference Environment in Vehicle. VTC Fall 2021: 1-4 - [c57]Atsushi Kurosawa, Masafumi Moriyama, Kenichi Takizawa, Fumihide Kojima:
Experimental Evaluation of UL-NOMA system with FD-STBC. VTC Spring 2021: 1-5 - [c56]Kenichi Takizawa, Ryotaro Suga, Takashi Matsuda, Fumihide Kojima:
Experiment on MIMO Communications in Seawater by RF Signals. VTC Spring 2021: 1-5 - [c55]Kenichi Takizawa, Shin-ichi Yamamoto, Yukihiro Terada, Teruyuki Kato:
Non-Orthogonal Multiple Access (NOMA) in IoT Non-Terrestrial Network for GNSS Buoy Array in the Ocean. VTC Fall 2021: 1-2 - 2020
- [j21]Huan-Bang Li, Kenichi Takizawa, Fumihide Kojima:
Accelerating Outdoor UWB - Domestic Regulation Transition and Standardization within IEEE 802.15. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 103-A(1): 269-277 (2020) - [c54]Masafumi Moriyama, Kenichi Takizawa, Hayato Tezuka, Fumihide Kojima:
A Fading Prediction method using DL-OFDM signals for Precise TPC in TDD-UL-NOMA systems. VTC Spring 2020: 1-5 - [c53]Hayato Tezuka, Masafumi Moriyama, Kenichi Takizawa, Fumihide Kojima:
Link-level Performance Evaluation of an ULNOMA system with TDD constructed by hardware. VTC Spring 2020: 1-5
2010 – 2019
- 2019
- [j20]Masafumi Moriyama, Kenichi Takizawa, Masayuki Oodo, Hayato Tezuka, Fumihide Kojima:
Experimental Evaluation of a Novel Up-Link NOMA System for IoT Communication Equipping Repetition Transmission and Receive Diversity. IEICE Trans. Commun. 102-B(8): 1467-1476 (2019) - [c52]Masafumi Moriyama, Kenichi Takizawa, Hayato Tezuka, Fumihide Kojima:
Transmit Power Control using Fading Prediction for TDD-UL-NOMA Systems. APWCS 2019: 1-5 - [c51]Hayato Tezuka, Masafumi Moriyama, Kenichi Takizawa, Fumihide Kojima:
A UL-NOMA system providing low E2E latency. APWCS 2019: 1-5 - [c50]Huan-Bang Li, Kenichi Takizawa, Toshinori Kagawa, Fumihide Kojima, Ryu Miura:
Improvement on Localization Accuracy of IR-UWB By Adapting Time Bias Inner Transceiver. ICNC 2019: 116-120 - [c49]Masafumi Moriyama, Kenichi Takizawa, Masayuki Oodo, Hayato Tezuka, Fumihide Kojima:
Experimental Evaluation of UL-NOMA System Employing Correlated Receive Diversity. ICNC 2019: 894-899 - 2018
- [j19]Kensuke Nakanishi, Teruhito Naka, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Route referencing and ordering for synchronization-free delay tomography in wireless networks. EURASIP J. Wirel. Commun. Netw. 2018: 211 (2018) - [c48]Shinsuke Hara, Takuma Hamagami, Yasutaka Kawamoto, Hiroyuki Yomo, Ryusuke Miyamoto, Takunori Shimazaki, Hiroyuki Okuhata, Fumie Ono, Kenichi Takizawa:
AccuWiSe: Accurate Wireless Vital Sensing System for a Group of Exercisers - Hardware Configuration. CHASE 2018: 9-10 - [c47]Takuma Hamagami, Yasutaka Kawamoto, Shinsuke Hara, Hiroyuki Yomo, Ryusuke Miyamoto, Takunori Shimazaki, Hiroyuki Okuhata, Fumie Ono, Kenichi Takizawa:
AccuWiSe: Accurate Wireless Vital Sensing System for a Group of Exercisers - System Performance. CHASE 2018: 11-12 - [c46]Huan-Bang Li, Kenichi Takizawa, Masafumi Moriyama, Lin Shan, Ou Zhao, Fumihide Kojima:
Synchronization Improvement on IEEE 802.15.8 for Distributed D2D Wireless Networks. VTC Fall 2018: 1-5 - [c45]Kenichi Takizawa, Huan-Bang Li, Fumihide Kojima, Kotaro Ikeda, Tsuneto Kimura, Tadahide Kunitachi:
Transmission Experiment of Ultra-wideband Signals in Vehicles. WPMC 2018: 79-84 - [c44]Masafumi Moriyama, Kenichi Takizawa, Masayuki Oodo, Hayato Tezuka, Fumihide Kojima:
An Improvement of Channel Estimation for Up-link NOMA Systems. WPMC 2018: 112-117 - [c43]Hayato Tezuka, Masafumi Moriyama, Kenichi Takizawa, Masayuki Oodo, Fumihide Kojima:
Evaluation of a novel UL-NOMA system in fading environments. WPMC 2018: 262-267 - 2017
- [j18]Takahiro Matsuda, Kengo Yokota, Kazushi Takemoto, Shinsuke Hara, Fumie Ono, Kenichi Takizawa, Ryu Miura:
Multi-Dimensional Wireless Tomography Using Tensor-Based Compressed Sensing. Wirel. Pers. Commun. 96(3): 3361-3384 (2017) - [c42]Toshinori Kagawa, Fumie Ono, Lin Shan, Kenichi Takizawa, Ryu Miura, Huan-Bang Li, Fumihide Kojima, Shin Kato:
A study on latency-guaranteed multi-hop wireless communication system for control of robots and drones. WPMC 2017: 417-421 - [c41]Chang Woo Pyo, Kenichi Takizawa, Masafumi Moriyama, Masayuki Oodo, Hayato Tezuka, Kentaro Ishizu, Fumihide Kojima:
A throughput study of grant-free multiple access for massive wireless communications. WPMC 2017: 529-534 - [c40]Hayato Tezuka, Masafumi Moriyama, Kenichi Takizawa, Masayuki Oodo, Changwoo Pyo, Homare Murakami, Kentaro Ishizu, Fumihide Kojima:
Hardware demonstration on an efficient radio access for massive machine-type communication (mMTC). WPMC 2017: 611-617 - 2016
- [j17]Hiroshi Ando, Kenichi Takizawa, Takeshi Yoshida, Kojiro Matsushita, Masayuki Hirata, Takafumi Suzuki:
Wireless Multichannel Neural Recording With a 128-Mbps UWB Transmitter for an Implantable Brain-Machine Interfaces. IEEE Trans. Biomed. Circuits Syst. 10(6): 1068-1078 (2016) - [c39]Kengo Yokota, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Experimental evaluation on a joint attenuation map estimation/indoor localization by means of compressed sensing-based wireless tomography. ICT-DM 2016: 1-6 - [c38]Kengo Yokota, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Experimental evaluation on a joint attenuation map estimation/indoor localization by means of compressed sensing-based wireless tomography. ICT-DM 2016: 1-6 - 2015
- [c37]Kensuke Nakanishi, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Reflective Network Tomography Based on Compressed Sensing. ANT/SEIT 2015: 186-193 - [c36]Hiroshi Ando, Kenichi Takizawa, Takeshi Yoshida, Kojiro Matsushita, Masayuki Hirata, Takafumi Suzuki:
Multichannel neural recording with a 128 Mbps UWB wireless transmitter for implantable brain-machine interfaces. EMBC 2015: 4097-4100 - [c35]Masaki Mukamoto, Takahiro Matsuda, Shinsuke Hara, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Adaptive boolean network tomography for link failure detection. IM 2015: 646-651 - [c34]Katsuyuki Haneda, Jan Jarvelainen, Afroza Khatun, Kenichi Takizawa:
Spatial Coexistence of Millimeter-Wave Distributed Indoor Channels. VTC Spring 2015: 1-5 - [i3]Kensuke Nakanishi, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Reflective Network Tomography Based on Compressed Sensing. CoRR abs/1501.04692 (2015) - 2014
- [j16]Kensuke Nakanishi, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Synchronization-Free Delay Tomography Based on Compressed Sensing. IEEE Commun. Lett. 18(8): 1343-1346 (2014) - [c33]Takafumi Suzuki, Hiroshi Ando, Takeshi Yoshida, Hirohito Sawahata, Keisuke Kawasaki, Isao Hasegawa, Kojiro Matsushita, Masayuki Hirata, Toshiki Yoshimine, Kenichi Takizawa:
Super multi-channel recording systems with UWB wireless transmitter for BMI. EMBC 2014: 5208-5211 - [c32]Kamya Yekeh Yazdandoost, Kenichi Takizawa, Ryu Miura:
UWB antenna and propagation for wireless endoscopy. PIMRC 2014: 2155-2159 - [c31]Kenichi Takizawa, Toshinori Kagawa, Shan Lin, Fumie Ono, Hiroyuki Tsuji, Ryu Miura:
C-band aircraft-to-ground (A2G) radio channel measurement for unmanned aircraft systems. WPMC 2014: 754-758 - [i2]Kensuke Nakanishi, Shinsuke Hara, Takahiro Matsuda, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Synchronization-Free Delay Tomography Based on Compressed Sensing. CoRR abs/1402.5196 (2014) - [i1]Kazushi Takemoto, Takahiro Matsuda, Shinsuke Hara, Kenichi Takizawa, Fumie Ono, Ryu Miura:
Multi-Dimensional Wireless Tomography with Tensor-Based Compressed Sensing. CoRR abs/1407.2394 (2014) - 2013
- [j15]Raúl Chávez-Santiago, Kamran Sayrafian-Pour, Ali Khaleghi, Kenichi Takizawa, Jianqing Wang, Ilangko Balasingham, Huan-Bang Li:
Propagation models for IEEE 802.15.6 standardization of implant communication in body area networks. IEEE Commun. Mag. 51(8) (2013) - [j14]Huan-Bang Li, Kunio Yata, Kenichi Takizawa, Noriaki Miyazaki, Takashi Okada, Kohei Ohno, Takuji Mochizuki, Eishin Nakagawa, Takehiko Kobayashi:
Examination of Effective UWB Avoidance Based on Experiments for Coexistence with Other Wireless Systems. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 96-A(1): 274-284 (2013) - [j13]Kenichi Takizawa, Hirotaka Yamane, Huan-Bang Li, Feng Lu, Kohei Ohno, Takuji Mochizuki, Takashi Okada, Kunio Yata, Hisashi Nishikawa, Takehiko Kobayashi:
Detection Capability of Downlink Signals in Mobile WiMAX and 3GPP LTE with an FFT-Based UWB Receiver. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 96-A(1): 285-292 (2013) - [j12]Mikko Kyrö, Kenichi Takizawa, Katsuyuki Haneda, Pertti Vainikainen:
Validation of Statistical Channel Models for 60 GHz Radio Systems in Hospital Environments. IEEE Trans. Biomed. Eng. 60(5): 1458-1462 (2013) - [c30]Kenichi Takizawa, Ryu Miura:
Low-Complexity Video Coding for Wireless Image Transmission in Capsule Endoscopy. BODYNETS 2013: 513-518 - [c29]Raúl Chávez-Santiago, Ilangko Balasingham, Jacob Bergsland, Wasim Zahid, Kenichi Takizawa, Ryu Miura, Huan-Bang Li:
Experimental implant communication of high data rate video using an ultra wideband radio link. EMBC 2013: 5175-5178 - [c28]Fumie Ono, Hideki Ochiai, Kenichi Takizawa, Mikio Suzuki, Ryu Miura:
Performance analysis of wireless relay network using network coding and UAS. GLOBECOM Workshops 2013: 1409-1414 - [c27]Takemasa Suzuki, Kenichi Takizawa, Tetsushi Ikegami:
A study on human body localization while walking in an indoor environment by using UWB signal with multiple antennas. ISMICT 2013: 131-134 - [c26]Kotaro Yamasue, Yuya Obinata, Kenichi Takizawa, Chika Sugimoto, Ryuji Kohno:
Measures against shadowing problem on a bed using high-band UWB-BAN. ISMICT 2013: 198-202 - [c25]Kenichi Takizawa, Mikio Suzuki, Hiroyuki Tsuji, Ryu Miura:
Performance evaluation on path diversity in radio links between unmanned aerial vehicles. PIMRC 2013: 111-116 - [c24]Fumie Ono, Hideki Ochiai, Kenichi Takizawa, Mikio Suzuki, Ryu Miura:
Two-Way Relay Networks Using Unmanned Aircraft Systems. VTC Spring 2013: 1-5 - [c23]Ryu Miura, Masugi Inoue, Yasunori Owada, Kenichi Takizawa, Fumie Ono, Mikio Suzuki, Hiroyuki Tsuji, Kiyoshi Hamaguchi:
Disaster-resilient wireless mesh network - Experimental test-bed and demonstration. WPMC 2013: 1-4 - [c22]Fumie Ono, Kenichi Takizawa, Hiroyuki Tsuji, Mikio Suzuki, Ryu Miura:
Preliminary measurements for wireless relay network using UAS. WPMC 2013: 1-4 - [c21]Kenichi Takizawa, Fumie Ono, Hiroyuki Tsuji, Ryu Miura:
Air-to-air radio channel measurement at 2.3 GHz for unmanned aircraft services. WPMC 2013: 1-5 - 2012
- [j11]Kenichi Takizawa, Takahiro Aoyagi, Kiyoshi Hamaguchi, Ryuji Kohno:
Channel modelling and performance evaluation of UWB-based wireless body area networks. Int. J. Ultra Wideband Commun. Syst. 2(3): 125-132 (2012) - [c20]Yuichiro Takei, Hiroki Katsuta, Kenichi Takizawa, Tetsushi Ikegami, Kiyoshi Hamaguchi:
Prototype ultra wideband-based wireless body area network-consideration of CAP and CFP slot allocation during human walking motion-. EMBC 2012: 2484-2488 - [c19]Kenichi Takizawa, Mikko Kyrö, Katsuyuki Haneda, Hiroaki Hagiwara, Pertti Vainikainen:
Performance evaluation of 60 GHz radio systems in hospital environments. ICC 2012: 3219-3295 - [c18]Yusuke Hamada, Kenichi Takizawa, Tetsushi Ikegami:
Highly reliable wireless body area network using error correcting codes. RWS 2012: 231-234 - [c17]Tomoya Akiyama, Tetsushi Ikegami, Kenichi Takizawa:
A non-invasive detection of respiration by using ultra wideband signals. WPMC 2012: 514-518 - 2011
- [j10]Kenichi Takizawa, Takahiro Aoyagi, Kiyoshi Hamaguchi:
Performance Evaluation of Wireless Communications for Capsule Endoscopy. IEICE Trans. Commun. 94-B(9): 2488-2491 (2011) - [j9]Marzieh Dashti, Mir Ghoraishi, Katsuyuki Haneda, Jun-ichi Takada, Kenichi Takizawa:
Optimum Threshold for Indoor UWB ToA-Based Ranging. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 94-A(10): 2002-2012 (2011) - [j8]Mikko Kyrö, Katsuyuki Haneda, Jarno Simola, Kenji Nakai, Kenichi Takizawa, Hiroaki Hagiwara, Pertti Vainikainen:
Measurement Based Path Loss and Delay Spread Modeling in Hospital Environments at 60 GHz. IEEE Trans. Wirel. Commun. 10(8): 2423-2427 (2011) - [c16]Kenichi Takizawa, Hiroaki Hagiwara, Kiyoshi Hamaguchi:
Path-loss estimation of wireless channels in capsule endoscopy from X-ray CT images. EMBC 2011: 2242-2245 - [c15]Shinsuke Hara, Daisuke Anzai, Kentaro Yanagihara, Kenichi Takizawa, Kiyoshi Hamaguchi:
A cooperative transmission scheme for real-time data gathering in a Wireless Body Area Network. PIMRC 2011: 2254-2258 - 2010
- [j7]Katsuhiro Watanabe, Kenichi Takizawa, Tetsushi Ikegami:
Novel Joint Source-Channel Coding of Periodic ECG Signals for Reliable Wireless Patient Monitoring. IEICE Trans. Commun. 93-B(4): 819-825 (2010) - [j6]Takahiro Aoyagi, Kenichi Takizawa, Takehiko Kobayashi, Jun-ichi Takada, Kiyoshi Hamaguchi, Ryuji Kohno:
Development of an Implantable WBAN Path-Loss Model for Capsule Endoscopy. IEICE Trans. Commun. 93-B(4): 846-849 (2010) - [c14]Huan-Bang Li, Kunio Yata, Kenichi Takizawa, Noriaki Miyazaki, Takashi Okada, Kohei Ohno, Takuji Mochizuki, Eishin Nakagawa, Takehiko Kobayashi:
Experimental evaluation of avoid performance with various victim systems to enable DAA for UWB. ISWCS 2010: 21-25 - [c13]Shinsuke Hara, Tomofumi Yabu, Kenichi Takizawa:
Introduction of MAP estimation to UWB-IR TOA localization. ISWCS 2010: 31-35 - [c12]Kenichi Takizawa, Hirotaka Yamane, Huan-Bang Li, Feng Lu, Kohei Ohno, Takuji Mochizuki, Takashi Okada, Kunio Yata, Hisashi Nishikawa, Takehiko Kobayashi:
Evaluation on detection capability of down-link signals of mobile WiMAX and 3GPP LTE for detect-and-avoid in UWB systems. ISWCS 2010: 41-45 - [c11]Kenichi Takizawa, Yasuhisa Yamamoto, Keren Li:
Evaluation of interference avoidance method using a tunable notch filter for impulse radio UWB (IR-UWB) systems. ISWCS 2010: 805-809 - [c10]Hiroaki Hagiwara, Kenichi Takizawa, Kiyoshi Hamaguchi:
Simple estimation method of radio propagation by using CT images for implantable wireless body area networks. ISWCS 2010: 887-891 - [c9]Mikko Kyrö, Jarno Simola, Katsuyuki Haneda, Sylvain Ranvier, Pertti Vainikainen, Kenichi Takizawa:
60 GHz Radio Channel Measurements and Modeling in a Shielded Room. VTC Spring 2010: 1-5
2000 – 2009
- 2009
- [j5]Norihiko Katayama, Kenichi Takizawa, Takahiro Aoyagi, Jun-ichi Takada, Huan-Bang Li, Ryuji Kohno:
Channel Model on Various Frequency Bands for Wearable Body Area Network. IEICE Trans. Commun. 92-B(2): 418-424 (2009) - [c8]Kenichi Takizawa, Takahiro Aoyagi, Ryuji Kohno:
Channel Modeling and Performance Evaluation on UWB-Based Wireless Body Area Networks. ICC 2009: 1-5 - [c7]Bin Zhen, Kenichi Takizawa, Takahiro Aoyagi, Ryuji Kohno:
A Body Surface Coordinator for Implanted Biosensor Networks. ICC 2009: 1-5 - 2008
- [j4]Makoto Hasegawa, Tetsushi Ikegami, Kenichi Takizawa:
A Study on Possibility of Detecting IEEE802.15.4a Signals for Spectrum Sharing. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 91-A(11): 3201-3205 (2008) - [c6]Go Shingu, Kenichi Takizawa, Tetsushi Ikegami:
Human Body Detection Using MIMO-UWB Radar Sensor Network in an Indoor Environment. PDCAT 2008: 437-442 - 2007
- [j3]Morio Toyoshima, Kenichi Takizawa, Toshiaki Kuri, Werner Klaus, Masahiro Toyoda, Kenji Suzuki, Takashi Takahashi, Shinichi Kimura, Hiroo Kunimori, Takashi Jono:
An overview of the KODEN experiment between the OICETS satellite and the optical ground station in NICT. Elektrotech. Informationstechnik 124(6): 193-199 (2007) - [c5]Kenichi Takizawa, Yasuhisa Yamamoto, Keren Li, Huan-Bang Li, Ryuji Kohno:
A Detect-and-Avoid Method for Single-Carrier UWB Systems. ISWCS 2007: 691-695 - 2006
- [j2]Kenichi Takizawa, Huan-Bang Li, Iwao Nishiyama, Jun-ichi Takada, Ryuji Kohno:
Overview of Research, Development, Standardization, and Regulation Activities in NICT UWB Project. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 89-A(11): 2996-3005 (2006) - [c4]Kenichi Takizawa, Huan-Bang Li, Ryuji Kohno:
Precise Leading Edge Detection using a Forward Error Correction Coding. ISWCS 2006: 734-738 - [c3]Kenichi Takizawa, Suguru Fujita, Yuko Rikuta, Kiyoshi Hamaguchi, Ryuji Kohno:
Measurement-Based Performance Evaluation of a 26GHz Band UWB Communication System. VTC Fall 2006: 1-5 - 2005
- [j1]Kenichi Takizawa, Ryuji Kohno:
Low-Complexity Viterbi Equalizer for MBOK DS-UWB Systems. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 88-A(9): 2350-2355 (2005) - [c2]Kenichi Takizawa, Ryuji Kohno:
Analysis of iterative demapping and decoding for MBOK DS-UWB systems via EXIT chart. ICC 2005: 949-953 - 2004
- [c1]Kenichi Takizawa, Ryuji Kohno:
Low-complexity rake reception and equalization for MBOK DS-UWB systems. GLOBECOM 2004: 1249-1253
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-12 23:00 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint