default search action
Pei-Yun Tsai
Person information
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j28]Mei-Hsuan Chang, Pei-Yun Tsai:
Implementation of Group-Approximate Expectation Propagation Algorithm for Uplink MIMO-SCMA Detection Using 16-Point Codebook. IEEE Trans. Circuits Syst. I Regul. Pap. 71(10): 4753-4766 (2024) - [j27]Jia-Zhao Lin, Po-Ta Chen, Hung-Yuan Chin, Pei-Yun Tsai, Sz-Yuan Lee:
Design and Implementation of a Real-Time Imaging Processor for Spaceborne Synthetic Aperture Radar With Configurability. IEEE Trans. Very Large Scale Integr. Syst. 32(4): 669-681 (2024) - [c49]Jia-Yu Yang, Chih-I Ho, Pei-Yun Tsai, Hung-Ju Lin, Tzung-Dau Wang:
MAML-Based 24-Hour Personalized Blood Pressure Estimation from Wrist Photoplethysmography Signals in Free-Living Context. ICASSP 2024: 196-200 - 2023
- [j26]Henry Lopez Davila, Tsung-Han Wu, Shyh-Jye Jou, Sau-Gee Chen, Pei-Yun Tsai:
Low Routing Complexity Multiframe Pipelined LDPC Decoder Based on a Novel Pseudo Marginalized Min-Sum Algorithm for High Throughput Applications. IEEE Trans. Very Large Scale Integr. Syst. 31(1): 29-42 (2023) - [c48]Ting-Jui Wong, Pei-Yun Tsai:
Real-Time Processing for Weighted Pulse Decomposition of Photoplethysmography Signals Based on Interior Point Method in Wearable Devices for Hemodynamic State. APSIPA ASC 2023: 217-221 - [c47]Pei-Yun Tsai, Hung-Shu Yu, Szy-Yuan Lee:
Modified Frequency-Domain Block Adaptive Quantizer for Synthetic Aperture Radar with Down-Sampling Requirement. IGARSS 2023: 4399-4402 - 2022
- [j25]Zhe-Yu Wang, Pei-Yun Tsai:
Design and Implementation of a 6.5-Gb/s Multiradix Simplified Viterbi-Sphere Decoder for Trellis-Coded Generalized Spatial Modulation With Spatial Multiplexing. IEEE Trans. Very Large Scale Integr. Syst. 30(12): 1853-1866 (2022) - [c46]Yu-Chuan Li, Jia-Wei Guo, Jia-Yu Yang, Pei-Yun Tsai, Hung-Ju Lin, Tzung-Dau Wang:
Cuffless Blood Pressure Estimation from Finger PPG and ECG Signals Verified by the AAMI Protocol. BioCAS 2022: 689-693 - [c45]Cheng-Hung Lo, Pei-Yun Tsai:
Tensor-Based Orthogonal Matching Pursuit with Phase Rotation for Channel Estimation In Hybrid Beamforming Mimo-Ofdm Systems. ICASSP 2022: 101-105 - [c44]Chung-Lun Tu, Tse-Yuan Lin, Kang-Lun Chiu, Shyh-Jye Jou, Pei-Yun Tsai:
Compressive Sensing Based Hardware Design for Channel Estimation of Wideband Millimeter Wave Hybrid MIMO System. ISCAS 2022: 2496-2500 - 2021
- [j24]Pei-Yun Tsai, Chiu-Hua Huang, Jia-Wei Guo, Yu-Chuan Li, An-Yeu Andy Wu, Hung-Ju Lin, Tzung-Dau Wang:
Coherence between Decomposed Components of Wrist and Finger PPG Signals by Imputing Missing Features and Resolving Ambiguous Features. Sensors 21(13): 4315 (2021) - [j23]Yu-Ching Ting, Fang-Wen Lo, Pei-Yun Tsai:
Implementation for Fetal ECG Detection from Multi-channel Abdominal Recordings with 2D Convolutional Neural Network. J. Signal Process. Syst. 93(9): 1101-1113 (2021) - [c43]Chi-Shiang Wang, Pei-Yun Tsai:
Reduced-Complexity Channel Estimation by Hierarchical Interpolation Exploiting Sparsity for Massive MIMO Systems with Uniform Rectangular Array. ICASSP 2021: 7938-7942 - [c42]Hsin-Wen Ku, Wei-Hao Fang, Huan-Lun Tso, Pei-Yun Tsai, Yuan-Hao Huang:
Low-Complexity Wideband Hybrid Precoding for mmWave MIMO-OFDM. ISCAS 2021: 1-5 - [c41]Hung-Yuan Chin, Pei-Yun Tsai, Szy-Yuan Lee:
Implementation of a Two-Dimensional FFT/IFFT Processor for Real-Time High-Resolution Synthetic Aperture Radar Imaging. SiPS 2021: 211-216 - 2020
- [j22]Pei-Yun Tsai, Tien-I Yang, Ching-Horng Lee, Li-Mei Chen, Sz-Yuan Lee:
Tunable Block Floating-Point Quantizer With Fractional Exponent for Compressing Non-Uniformly Distributed Signals. IEEE Trans. Circuits Syst. I Fundam. Theory Appl. 67-I(4): 1245-1254 (2020) - [j21]Henry Lopez Davila, Hsun-Wei Chan, Kang-Lun Chiu, Pei-Yun Tsai, Shyh-Jye Jou:
A 75-Gb/s/mm2 and Energy-Efficient LDPC Decoder Based on a Reduced Complexity Second Minimum Approximation Min-Sum Algorithm. IEEE Trans. Very Large Scale Integr. Syst. 28(4): 926-939 (2020) - [c40]Yu-Chieh Lee, Pei-Yun Tsai, Sz-Yuan Lee:
Doppler Centroid Estimation with Quality Assessment for Real-Time SAR Imaging. APSIPA 2020: 36-40 - [c39]Juyn-Da Su, Pei-Yun Tsai:
Processing Element Architecture Design for Deep Reinforcement Learning with Flexible Block Floating Point Exploiting Signal Statistics. APSIPA 2020: 82-87 - [c38]Hung-Chih Liu, Hsun-Wei Chan, Henry Lopez Davila, Kang-Lun Chiu, Chih-Wei Jen, Ngoc-Giang Doan, Zheng-Chun Huang, Hsin-Ting Chang, Nien-Hsiang Chang, Pei-Yun Tsai, Yen-Cheng Kuan, Shyh-Jye Jou:
A 16/64 QAM Baseband SoC for mm-Wave Transceiver with Self-Healing for FD/FI IQ Mismatch, LO Leakage and CFO/SCO/PNC. A-SSCC 2020: 1-2 - [c37]Jih-Yang Lin, Pei-Yun Tsai:
Design of A Convergence-Aware Based Expectation Propagation Algorithm for Uplink Mimo Scma Systems. ICASSP 2020: 1698-1702 - [c36]Jung-Chun Chi, Yu-Cheng Yeh, I-Wei Lai, Pei-Yun Tsai, Yuan-Hao Huang:
A 538Mbps 2×64 Spatial Permutation Modulation Detector for MIMO Systems. ISCAS 2020: 1-5 - [c35]Chiu-Hua Huang, Jia-Wei Guo, Yu-Chia Yang, Pei-Yun Tsai, An-Yeu Andy Wu, Hung-Ju Lin, Tzung-Dau Wang:
Weighted Pulse Decomposition Analysis of Fingertip Photoplethysmogram Signals for Blood Pressure Assessment. ISCAS 2020: 1-5
2010 – 2019
- 2019
- [j20]Chun-Hun Wu, Pei-Yun Tsai:
An SVD Processor Based on Golub-Reinsch Algorithm for MIMO Precoding With Adjustable Precision. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(7): 2572-2583 (2019) - [j19]Pei-Yun Tsai, Meng-Yuan Huang, Yu-Liang Tsai, Ching-Horng Lee, Li-Mei Chen, Sz-Yuan Lee:
Design of a Multi-mode Block Adaptive Quantizer for High-Resolution Synthetic Aperture Radar Imaging. J. Signal Process. Syst. 91(6): 673-683 (2019) - [c34]Kang-Lun Chiu, Hsun-Wei Chan, Wei-Che Lee, Chang-Ting Wu, Henry Lopez Davila, Hung-Chih Liu, Meng-Yuan Huang, Chun-Yi Liu, Tsai-Hua Lee, Hsin-Ting Chang, Chih-Wei Jen, Nien-Hsiang Chang, Pei-Yun Tsai, Yen-Cheng Kuan, Shyh-Jye Jou:
A Millimeter Wave Digital CMOS Baseband Transceiver for Wireless LAN Applications. A-SSCC 2019: 275-278 - [c33]Zhe-Yu Wang, Pei-Yun Tsai, Yuan-Hao Huang, I-Wei Lai:
A Double K-best Viterbi-sphere Decoder for Trellis-coded Generalized Spatial Modulation with Multiple Code Rates. ICASSP 2019: 1547-1551 - [c32]Pei-Yun Tsai, Tien-I Yang, Ching-Horng Lee, Li-Mei Chen, Sz-Yuan Lee:
Design of a Tunable Block Floating-Point Quantizer with Fractional Exponent. ISCAS 2019: 1-5 - [c31]Kai-Huan Shen, Pei-Yun Tsai:
Memory Reduction through Experience Classification f or Deep Reinforcement Learning with Prioritized Experience Replay. SiPS 2019: 166-171 - [c30]Su-An Chou, Amalia Eka Rakhmania, Pei-Yun Tsai:
A Unified and Flexible Eigen-Solver for Rank-Deficient Matrix in MIMO Precoding/Beamforming Applications. SiPS 2019: 218-223 - 2018
- [c29]Fang-Wen La, Pei-Yun Tsai:
Deep Learning for Detection of Fetal ECG from Multi-Channel Abdominal Leads. APSIPA 2018: 1397-1401 - [c28]Pei-Yun Tsai, Yi Chang, Jian-Lin Li:
Fast-Convergence Singular Value Decomposition for Tracking Time-Varying Channels in Massive Mimo Systems. ICASSP 2018: 1085-1089 - [c27]Jhih-Wei Shih, Jung-Chun Chi, Yuan-Hao Huang, Pei-Yun Tsai, I-Wei Lai:
Theoretical Performance Analysis Assisted by Machine Learning for Spatial Permutation Modulation (SPM) in Slow-Fading Channels. ICC 2018: 1-6 - [c26]Pei-Yun Tsai, Xiao-Sheng Huang:
Design of Iterative Hybrid Beamforming for Multi-User mmWave Massive MIMO Systems. SiPS 2018: 123-128 - 2017
- [c25]Syu-Siang Long, Pei-Yun Tsai, Yuan-Hao Huang, I-Wei Lai:
Trellis coded generalized spatial modulation with spatial multiplexing. APSIPA 2017: 832-837 - [c24]Yu-Chi Wu, Pei-Yun Tsai:
A generalized matrix-decomposition processor for joint MIMO transceiver design. ICASSP 2017: 1153-1157 - [c23]Chun-Hun Wu, Chin-Yi Liu, Pei-Yun Tsai:
Design of an SVD engine for 8×8 MIMO precoding systems. ISCAS 2017: 1-4 - [c22]Yo-Hao Tu, Kai-Wen Yao, Minghao Huang, Yu-Yun Lin, Hao-Yu Chi, Po-Min Cheng, Pei-Yun Tsai, Muh-Tian Shiue, Chien-Nan Liu, Kuo-Hsing Cheng, Jia-Shiang Fu:
A body sensor node SoC for ECG/EMG applications with compressed sensing and wireless powering. VLSI-DAT 2017: 1-4 - 2016
- [j18]Yih-Chun Cheng, Tom Hartmann, Pei-Yun Tsai, Martin Middendorf:
Population based ant colony optimization for reconstructing ECG signals. Evol. Intell. 9(3): 55-66 (2016) - [j17]Tsung-Han Tsai, Pei-Yun Tsai, Meng-Yuan Huang, Li-Yang Huang:
WHDVI: A wireless high definition video interface technique for digital home. Integr. 53: 138-144 (2016) - [j16]Yih-Chun Cheng, Pei-Yun Tsai, Minghao Huang:
Matrix-Inversion-Free Compressed Sensing With Variable Orthogonal Multi-Matching Pursuit Based on Prior Information for ECG Signals. IEEE Trans. Biomed. Circuits Syst. 10(4): 864-873 (2016) - [j15]Chia-Wei Chen, Hen-Wai Tsao, Pei-Yun Tsai:
MIMO Precoder Design With a Compensated QR-Decomposition Combination for CoMP Downlink Scenarios. IEEE Trans. Veh. Technol. 65(10): 7982-7992 (2016) - [c21]Ching-Hao Yang, Pei-Yun Tsai:
Design of a low-complexity O-QPSK transceiver with spatial modulation for internet-of-things applications. APCCAS 2016: 285-288 - [c20]Yih-Chun Cheng, Tom Hartmann, Pei-Yun Tsai, Martin Middendorf:
Population Based Ant Colony Optimization for Reconstructing ECG Signals. EvoApplications (1) 2016: 770-785 - [c19]Yu-Liang Tsai, Pei-Yun Tsai, Ching-Horng Lee, Li-Mei Chen, Sz-Yuan Lee:
Design and implementation of multi-mode block adaptive quantizer for synthetic aperture radar. ISOCC 2016: 33-34 - 2015
- [j14]Kang-Yi Fan, Pei-Yun Tsai:
An RLS Tracking and Iterative Detection Engine for Mobile MIMO-OFDM Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(1): 185-194 (2015) - [j13]Pei-Yun Tsai, Po-Cheng Lo, Fong-Jay Shih, Wen-Ji Jau, Meng-Yuan Huang, Zheng-Yu Huang:
A 4×4 MIMO-OFDM Baseband Receiver With 160 MHz Bandwidth for Indoor Gigabit Wireless Communications. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(12): 2929-2939 (2015) - [c18]Yih-Chun Cheng, Pei-Yun Tsai:
Low-complexity compressed sensing with variable orthogonal multi-matching pursuit and partially known support for ECG signals. ISCAS 2015: 994-997 - [c17]Chi-Mao Chen, Chih-Hsiang Lin, Pei-Yun Tsai:
Multi-mode sorted QR decomposition for 4×4 and 8×8 single-user/multi-user MIMO precoding. ISCAS 2015: 2980-2983 - [c16]Pei-Yun Tsai, Chin-Yi Liu:
Reduced-complexity SVD with adjustable accuracy for precoding in large-scale MIMO systems. SiPS 2015: 1-6 - 2014
- [j12]Meng-Yuan Huang, Pei-Yun Tsai:
Toward Multi-Gigabit Wireless: Design of High-Throughput MIMO Detectors With Hardware-Efficient Architecture. IEEE Trans. Circuits Syst. I Regul. Pap. 61-I(2): 613-624 (2014) - [c15]Amalia Eka Rakhmania, Pei-Yun Tsai, Onny Setyawati:
Combined per-user SLNR and SINR criterions for interference alignment in uplink coordinated multi-point joint reception. APSIPA 2014: 1-5 - [c14]Ching-Heng Yeh, Pei-Yun Tsai:
The GMD-based precoding and antenna selection schemes for CoMP joint processing. PIMRC 2014: 418-422 - [c13]Min-Ching Chen, Pei-Yun Tsai:
Improvement of Explicit Channel Feedback for MIMO-OFDM WLAN and Its Implementation. VTC Spring 2014: 1-5 - [c12]Chi-Mao Chen, Pei-Yun Tsai, Chia-Wei Chen:
BD-QRD, Block THP and Constrained Sphere Decoding for Multi-User MIMO Systems. VTC Spring 2014: 1-5 - 2013
- [c11]Chia-Wei Chen, Hen-Wai Tsao, Pei-Yun Tsai:
Equal-rate QR decomposition based on MMSE technique for multi-user MIMO precoding. PIMRC 2013: 435-440 - [c10]Shun-Fang Liu, Pei-Yun Tsai:
A non-coherent neighbor cell search scheme for LTE/LTE-A systems. WCNC 2013: 3300-3305 - [c9]Ching-Hsien Wang, Pei-Yun Tsai:
Design and implementation of a distributed WLS localization and tracking algorithm in wireless sensor network. WCNC 2013: 4747-4752 - 2012
- [j11]Chia-Chun Liao, Pei-Yun Tsai, Tzi-Dar Chiueh:
Low-Complexity Cell Search Algorithm for Interleaved Concatenation ML-Sequences in 3GPP-LTE Systems. IEEE Wirel. Commun. Lett. 1(4): 280-283 (2012) - [c8]Chuan Wang, Pei-Yun Tsai:
Precoder selection under K-best MIMO detection for 3GPP-LTE/LTE-A systems. APCC 2012: 933-938 - [c7]Jen-Yu Hou, Tsao-Shuan Lee, Pei-Yun Tsai:
High-throughput turbo decoder design with new interconnection network for LTE/LTE-A system. ISOCC 2012: 335-338 - [c6]Po-Yao Tsao, Pei-Yun Tsai:
Partial cooperation in MB-OFDM UWB systems with hierarchical modulation and power allocation. ITST 2012: 226-231 - 2011
- [j10]Pei-Yun Tsai, Chia-Wei Chen, Meng-Yuan Huang:
Automatic IP Generation of FFT/IFFT Processors with Word-Length Optimization for MIMO-OFDM Systems. EURASIP J. Adv. Signal Process. 2011 (2011) - [j9]Chin-Long Wey, Shin-Yo Lin, Pei-Yun Tsai, Ming-Der Shieh:
Reconfigurable Homogenous Multi-Core FFT Processor Architectures for Hybrid SISO/MIMO OFDM Wireless Communications. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 94-A(7): 1530-1539 (2011) - [j8]Duen-Ren Liu, Pei-Yun Tsai, Po-Huan Chiu:
Personalized recommendation of popular blog articles for mobile applications. Inf. Sci. 181(9): 1552-1572 (2011) - [j7]Zheng-Yu Huang, Pei-Yun Tsai:
Efficient Implementation of QR Decomposition for Gigabit MIMO-OFDM Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 58-I(10): 2531-2542 (2011) - [j6]Pei-Yun Tsai, Chung-Yi Lin:
A Generalized Conflict-Free Memory Addressing Scheme for Continuous-Flow Parallel-Processing FFT Processors With Rescheduling. IEEE Trans. Very Large Scale Integr. Syst. 19(12): 2290-2302 (2011) - 2010
- [c5]Pei-Yun Tsai, Ze-Mu Chang, Zheng-Yu Huang, Wen-Ji Jau:
Design and evaluation of a 4×4 MIMO-OFDM transceiver for gigabit indoor wireless communications. APCCAS 2010: 955-958 - [c4]Pei-Yun Tsai, Hsiang-Wei Chang, Po-Hsien Hsieh, Jhen-Yu Hou, Kang-Yi Fan:
Baseband receiver design for 3GPP Long Term Evolution downlink OFDMA systems under fast-fading channels. APCCAS 2010: 1207-1210 - [c3]Zheng-Yu Huang, Pei-Yun Tsai:
High-throughput QR decomposition for MIMO detection in OFDM systems. ISCAS 2010: 1492-1495 - [c2]Pei-Yun Tsai, Wei-Tzuo Chen, Xing-Cheng Lin, Meng-Yuan Huang:
A 4×4 64-QAM reduced-complexity K-best MIMO detector up to 1.5Gbps. ISCAS 2010: 3953-3956
2000 – 2009
- 2009
- [j5]Po-Chun Hsieh, Jing-Siang Jhuang, Pei-Yun Tsai, Tzi-Dar Chiueh:
A Low-Power Delay Buffer Using Gated Driver Tree. IEEE Trans. Very Large Scale Integr. Syst. 17(9): 1212-1219 (2009) - [j4]Pei-Yun Tsai, Tzi-Dar Chiueh:
Adaptive raised-cosine channel interpolation for pilot-aided OFDM systems. IEEE Trans. Wirel. Commun. 8(2): 1028-1037 (2009) - [c1]Pei-Yun Tsai, Duen-Ren Liu:
Personalized Popular Blog Recommender Service for Mobile Applications. EC-Web 2009: 2-13 - 2007
- [j3]Pei-Yun Tsai, Tzi-Dar Chiueh:
A Low-Power Multicarrier-CDMA Downlink Baseband Receiver for Future Cellular Communication Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 54-I(10): 2229-2239 (2007) - 2005
- [j2]Pei-Yun Tsai, Hsin-Yu Kang, Tzi-Dar Chiueh:
Design of a Baseband Transceiver for Multicarrier CDMA Communications. EURASIP J. Adv. Signal Process. 2005(11): 1645-1655 (2005) - [j1]Pei-Yun Tsai, Hsin-Yu Kang, Tzi-Dar Chiueh:
Joint weighted least-squares estimation of carrier-frequency offset and timing offset for OFDM systems over multipath fading channels. IEEE Trans. Veh. Technol. 54(1): 211-223 (2005)
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 2024-10-23 20:27 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint