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Mohammad Saquib
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2020 – today
- 2024
- [j46]Ainul Anam Shahjamal Khan, Shaikh Anowarul Fattah, Muhammad Quamruzzaman, Mohammad Saquib:
Detection of Bruxism Using Inverse Discrete Wavelet Transformed Reconstructed Band Limited EEG Signals by Group Wise Feature Ranking. IEEE Access 12: 88086-88110 (2024) - [j45]Utsab Saha, Sawradip Saha, Shaikh Anowarul Fattah, Mohammad Saquib:
Npix2Cpix: A GAN-Based Image-to-Image Translation Network With Retrieval- Classification Integration for Watermark Retrieval From Historical Document Images. IEEE Access 12: 95857-95870 (2024) - [j44]Jishnu Mahmud, Raisa Mashtura, Shaikh Anowarul Fattah, Mohammad Saquib:
Quantum convolutional neural networks with interaction layers for classification of classical data. Quantum Mach. Intell. 6(1): 11 (2024) - [c44]Rafid Umayer Murshed, Md. Saheed Ullah, Mohammad Saquib:
A Fast Effective Greedy Approach for MU-MIMO Beam Selection in mm-Wave and THz Communications. CISS 2024: 1-6 - [c43]Rafid Umayer Murshed, Md. Saheed Ullah, Mohammad Saquib, Moe Z. Win:
Self-supervised Contrastive Learning for 6G UM-MIMO THz Communications: Improving Robustness Under Imperfect CSI. ICC Workshops 2024: 220-226 - [i8]Jiawei Liu, Kumar Vijay Mishra, Mohammad Saquib:
Co-Designing Statistical MIMO Radar and In-band Full-Duplex Multi-User MIMO Communications - Part II: Joint Precoder, Radar Code, and Receive Filters Design. CoRR abs/2403.19119 (2024) - [i7]SK Nayemuzzaman, Kumar Vijay Mishra, Jiawei Liu, Mohammad Saquib:
Co-Designing Statistical MIMO Radar and In-band Full-Duplex Multi-User MIMO Communications - Part III: Multi-Target Tracking. CoRR abs/2403.19120 (2024) - [i6]Utsab Saha, Sawradip Saha, Shaikh Anowarul Fattah, Mohammad Saquib:
Npix2Cpix: A GAN-based Image-to-Image Translation Network with Retrieval-Classification Integration for Watermark Retrieval from Historical Document Images. CoRR abs/2406.03556 (2024) - 2023
- [j43]Oishy Saha, Md. Sultan Mahmud, Shaikh Anowarul Fattah, Mohammad Saquib:
Automatic Emotion Recognition From Multi-Band EEG Data Based on a Deep Learning Scheme With Effective Channel Attention. IEEE Access 11: 2342-2350 (2023) - [j42]Tamjid Imtiaz, Shaikh Anowarul Fattah, Mohammad Saquib:
ConDANet: Contourlet Driven Attention Network for Automatic Nuclei Segmentation in Histopathology Images. IEEE Access 11: 129321-129330 (2023) - [j41]Rafid Umayer Murshed, Md. Abrar Istiak, Md. Toufiqur Rahman, Zulqarnain Bin Ashraf, Md. Saheed Ullah, Mohammad Saquib:
A CNN based multifaceted signal processing framework for heart rate proctoring using Millimeter wave radar ballistocardiography. Array 20: 100327 (2023) - [c42]SK Nayemuzzaman, Kumar Vijay Mishra, Mohammad Saquib:
Multi-Target Tracking for Full-Duplex Distributed Integrated Sensing and Communications. ACSSC 2023: 1673-1678 - [c41]Mohammad Salman, Zalina Binti Samadi, Mohammad Saquib, Zaharah Mohd Yusoff:
A Critical Review on the Various Issues and Challenges of Virtual Pedagogy in Architecture Education. RIIFORUM 2023: 387-406 - [c40]Raisa Mashtura, Jishnu Mahmud, Shaikh Anowarul Fattah, Mohammad Saquib:
A Parallel Quantum Feature Encoding Scheme for Effective Classical Data Classification in Quantum Convolutional Neural Networks. TENCON 2023: 1-5 - [c39]Md. Shohel Rana, Shaikh Anowarul Fattah, Mohammad Saquib:
STOW-Net: Spatio-Temporal Operation Based Deep Learning Network for Classifying Wavelet Transformed Motor Imagery EEG Signals. TENCON 2023: 860-863 - [i5]Md Awsafur Rahman, Bishmoy Paul, Najibul Haque Sarker, Zaber Ibn Abdul Hakim, Shaikh Anowarul Fattah, Mohammad Saquib:
Syn-Att: Synthetic Speech Attribution via Semi-Supervised Unknown Multi-Class Ensemble of CNNs. CoRR abs/2309.08146 (2023) - [i4]Utsab Saha, Sawradip Saha, Tahmid Kabir, Shaikh Anowarul Fattah, Mohammad Saquib:
Decoding Human Activities: Analyzing Wearable Accelerometer and Gyroscope Data for Activity Recognition. CoRR abs/2310.02011 (2023) - 2022
- [j40]Monjur Morshed, Shaikh Anowarul Fattah, Mohammad Saquib:
Automated Heart Valve Disorder Detection Based on PDF Modeling of Formant Variation Pattern in PCG Signal. IEEE Access 10: 27330-27342 (2022) - [j39]Md. Toky Foysal Talukdar, Naqib Sad Pathan, Shaikh Anowarul Fattah, Muhammad Quamruzzaman, Mohammad Saquib:
Multistage Adaptive Noise Cancellation Scheme for Heart Rate Estimation From PPG Signal Utilizing Mode Based Decomposition of Acceleration Data. IEEE Access 10: 59759-59771 (2022) - [j38]Md Imrul Hasan, Mohammad Saquib:
Robust 2-D DOA Estimation in a Polarization Sensitive Single User Environment. IEEE Access 10: 115914-115929 (2022) - [c38]Md Imrul Hasan, SK Nayemuzzaman, Mohammad Saquib:
Performance Analysis of Large Aperture mMIMO UCCA Arrays in a 5G User Dense Network. FNWF 2022: 526-531 - [c37]Jiawei Liu, Kumar Vijay Mishra, Mohammad Saquib:
Transceiver Co-design for Full-Duplex Integrated Sensing and Communications. GLOBECOM 2022: 3821-3826 - [c36]Jiawei Liu, Kumar Vijay Mishra, Mohammad Saquib:
Precoder Design for Joint In-Band Full-Duplex MIMO Communications and Widely-Distributed MIMO Radar. ICC 2022: 4679-4684 - [c35]Jiawei Liu, Kumar Vijay Mishra, Mohammad Saquib:
Distributed Beamforming for Joint Radar-Communications. SAM 2022: 151-155 - [i3]Md Imrul Hasan, Mohammad Saquib:
Performance of Large Aperture UCCA Arrays in a 5G User Dense Network. CoRR abs/2203.02491 (2022) - 2021
- [j37]Tanvir Mahmud, Md. Jahin Alam, Sakib Chowdhury, Shams Nafisa Ali, Md Maisoon Rahman, Shaikh Anowarul Fattah, Mohammad Saquib:
CovTANet: A Hybrid Tri-Level Attention-Based Network for Lesion Segmentation, Diagnosis, and Severity Prediction of COVID-19 Chest CT Scans. IEEE Trans. Ind. Informatics 17(9): 6489-6498 (2021) - [i2]Tanvir Mahmud, Md. Jahin Alam, Sakib Chowdhury, Shams Nafisa Ali, Md Maisoon Rahman, Shaikh Anowarul Fattah, Mohammad Saquib:
CovTANet: A Hybrid Tri-level Attention Based Network for Lesion Segmentation, Diagnosis, and Severity Prediction of COVID-19 Chest CT Scans. CoRR abs/2101.00691 (2021) - 2020
- [j36]Tanvir Mahmud, Shaikh Anowarul Fattah, Mohammad Saquib:
DeepArrNet: An Efficient Deep CNN Architecture for Automatic Arrhythmia Detection and Classification From Denoised ECG Beats. IEEE Access 8: 104788-104800 (2020) - [j35]Md Navid Akbar, Mohammad Saquib:
Real Signal Equalization for OQAM. IEEE Signal Process. Lett. 27: 11-15 (2020) - [j34]Md. Shah Afran, Mohammad Saquib, Michael Rice:
Sparse Equalization in Aeronautical Telemetry Using Two Transmit Antennas. IEEE Trans. Aerosp. Electron. Syst. 56(1): 830-836 (2020) - [j33]Md. Shah Afran, Mohammad Saquib, Michael Rice:
On the Effects of Channel Sparsity on Joint Estimators in Aeronautical Telemetry. IEEE Trans. Aerosp. Electron. Syst. 56(3): 2507-2514 (2020) - [i1]Jiawei Liu, Kumar Vijay Mishra, Mohammad Saquib:
Co-Designing Statistical MIMO Radar and In-band Full-Duplex Multi-User MIMO Communications. CoRR abs/2006.14774 (2020)
2010 – 2019
- 2019
- [j32]Michael Rice, Christopher Hogstrom, Md. Shah Afran, Mohammad Saquib:
On Sparse Channel Estimation in Aeronautical Telemetry. IEEE Trans. Aerosp. Electron. Syst. 55(5): 2612-2618 (2019) - 2018
- [c34]Jiawei Liu, Mohammad Saquib:
Transmission Design for a Joint MIMO Radar and MU-MIMO Downlink Communication System. GlobalSIP 2018: 196-200 - 2017
- [c33]Jiawei Liu, Mohammad Saquib:
Joint transmit-receive beamspace design for colocated MIMO radar in the presence of deliberate jammers. ACSSC 2017: 1152-1156 - [c32]Rakibul Hasan, Sharif Atique, Mohammad Saquib, Jeffrey Boksiner:
Sliding windows technique for LTE network coverage detection. MILCOM 2017: 185-190 - 2016
- [c31]Rakibul Hasan, Sharif Atique, Mohammad Saquib, Jeffrey Boksiner:
Network coverage detection using order statistics: An LTE perspective. MILCOM 2016: 242-247 - [c30]Michael Rice, Mohammad Saquib:
On frequency offset estimation errors in coherent detection over equalized ISI channels. MILCOM 2016: 1292-1297 - [c29]Md. Shah Afran, Mohammad Saquib, Michael Rice:
A polynomial rooting based ML CFO estimator in multipath channel with repetitive pilot symbols. MILCOM 2016: 1298-1303 - 2015
- [j31]Michael Rice, Md. Shah Afran, Mohammad Saquib:
Equalization in aeronautical telemetry using multiple transmit antennas. IEEE Trans. Aerosp. Electron. Syst. 51(3): 2148-2165 (2015) - [j30]Arun Desiraju, Murat Torlak, Mohammad Saquib:
Multiple-Attempt Decoding of Convolutional Codes Over Rayleigh Channels. IEEE Trans. Veh. Technol. 64(8): 3426-3439 (2015) - [c28]Tariq M. Ali, Mohammad Saquib:
Numerically efficient generation of exponentially correlated two-dimensional shadowing. ICC 2015: 4265-4271 - 2014
- [j29]Tariq M. Ali, Ahmed Sadeque, Mohammad Saquib, Murtaza Ali:
MIMO Radar for Target Detection and Localization in Sensor Networks. IEEE Syst. J. 8(1): 75-82 (2014) - [j28]Ahmed Sadeque, Tariq M. Ali, Mohammad Saquib, Murtaza Ali:
Waveform Transmission Scheme for MIMO Radar Imaging Based on Space-Time Block Codes. IEEE Trans. Aerosp. Electron. Syst. 50(1): 777-785 (2014) - [j27]Tariq M. Ali, Mohammad Saquib:
Analysis of an Instantaneous Packet Loss Based Vertical Handover Algorithm for Heterogeneous Wireless Networks. IEEE Trans. Mob. Comput. 13(5): 992-1006 (2014) - [c27]Brent W. Robinson, Mohammad Saquib:
Adaptive coherent averaging for real-time electrocardiogram enhancement. EMBC 2014: 5048-5051 - [c26]Sandeep Mavuduru Kannappa, Tariq M. Ali, Mohammad Saquib:
Analysis of a buffered cognitive wireless network with dynamic spectrum assignment. ICC 2014: 1434-1440 - [c25]Michael Rice, Mohammad Saquib, Md. Shah Afran, Arlene A. Cole-Rhodes, Farzad Moazzami:
On the Performance of Equalization Techniques for Aeronautical Telemetry. MILCOM 2014: 456-461 - [c24]Michael Rice, Mohammad Saquib:
A Generalized Time-Reversed Space-Time Block Code for Helicopter-to-Ground Communications. MILCOM 2014: 544-549 - 2013
- [j26]Ian E. Williams, Mohammad Saquib:
Linear Frequency Domain Equalization of SOQPSK-TG for Wideband Aeronautical Telemetry Channels. IEEE Trans. Aerosp. Electron. Syst. 49(1): 640-647 (2013) - [j25]Enrique A. Santiago, Mohammad Saquib:
Noise Subspace-Based Iterative Technique for Direction Finding. IEEE Trans. Aerosp. Electron. Syst. 49(4): 2281-2295 (2013) - [j24]Tariq M. Ali, Mohammad Saquib:
Analytical Framework for WLAN-Cellular Voice Handover Evaluation. IEEE Trans. Mob. Comput. 12(3): 447-460 (2013) - [c23]Rakibul Hasan, Mohammad Saquib, Jeffrey Boksiner:
Sliding window technique to detect the presence of LTE. RWS 2013: 10-12 - 2012
- [c22]Md. Rakibul Hasan, Mohammad Saquib:
Sliding window technique for dynamic spectrum sensing of an asynchronous primary user. ICC 2012: 1502-1506 - [c21]Tariq M. Ali, Mohammad Saquib:
WLAN/cellular handover analysis for different mobility models. ICC 2012: 2758-2762 - 2011
- [j23]Ahmed Sadeque, Mohammad Saquib:
Pseudo Random Binary Phase Offset Scheme for Multi-Carrier Delay Diversity Modulation. IEEE Trans. Wirel. Commun. 10(5): 1495-1503 (2011) - [j22]Tariq M. Ali, Mohammad Saquib:
Performance Evaluation of WLAN/Cellular Media Access for Mobile Voice Users under Random Mobility Models. IEEE Trans. Wirel. Commun. 10(10): 3241-3255 (2011) - [c20]Tariq M. Ali, Mohammad Saquib, Mohammad M. Mollah:
Performance Analysis of Vertical Handover Algorithm Based on Expected WLAN Lifetime. GLOBECOM 2011: 1-5 - [c19]Ahmed Sadeque, Mohammad Saquib:
Random Binary Phase Offset Scheme for CDD Based MIMO-OFDM System. GLOBECOM 2011: 1-5 - [c18]Michael Rice, Mohammad Saquib:
MIMO equalization for helicopter-to-ground communications. MILCOM 2011: 501-506 - 2010
- [j21]Brent W. Robinson, David Hernandez-Garduno, Mohammad Saquib:
Fixed and Floating-Point Implementations of Linear Adaptive Techniques for Predicting Physiological Hand Tremor in Microsurgery. IEEE J. Sel. Top. Signal Process. 4(3): 659-667 (2010) - [j20]Dimitrie C. Popescu, Danda B. Rawat, Otilia Popescu, Mohammad Saquib:
Game-Theoretic Approach to Joint Transmitter Adaptation and Power Control in Wireless Systems. IEEE Trans. Syst. Man Cybern. Part B 40(3): 675-682 (2010) - [j19]Onyemelem Jegbefume, Mohammad Saquib, Murat Torlak:
Performance analysis of spread spectrum protocols with adaptive spreading. IEEE Trans. Wirel. Commun. 9(3): 1063-1073 (2010) - [c17]Brent W. Robinson, David Hernandez-Garduno, Mohammad Saquib:
Fixed and floating point analysis of linear predictors for physiological hand tremor in microsurgery. ICASSP 2010: 578-581 - [c16]Tariq M. Ali, Mohammad Saquib, Chaitali Sengupta:
Vertical Handover Analysis for Voice over WLAN/Cellular Network. ICC 2010: 1-5 - [c15]Sandeep Mavuduru Kannappa, Mohammad Saquib:
Performance Analysis of a Cognitive Network with Dynamic Spectrum Assignment to Secondary Users. ICC 2010: 1-5
2000 – 2009
- 2009
- [j18]Kommate Jitvanichphaibool, Mohammad Saquib, Otilia Popescu:
Optimum pilot-to-data power ratio for partial RAKE receiver in Nakagami-m fading channels. IEEE Trans. Wirel. Commun. 8(1): 136-147 (2009) - [c14]Tariq M. Ali, Mohammad Saquib, Chaitali Sengupta, Yuan Kang Lee:
Modeling of User-Perceived Web-Browsing Performance over a WLAN/3G Inter-Working Environment. ICC 2009: 1-5 - 2008
- [j17]Yanxin Na, Mohammad Saquib:
Effects of Time-Variations in Wireless Channels on the Two Different Fade-Resistant CDMA Systems. IEEE Trans. Wirel. Commun. 7(8): 2923-2929 (2008) - [c13]Onyemelem Jegbefume, Mohammad Saquib, Murat Torlak:
Artificial Code Puncturing for Wireless Networks. WCNC 2008: 3181-3185 - [c12]Tariq M. Ali, Mohammad Saquib, Chaitali Sengupta:
Performance Analysis Framework and Vertical Handover Triggering Algorithms for Voice over WLAN/Cellular Network. WCNC 2008: 3186-3190 - 2007
- [j16]Yanxin Na, Mohammad Saquib:
Analysis of the Channel Energy Capture in Ultra-Wideband Transmitted Reference Systems. IEEE Trans. Commun. 55(2): 262-265 (2007) - [j15]Md Habibul Islam, Mohammad Saquib, Naofal Al-Dhahir:
Performance of a Hybrid Receiver in the Downlink Multicell CDMA System. IEEE Trans. Signal Process. 55(2): 645-655 (2007) - [j14]Yanxin Na, Mohammad Saquib, Giridhar D. Mandyam:
A Pilot-Aided Multicode CDMA Transmission Over Wireless Channels. IEEE Trans. Signal Process. 55(7-2): 3823-3836 (2007) - [j13]Onyemelem Jegbefume, Mohammad Saquib, Marco Tacca:
Sequential opportunistic decoding for spread spectrum wireless networks. IEEE Trans. Wirel. Commun. 6(12): 4513-4523 (2007) - [c11]Onyemelem Jegbefume, Mohammad Saquib:
Soft-Length Frame Protocols for Wireless Networks. GLOBECOM 2007: 5309-5313 - 2006
- [j12]Yanxin Na, Mohammad Saquib, Moe Z. Win:
Pilot-aided chip-interleaved DS-CDMA transmission over time-varying channels. IEEE J. Sel. Areas Commun. 24(1): 151-160 (2006) - [j11]Mohammad Saquib, Sajal K. Das, Giridhar D. Mandyam, Moe Z. Win:
Fade-resistant CDMA transmission and reception over time-varying wireless channels. IEEE Trans. Wirel. Commun. 5(5): 1197-1206 (2006) - [c10]Onyemelem Jegbefume, Mohammad Saquib, Marco Tacca:
Signal Processing Aided Opportunistic Decoding for Wireless Networks. GLOBECOM 2006 - [c9]Yanxin Na, Mohammad Saquib:
Exploitation of Time-Variations in Wireless Channels using Two Different CDMA Systems. ICC 2006: 4888-4893 - [c8]Habibul Islam, Mohammad Saquib, Naofal Al-Dhahir:
Reduced-Complexity Receivers for the Downlink of a Multicell CDMA System with Multiple Antennas. ICC 2006: 5451-5456 - [c7]Kommate Jitvanichphaibool, Mohammad Saquib, Otilia Popescu:
Optimum Pilot-to-Data Power Ratio for Partial RAKE Receiver in Nakagami Fading Channels. ICC 2006: 5505-5510 - 2005
- [j10]Onyemelem Jegbefume, Mohammad Saquib, Moe Z. Win:
Soft-length symbol protocol for wireless. IEEE Commun. Lett. 9(9): 793-795 (2005) - [c6]Yanxin Na, Mohammad Saquib, Giridhar D. Mandyam:
Multicode CDMA transmission over time-varying multipath channels. WCNC 2005: 206-211 - 2004
- [j9]Kommate Jitvanichphaibool, Mohammad Saquib, Naofal Al-Dhahir:
Space-time trellis-coded transmissions with parallel sequences over time-varying channels. IEEE Commun. Lett. 8(9): 558-560 (2004) - [j8]Mohammad Saquib, Moe Z. Win:
Fade-resistant transmission over time-varying wireless channels. IEEE Signal Process. Lett. 11(6): 561-564 (2004) - [c5]Mohammad Saquib, Sushanta Das, Giridhar D. Mandyam, Moe Z. Win:
Fade resistant transmission over time-varying wireless channels using parallel sequences. ICC 2004: 385-389 - [c4]Onyemelem Jegbefume, Mohammad Saquib, Moe Z. Win:
Capacity enhancement of wireless networks using soft-length symbols protocol. ICC 2004: 4207-4210 - 2003
- [j7]Mohammad Saquib:
Near-far resistance of linear receivers in chip-asynchronous CDMA systems with random signatures. IEEE Trans. Commun. 51(12): 1975-1978 (2003) - 2002
- [j6]Mohammad Saquib, Habibul Islam:
Joint Transmitter-Receiver Optimization in the Downlink CDMA Systems. EURASIP J. Adv. Signal Process. 2002(8): 807-817 (2002) - [j5]Mohammad Saquib, Roy D. Yates:
Analysis of a partial decorrelator in a multicell DS-CDMA system. IEEE Trans. Commun. 50(12): 1895-1898 (2002) - 2001
- [c3]Mohammad Saquib:
Near-far resistance of linear receivers in chip asynchronous CDMA systems with random signatures. ICC 2001: 2747-2751 - 2000
- [j4]Mohammad Saquib, Roy D. Yates, Anand Ganti:
An asynchronous multirate decorrelator. IEEE Trans. Commun. 48(5): 739-742 (2000) - [j3]Mohammad Saquib, Roy D. Yates, Anand Ganti:
Power control for an asynchronous multirate decorrelator. IEEE Trans. Commun. 48(5): 804-812 (2000) - [c2]Mohammad Saquib, Md Habibul Islam, K. Sarath Kumar:
Power control and transmit diversity in multipath CDMA systems. WCNC 2000: 613-618
1990 – 1999
- 1999
- [j2]Mohammad Saquib, Roy D. Yates, Narayan B. Mandayam:
Decorrelating Detectors for a Dual Rate Synchronous DS/CDMA System. Wirel. Pers. Commun. 9(3): 197-216 (1999) - 1998
- [j1]Mohammad Saquib, Roy D. Yates, Narayan B. Mandayam:
A decision feedback decorrelator for a dual rate synchronous DS/CDMA system. Wirel. Networks 4(6): 497-506 (1998) - 1997
- [c1]Mohammad Saquib, Roy D. Yates:
A Two Stage Decorrelator for a Dual Rate Synchronous DS/CDMA System. ICC (1) 1997: 334-338
Coauthor Index
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