default search action
Saif K. Mohammed
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [c40]Beyza Dabak, Venkatesh Khammammetti, Saif Khan Mohammed, A. Robert Calderbank:
Zak-OTFS and LDPC Codes. ICC 2024: 3785-3790 - [i44]Beyza Dabak, Venkatesh Khammammetti, Saif Khan Mohammed, A. Robert Calderbank:
Zak-OTFS and LDPC Codes. CoRR abs/2402.09551 (2024) - [i43]Muhammad Ubadah, Saif Khan Mohammed, Ronny Hadani, Shachar Kons, Ananthanarayanan Chockalingam, A. Robert Calderbank:
Zak-OTFS for Integration of Sensing and Communication. CoRR abs/2404.04182 (2024) - [i42]Jinu Jayachandran, Rahul Kumar Jaiswal, Saif Khan Mohammed, Ronny Hadani, Ananthanarayanan Chockalingam, A. Robert Calderbank:
Zak-OTFS: Pulse Shaping and the Tradeoff between Time/Bandwidth Expansion and Predictability. CoRR abs/2405.02718 (2024) - [i41]Jinu Jayachandran, Muhammad Ubadah, Saif Khan Mohammed, Ronny Hadani, Ananthanarayanan Chockalingam, A. Robert Calderbank:
Zak-OTFS and Turbo Signal Processing for Joint Sensing and Communication. CoRR abs/2406.06024 (2024) - [i40]Jinu Jayachandran, Imran Ali Khan, Saif Khan Mohammed, Ronny Hadani, Ananthanarayanan Chockalingam, A. Robert Calderbank:
Zak-OTFS with Interleaved Pilots to Extend the Region of Predictable Operation. CoRR abs/2408.09379 (2024) - 2023
- [j35]Imran Ali Khan, Saif Khan Mohammed:
A Low-Complexity OTFS Channel Estimation Method for Fractional Delay-Doppler Scenarios. IEEE Wirel. Commun. Lett. 12(9): 1484-1488 (2023) - [c39]Amit Kumar Pathak, Venkatesh Khammammetti, Saif Khan Mohammed:
Spectral Efficiency Performance of OTFS Based Multi-Cell Systems. ISNCC 2023: 1-6 - [c38]Muhammad Ubadah, Saif Khan Mohammed:
Impact of Sinusoidal Co-channel CW Interference on the Spectral Efficiency of OTFS Modulation. NCC 2023: 1-6 - [i39]Saif Khan Mohammed, Ronny Hadani, Ananthanarayanan Chockalingam, A. Robert Calderbank:
OTFS - A Mathematical Foundation for Communication and Radar Sensing in the Delay-Doppler Domain. CoRR abs/2302.08696 (2023) - [i38]Saif Khan Mohammed, Ronny Hadani, Ananthanarayanan Chockalingam, A. Robert Calderbank:
OTFS - Predictability in the Delay-Doppler Domain and its Value to Communication and Radar Sensing. CoRR abs/2302.08705 (2023) - 2022
- [j34]Rachit Mahendra, Saif Khan Mohammed, Ranjan K. Mallik:
Downlink Multi-User Hybrid Beamforming Systems With Receiver IQ Imbalance: Pre-Compensation and Performance Analysis. IEEE Commun. Lett. 26(4): 927-931 (2022) - [j33]Venkatesh Khammammetti, Saif Khan Mohammed:
Spectral Efficiency of OTFS Based Orthogonal Multiple Access With Rectangular Pulses. IEEE Trans. Veh. Technol. 71(12): 12989-13006 (2022) - 2021
- [j32]Rachit Mahendra, Saif Khan Mohammed, Ranjan K. Mallik:
Compensation of Transmitter IQ Imbalance in Multi-User Hybrid Beamforming Systems. IEEE Access 9: 98231-98248 (2021) - [j31]Brijesh Chander Pandey, Saif Khan Mohammed, Patchava Raviteja, Yi Hong, Emanuele Viterbo:
Low Complexity Precoding and Detection in Multi-User Massive MIMO OTFS Downlink. IEEE Trans. Veh. Technol. 70(5): 4389-4405 (2021) - [j30]Saif Khan Mohammed:
Time-Domain to Delay-Doppler Domain Conversion of OTFS Signals in Very High Mobility Scenarios. IEEE Trans. Veh. Technol. 70(6): 6178-6183 (2021) - [j29]Saif Khan Mohammed:
Derivation of OTFS Modulation From First Principles. IEEE Trans. Veh. Technol. 70(8): 7619-7636 (2021) - [c37]Rachit Mahendra, Saif Khan Mohammed, Ranjan K. Mallik:
Performance of MRC and ZF Receivers in IQ-Impaired Uplink Massive MIMO Systems. COMSNETS 2021: 202-206 - [i37]Venkatesh Khammammetti, Saif Khan Mohammed:
Spectral Efficiency of OTFS Based Orthogonal Multiple Access with Rectangular Pulses. CoRR abs/2110.08746 (2021) - [i36]Imran Ali Khan, Saif Khan Mohammed:
Low Complexity Channel Estimation for OTFS Modulation with Fractional Delay and Doppler. CoRR abs/2111.06009 (2021) - 2020
- [j28]Jinu Jayachandran, Kamal Biswas, Saif Khan Mohammed, Erik G. Larsson:
Efficient Techniques for In-Band System Information Broadcast in Multi-Cell Massive MIMO. IEEE Trans. Commun. 68(10): 6157-6173 (2020) - [j27]Soumya P. Dash, Ranjan K. Mallik, Saif Khan Mohammed:
Performance Analysis of Coherent PLC With MPSK Signaling in Nakagami-$m$ Noise Environment. IEEE Trans. Veh. Technol. 69(3): 3057-3067 (2020) - [j26]Alok Kumar Sinha, Saif Khan Mohammed, Patchava Raviteja, Yi Hong, Emanuele Viterbo:
OTFS Based Random Access Preamble Transmission for High Mobility Scenarios. IEEE Trans. Veh. Technol. 69(12): 15078-15094 (2020) - [c36]Jinu Jayachandran, Kamal Biswas, Saif Khan Mohammed, Erik G. Larsson:
Efficient Techniques For in-band System Information Broadcast in Multi-Cell Massive Mimo. ICASSP 2020: 5140-5144 - [c35]Rachit Mahendra, Saif Khan Mohammed, Ranjan K. Mallik:
Transmitter IQ Imbalance Pre-Compensation for mm-wave Hybrid Beamforming Systems. VTC Spring 2020: 1-7 - [c34]Rachit Mahendra, Saif Khan Mohammed, Ranjan K. Mallik:
Compensation of Receiver IQ Imbalance in mm-wave Hybrid Beamforming Systems. VTC Fall 2020: 1-6 - [i35]Saif Khan Mohammed:
Time-Domain to Delay-Doppler Domain Conversion of OTFS Signals in Very High Mobility Scenarios. CoRR abs/2006.12413 (2020) - [i34]Saif Khan Mohammed:
Derivation of OTFS Modulation from First Principles. CoRR abs/2007.14357 (2020) - [i33]Alok Kumar Sinha, Saif Khan Mohammed, Patchava Raviteja, Yi Hong, Emanuele Viterbo:
OTFS Based Random Access Preamble Transmission For High Mobility Scenarios. CoRR abs/2010.12915 (2020) - [i32]Brijesh Chander Pandey, Saif Khan Mohammed, Patchava Raviteja, Yi Hong, Emanuele Viterbo:
Low Complexity Precoding and Detection in Multi-user Massive MIMO OTFS Downlink. CoRR abs/2011.12241 (2020)
2010 – 2019
- 2019
- [j25]Brijesh Chander Pandey, Saif Khan Mohammed:
A Low-Latency Transmission Method for Massive MIMO Systems With Low Control Signaling Overhead. IEEE Trans. Commun. 67(5): 3292-3308 (2019) - [j24]Amit Agarwal, Saif Khan Mohammed:
Rate Region of the ZF Precoder in a 2×2 Multiuser Optical IM/DD Channel. IEEE Trans. Commun. 67(6): 3936-3953 (2019) - [j23]Sudarshan Mukherjee, Alok Kumar Sinha, Saif Khan Mohammed:
Timing Advance Estimation and Beamforming of Random Access Response in Crowded TDD Massive MIMO Systems. IEEE Trans. Commun. 67(6): 4004-4019 (2019) - [j22]Soumya P. Dash, Ranjan K. Mallik, Saif Khan Mohammed:
Error Analysis of Receive Diversity Noncoherent PLC System in Impulsive Noise Environment. IEEE Trans. Veh. Technol. 68(1): 962-966 (2019) - [j21]Venkatesh Khammammetti, Saif Khan Mohammed:
OTFS-Based Multiple-Access in High Doppler and Delay Spread Wireless Channels. IEEE Wirel. Commun. Lett. 8(2): 528-531 (2019) - 2018
- [j20]Soumya P. Dash, Ranjan K. Mallik, Saif K. Mohammed:
Performance analysis of non-coherent PLC with multi-level ASK in impulsive noise environment. IET Commun. 12(7): 816-823 (2018) - [c33]Kamal Biswas, Saif Khan Mohammed, Erik G. Larsson:
Efficient Techniques for Broadcast of System Information in mmWave Communication Systems. SPAWC 2018: 1-5 - [i31]Sudarshan Mukherjee, Alok Kumar Sinha, Saif Khan Mohammed:
Timing Advance Estimation and Beamforming of Random Access Response in Crowded TDD Massive MIMO Systems. CoRR abs/1801.08276 (2018) - 2017
- [j19]Sudarshan Mukherjee, Saif Khan Mohammed:
How Much Bandpass Filtering is Required in Massive MIMO Base Stations? IEEE Trans. Veh. Technol. 66(5): 4481-4486 (2017) - [c32]Sudarshan Mukherjee, Saif Khan Mohammed:
Information Theoretic Performance of Periodogram-Based CFO Estimation in Massive MU-MIMO Systems. GLOBECOM 2017: 1-6 - [i30]Amit Agarwal, Saif Khan Mohammed:
Achievable Rate Region of the Zero-Forcing Precoder in a 2 X 2 MU-MISO Broadcast VLC Channel with Per-LED Peak Power Constraint and Dimming Control. CoRR abs/1701.03253 (2017) - 2016
- [j18]Ranjan K. Mallik, Ross D. Murch, Soumya P. Dash, Saif K. Mohammed:
Optimal Multilevel ASK With Noncoherent Diversity Reception in Uncorrelated Nonidentical and Correlated Rayleigh Fading. IEEE Trans. Commun. 64(5): 2204-2219 (2016) - [j17]Sudarshan Mukherjee, Saif Khan Mohammed, Indra Bhushan:
Impact of CFO Estimation on the Performance of ZF Receiver in Massive MU-MIMO Systems. IEEE Trans. Veh. Technol. 65(11): 9430-9436 (2016) - [j16]Saif Khan Mohammed, Erik G. Larsson:
Improving the Performance of the Zero-Forcing Multiuser MISO Downlink Precoder Through User Grouping. IEEE Trans. Wirel. Commun. 15(2): 811-826 (2016) - [j15]Sudarshan Mukherjee, Saif Khan Mohammed:
Impact of Frequency Selectivity on the Information Rate Performance of CFO Impaired Single-Carrier Massive MU-MIMO Uplink. IEEE Wirel. Commun. Lett. 5(6): 648-651 (2016) - [c31]Sudarshan Mukherjee, Saif Khan Mohammed:
Constant Envelope Pilot-Based Low-Complexity CFO Estimation in Massive MU-MIMO Systems. GLOBECOM 2016: 1-5 - [c30]Soumya Prakash Dash, Ranjan K. Mallik, Saif Khan Mohammed:
Coherent detection in a receive diversity PLC system under Nakagami-m noise environment. PIMRC 2016: 1-6 - [i29]Sudarshan Mukherjee, Saif Khan Mohammed:
How Much Bandpass Filtering is Required in Massive MIMO Basestations? CoRR abs/1602.06665 (2016) - [i28]Sudarshan Mukherjee, Saif Khan Mohammed:
Constant Envelope Pilot-Based Low-Complexity CFO Estimation in Massive MU-MIMO Systems. CoRR abs/1605.01501 (2016) - [i27]Sudarshan Mukherjee, Saif Khan Mohammed:
Information Rate Performance of Massive MU-MIMO Uplink with Constant Envelope Pilot-based Frequency Synchronization. CoRR abs/1605.06275 (2016) - [i26]Sudarshan Mukherjee, Saif Khan Mohammed:
Information Theoretic Performance of Periodogram-based CFO Estimation in Massive MU-MIMO Systems. CoRR abs/1611.04846 (2016) - 2015
- [j14]Antonios Pitarokoilis, Saif Khan Mohammed, Erik G. Larsson:
Uplink Performance of Time-Reversal MRC in Massive MIMO Systems Subject to Phase Noise. IEEE Trans. Wirel. Commun. 14(2): 711-723 (2015) - [j13]Sudarshan Mukherjee, Saif Khan Mohammed:
Constant-Envelope Precoding With Time-Variation Constraint on the Transmitted Phase Angles. IEEE Wirel. Commun. Lett. 4(2): 221-224 (2015) - [c29]Sudarshan Mukherjee, Saif Khan Mohammed:
Low-Complexity CFO Estimation for Multi-User Massive MIMO Systems. GLOBECOM 2015: 1-7 - [c28]Sudarshan Mukherjee, Saif Khan Mohammed:
Energy-spectral efficiency trade-off for a massive SU-MIMO system with transceiver power consumption. ICC 2015: 1938-1944 - [i25]Sudarshan Mukherjee, Saif Khan Mohammed:
Low-Complexity CFO Estimation for Multi-User Massive MIMO Systems. CoRR abs/1504.05657 (2015) - [i24]Sudarshan Mukherjee, Saif Khan Mohammed:
CFO Estimation for Massive MU-MIMO Systems. CoRR abs/1506.01138 (2015) - [i23]Sudarshan Mukherjee, Saif Khan Mohammed, Indra Bhushan:
Impact of CFO Estimation on the Performance of ZF Receiver in Massive MU-MIMO Systems. CoRR abs/1508.05703 (2015) - [i22]Amit Agarwal, Sudarshan Mukherjee, Saif Khan Mohammed:
Impact of Underlaid Multi-antenna D2D on Cellular Downlink Users in Massive MIMO Systems. CoRR abs/1511.00781 (2015) - 2014
- [j12]Saif Khan Mohammed:
Impact of Transceiver Power Consumption on the Energy Efficiency of Zero-Forcing Detector in Massive MIMO Systems. IEEE Trans. Commun. 62(11): 3874-3890 (2014) - [i21]Saif Khan Mohammed:
Impact of Transceiver Power Consumption on the Energy Efficiency Spectral Efficiency Tradeoff of Zero-Forcing Detector in Massive MIMO Systems. CoRR abs/1401.4907 (2014) - [i20]Sudarshan Mukherjee, Saif Khan Mohammed:
On the Energy-Spectral Efficiency Trade-off of the MRC Receiver in Massive MIMO Systems with Transceiver Power Consumption. CoRR abs/1404.3010 (2014) - [i19]Sudarshan Mukherjee, Saif Khan Mohammed:
Energy-Spectral Efficiency Trade-off for a Massive SU-MIMO System with Transceiver Power Consumption. CoRR abs/1410.5240 (2014) - [i18]Saif Khan Mohammed, Erik G. Larsson:
Improving the Performance of the Zero-Forcing Multiuser MISO Downlink Precoder through User Grouping. CoRR abs/1411.7529 (2014) - [i17]Sudarshan Mukherjee, Saif Khan Mohammed:
Constant-Envelope Precoding with Time-Variation Constraint on the Transmitted Phase Angles. CoRR abs/1411.7533 (2014) - 2013
- [j11]Thomas L. Marzetta, Giuseppe Caire, Mérouane Debbah, Chih-Lin I, Saif K. Mohammed:
Special issue on Massive MIMO. J. Commun. Networks 15(4): 333-337 (2013) - [j10]Saif Khan Mohammed, Erik G. Larsson:
Per-Antenna Constant Envelope Precoding for Large Multi-User MIMO Systems. IEEE Trans. Commun. 61(3): 1059-1071 (2013) - [j9]Saif Khan Mohammed, Erik G. Larsson:
Constant-Envelope Multi-User Precoding for Frequency-Selective Massive MIMO Systems. IEEE Wirel. Commun. Lett. 2(5) (2013) - [c27]Antonios Pitarokoilis, Saif Khan Mohammed, Erik G. Larsson:
Achievable rates of ZF receivers in massive MIMO with phase noise impairments. ACSSC 2013: 1004-1008 - [i16]Saif Khan Mohammed, Erik G. Larsson:
Constant-Envelope Multi-User Precoding for Frequency-Selective Massive MIMO Systems. CoRR abs/1305.1525 (2013) - [i15]Antonios Pitarokoilis, Saif Khan Mohammed, Erik G. Larsson:
Uplink Performance of Time-Reversal MRC in Massive MIMO Systems Subject to Phase Noise. CoRR abs/1306.4495 (2013) - 2012
- [j8]Saif Khan Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
Modulation Diversity in Fading Channels with a Quantized Receiver. IEEE Trans. Wirel. Commun. 11(1): 316-327 (2012) - [j7]Saif Khan Mohammed, Erik G. Larsson:
Single-User Beamforming in Large-Scale MISO Systems with Per-Antenna Constant-Envelope Constraints: The Doughnut Channel. IEEE Trans. Wirel. Commun. 11(11): 3992-4005 (2012) - [j6]Antonios Pitarokoilis, Saif Khan Mohammed, Erik G. Larsson:
On the Optimality of Single-Carrier Transmission in Large-Scale Antenna Systems. IEEE Wirel. Commun. Lett. 1(4): 276-279 (2012) - [c26]Tom Marzetta, Saif K. Mohammed:
Session MP3a: Large-scale MIMO systems (special session). ACSCC 2012: 286-288 - [c25]Antonios Pitarokoilis, Saif Khan Mohammed, Erik G. Larsson:
Effect of oscillator phase noise on uplink performance of large MU-MIMO systems. Allerton Conference 2012: 1190-1197 - [c24]Saif Khan Mohammed, Erik G. Larsson:
Constant envelope precoding for power-efficient downlink wireless communication in multi-user MIMO systems using large antenna arrays. ICASSP 2012: 2949-2952 - [c23]Saif Khan Mohammed, Erik G. Larsson:
Power-efficient downlink communication using large antenna arrays: The doughnut channel. ICC 2012: 2145-2150 - [i14]Saif Khan Mohammed, Erik G. Larsson:
Per-antenna Constant Envelope Precoding for Large Multi-User MIMO Systems. CoRR abs/1201.1634 (2012) - 2011
- [j5]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
MIMO Precoding With X- and Y-Codes. IEEE Trans. Inf. Theory 57(6): 3542-3566 (2011) - [j4]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
Precoding by Pairing Subchannels to Increase MIMO Capacity With Discrete Input Alphabets. IEEE Trans. Inf. Theory 57(7): 4156-4169 (2011) - [c22]Saif Khan Mohammed, Erik G. Larsson:
A Low Complexity User Grouping Based Multiuser MISO Downlink Precoder. GLOBECOM 2011: 1-6 - [c21]Suresh Chandrasekaran, Saif K. Mohammed, Ananthanarayanan Chockalingam:
On the Capacity of Quantized Gaussian MAC Channels with Finite Input Alphabet. ICC 2011: 1-5 - [c20]Saif Khan Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
Modulation diversity in fading channels with quantized receiver. ISIT 2011: 2949-2953 - [i13]Suresh Chandrasekaran, Saif K. Mohammed, Ananthanarayanan Chockalingam:
Achievable Rate Region of Quantized Broadcast and MAC Channels. CoRR abs/1102.2768 (2011) - [i12]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
Modulation Diversity in Fading Channels with Quantized Receiver. CoRR abs/1104.1155 (2011) - [i11]Saif K. Mohammed, Erik G. Larsson:
Constant Envelope Precoding for Power-Efficient Downlink Wireless Communication in Multi-User MIMO Systems Using Large Antenna Arrays. CoRR abs/1111.1191 (2011) - [i10]Saif Khan Mohammed, Erik G. Larsson:
Single-User Beamforming in Large-Scale MISO Systems with Per-Antenna Constant-Envelope Constraints: The Doughnut Channel. CoRR abs/1111.3752 (2011) - 2010
- [j3]Ramesh Annavajjala, Ananthanarayanan Chockalingam, Saif K. Mohammed:
On a Ratio of Functions of Exponential Random Variables and Some Applications. IEEE Trans. Commun. 58(11): 3091-3097 (2010) - [c19]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
X-Codes: A Low Complexity Full-Rate High-Diversity Achieving Precoder for TDD MIMO Systems. ICC 2010: 1-5 - [c18]Ece Gelal, Konstantinos Pelechrinis, Ioannis Broustis, Srikanth V. Krishnamurthy, Saif K. Mohammed, Ananthanarayanan Chockalingam, Sneha Kumar Kasera:
On the Impact of MIMO Diversity on Higher Layer Performance. ICDCS 2010: 764-773 - [c17]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
X- and Y-Codes for MIMO precoding. ISIT 2010: 2143-2147 - [c16]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
Precoding with X-codes to increase capacity with discrete input alphabets. ISIT 2010: 2148-2152 - [i9]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
Precoding by Pairing Subchannels to Increase MIMO Capacity with Discrete Input Alphabets. CoRR abs/1002.4263 (2010)
2000 – 2009
- 2009
- [j2]Saif K. Mohammed, Ahmed Zaki, Ananthanarayanan Chockalingam, B. Sundar Rajan:
High-Rate Space-Time Coded Large-MIMO Systems: Low-Complexity Detection and Channel Estimation. IEEE J. Sel. Top. Signal Process. 3(6): 958-974 (2009) - [c15]N. Srinidhi, Saif K. Mohammed, Ananthanarayanan Chockalingam:
A Reactive Tabu Search Based Equalizer for Severely Delay-Spread UWB MIMO-ISI Channels. GLOBECOM 2009: 1-6 - [c14]Ahmed Zaki, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
A Training-Based Iterative Detection/Channel Estimation Scheme for Large Non-Orthogonal STBC MIMO Systems. ICC 2009: 1-5 - [c13]B. Sundar Rajan, Saif K. Mohammed, Ananthanarayanan Chockalingam, Nagaraja Srinidhi:
Low-complexity near-ML decoding of large non-orthogonal STBCs using reactive tabu search. ISIT 2009: 1993-1997 - [c12]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Low-complexity near-MAP decoding of large non-orthogonal STBCs using PDA. ISIT 2009: 1998-2002 - [c11]Somsubhra Barik, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Full-rate precoding in V-BLAST with angle parameter feedback. PIMRC 2009: 2539-2543 - [i8]N. Srinidhi, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Low-Complexity Near-ML Decoding of Large Non-Orthogonal STBCs using Reactive Tabu Search. CoRR abs/0901.1864 (2009) - [i7]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Low-Complexity Near-ML Decoding of Large Non-Orthogonal STBCs Using PDA. CoRR abs/0901.1869 (2009) - [i6]Somsubhra Barik, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
FRFD MIMO Systems: Precoded V-BLAST with Limited Feedback Versus Non-orthogonal STBC MIMO. CoRR abs/0901.2768 (2009) - [i5]N. Srinidhi, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Near-ML Signal Detection in Large-Dimension Linear Vector Channels Using Reactive Tabu Search. CoRR abs/0911.4640 (2009) - [i4]Saif K. Mohammed, Emanuele Viterbo, Yi Hong, Ananthanarayanan Chockalingam:
MIMO Precoding with X- and Y-Codes. CoRR abs/0912.1909 (2009) - 2008
- [j1]K. Vishnu Vardhan, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
A Low-Complexity Detector for Large MIMO Systems and Multicarrier CDMA Systems. IEEE J. Sel. Areas Commun. 26(3): 473-485 (2008) - [c10]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
High-Rate Space-Time Coded Large MIMO Systems: Low-Complexity Detection and Performance. GLOBECOM 2008: 4376-4380 - [c9]Saif K. Mohammed, K. Vishnu Vardhan, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Large MIMO Systems: A Low-Complexity Detector at High Spectral Efficiencies. ICC 2008: 3839-3845 - [c8]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
A Low-complexity near-ML performance achieving algorithm for large MIMO detection. ISIT 2008: 2012-2016 - [c7]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Low-complexity detection and performance in multi-gigabit high spectral efficiency wireless systems. PIMRC 2008: 1-5 - [c6]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
A Low-Complexity Precoder for Large Multiuser MISO Systems. VTC Spring 2008: 797-801 - [i3]K. Vishnu Vardhan, Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Large MIMO Detection: A Low-Complexity Detector at High Spectral Efficiencies. CoRR abs/0804.0980 (2008) - [i2]Saif K. Mohammed, Ananthanarayanan Chockalingam, B. Sundar Rajan:
Asymptotic Analysis of the Performance of LAS Algorithm for Large MIMO Detection. CoRR abs/0806.2533 (2008) - [i1]Saif K. Mohammed, Ahmed Zaki, Ananthanarayanan Chockalingam, B. Sundar Rajan:
High-Rate Space-Time Coded Large MIMO: Low-Complexity Detection and Channel Estimation. CoRR abs/0809.2446 (2008) - 2007
- [c5]Saif K. Mohammed, B. Sundar Rajan, Ananthanarayanan Chockalingam:
On the Maximal Rate of Non-Square STBCs from Complex Orthogonal Designs. GLOBECOM 2007: 1709-1713 - [c4]Saif K. Mohammed, Ananthanarayanan Chockalingam:
Multicode STBC in Frequency Selective Fading. GLOBECOM 2007: 3411-3415 - [c3]K. Raghu, Saif K. Mohammed, Ananthanarayanan Chockalingam:
A Distributed Approach to Interference Cancellation. GLOBECOM 2007: 4253-4257 - [c2]Saif K. Mohammed, Ananthanarayanan Chockalingam:
Detection of Multicode STBC Signals in Frequency Selective Fading. PIMRC 2007: 1-5 - 2006
- [c1]Saif Khan Mohammed, Naveen K. Yanduru:
Analysis and Measurement of Cross Modulation Distortion in WCDMA Receivers. APCCAS 2006: 1508-1511
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 2024-09-30 00:06 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint