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Publications by Ragnar Thobaben

Refereegranskade

Artiklar

[1]
B. Rodríguez Gálvez, R. Thobaben and M. Skoglund, "More PAC-Bayes bounds : From bounded losses, to losses with general tail behaviors, to anytime validity," Journal of machine learning research, vol. 25, pp. 1-43, 2024.
[3]
B. A. Mouris et al., "Glide Symmetry Applied to Printed Common-Mode Rejection Filters," IEEE transactions on microwave theory and techniques, vol. 70, no. 2, pp. 1198-1210, 2022.
[4]
B. A. Mouris, F. Stavrou and R. Thobaben, "Optimizing Low-Complexity Analog Mappings for Low-Power Sensors with Energy Scheduling Capabilities," IEEE Internet of Things Journal, pp. 1-1, 2022.
[5]
K. H. Forssell and R. Thobaben, "Worst-Case Detection Performance for Distributed SIMO Physical Layer Authentication," IEEE Transactions on Communications, vol. 70, no. 1, pp. 485-499, 2022.
[6]
B. A. Mouris et al., "Multi-tone Signal Optimization for Wireless Power Transfer in the Presence of Wireless Communication Links," IEEE Transactions on Wireless Communications, vol. 19, no. 5, pp. 3575-3590, 2020.
[7]
B. A. Mouris et al., "On the Increment of the Bandwidth of Mushroom-Type EBG Structures With Glide Symmetry," IEEE transactions on microwave theory and techniques, 2020.
[8]
B. Rodríguez Gálvez, R. Thobaben and M. Skoglund, "The Convex Information Bottleneck Lagrangian," Entropy, vol. 22, no. 1, 2020.
[9]
H. Forssell et al., "Physical Layer Authentication in Mission-Critical MTC Networks : A Security and Delay Performance Analysis," IEEE Journal on Selected Areas in Communications, vol. 37, no. 4, pp. 795-808, 2019.
[10]
B. A. Mouris, O. Quevedo-Teruel and R. Thobaben, "Exploiting Glide Symmetry in Planar EBG Structures," Journal of Physics, Conference Series, vol. 963, no. 1, 2018.
[11]
P.-H. Lin et al., "Multi-Phase Smart Relaying and Cooperative Jamming in Secure Cognitive Radio Networks," IEEE Transactions on Cognitive Communications and Networking, vol. 2, no. 1, pp. 38-52, 2016.
[12]
Z. Si, J. Ma and R. Thobaben, "Coded Cooperation for Multiway Relaying in Wireless Sensor Networks," Sensors, vol. 15, no. 7, pp. 15265-15284, 2015.
[13]
F. Gabry et al., "Energy Efficiency Analysis of Cooperative Jamming in Cognitive Radio Networks with Secrecy Constraints," IEEE Wireless Communications Letters, vol. 4, no. 4, pp. 437-440, 2015.
[14]
R. Blasco-Serrano et al., "A Measurement Rate-MSE Tradeoff for Compressive Sensing Through Partial Support Recovery," IEEE Transactions on Signal Processing, vol. 62, no. 18, pp. 4643-4658, 2014.
[15]
L. Grosjean et al., "Systematic LDPC Convolutional Codes : Asymptotic and Finite-Length Anytime Properties," IEEE Transactions on Communications, vol. 62, no. 12, pp. 4165-4183, 2014.
[16]
Z. Si, R. Thobaben and M. Skoglund, "Bilayer LDPC Convolutional Codes for Decode-and-Forward Relaying," IEEE Transactions on Communications, vol. 61, no. 8, pp. 3086-3099, 2013.
[17]
R. Blasco-Serrano et al., "Multi-antenna transmission for underlay and overlay cognitive radio with explicit message-learning phase," EURASIP Journal on Wireless Communications and Networking, 2013.
[18]
V. Rathi et al., "Performance analysis and design of two edge-type LDPC codes for the BEC wiretap channel," IEEE Transactions on Information Theory, vol. 59, no. 2, pp. 1048-1064, 2013.
[19]
R. Blasco-Serrano et al., "Polar Codes for Cooperative Relaying," IEEE Transactions on Communications, vol. 60, no. 11, pp. 3263-3273, 2012.
[20]
Z. Si, R. Thobaben and M. Skoglund, "Rate-Compatible LDPC Convolutional Codes Achieving the Capacity of the BEC," IEEE Transactions on Information Theory, vol. 58, no. 6, pp. 4021-4029, 2012.
[21]
M. Andersson et al., "Nested Polar Codes for Wiretap and Relay Channels," IEEE Communications Letters, vol. 14, no. 8, pp. 752-754, 2010.
[22]
R. Thobaben and J. Kliewer, "An Efficient Variable-Length Code Construction for Iterative Source-Channel Decoding," IEEE Transactions on Communications, vol. 57, no. 7, pp. 2005-2013, 2009.
[23]
J. Kliewer and R. Thobaben, "Iterative joint source-channel decoding of variable-length codes using residual source redundancy," IEEE Transactions on Wireless Communications, vol. 4, no. 3, pp. 919-929, 2005.
[24]
R. Thobaben and J. Kliewer, "Low-complexity iterative joint source-channel decoding for variable-length encoded Markov sources," IEEE Transactions on Communications, vol. 53, no. 12, pp. 2054-2064, 2005.
[25]
J. Kliewer and R. Thobaben, "Parallel concatenated joint source-channel coding," Electronics Letters, vol. 39, no. 23, pp. 1664-1666, 2003.
[26]
R. Thobaben and J. Kliewer, "Robust decoding of variable-length encoded Markov sources using a three-dimensional trellis," IEEE Communications Letters, vol. 7, no. 7, pp. 320-322, 2003.

Konferensbidrag

[28]
B. Rodríguez Gálvez, R. Thobaben and M. Skoglund, "A Variational Approach to Privacy and Fairness," in 2021 IEEE Information Theory Workshop, ITW 2021 - Proceedings, 2021.
[29]
B. Cavarec et al., "Achieving SWIPT through differential permutation-based coding intelligent reflecting surface," in 2021 17th International Symposium on Wireless Communication Systems (ISWCS), 2021.
[30]
S. Saritas et al., "Adversarial Attacks on CFO-Based Continuous Physical Layer Authentication : A Game Theoretic Study," in ICC 2021 - IEEE International Conference on Communications, 2021.
[31]
K. H. Forssell, R. Thobaben and J. Gross, "Delay Performance of Distributed Physical Layer Authentication Under Sybil Attacks," in ICC 2021 - IEEE International Conference on Communications, 2021.
[32]
B. A. Mouris, R. Thobaben and O. Quevedo-Teruel, "Glide-Symmetric Planar EBG Structure for Mutual Coupling Reduction Between Microstrip Patch Antennas," in 2021 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting (APS/URSI), 2021.
[33]
B. Rodríguez Gálvez et al., "On Random Subset Generalization Error Bounds and the Stochastic Gradient Langevin Dynamics Algorithm," in 2020 IEEE Information Theory Workshop (ITW), 2021.
[34]
S. Saritas et al., "Quadratic Signaling Games with Channel Combining Ratio," in 2021 IEEE International Symposium on Information Theory (ISIT), 2021, pp. 2690-2695.
[35]
B. Rodríguez Gálvez et al., "Tighter Expected Generalization Error Bounds via Wasserstein Distance," in Advances in Neural Information Processing Systems, 2021, pp. 19109-19121.
[36]
K. H. Forssell and R. Thobaben, "Worst-Case Detection Performance of Physical Layer Authentication Under Optimal MIMO Attacks," in ICC 2021 - IEEE International Conference on Communications, 2021.
[37]
B. A. Mouris, K. H. Forssell and R. Thobaben, "A Novel Low-Complexity Power-Allocation Algorithm for Multi-Tone Signals for Wireless Power Transfer," in IEEE Conference on Wireless Communications and Networking, 2020.
[38]
B. A. Mouris et al., "Glide Symmetry to Improve the Bandgap Operation of Periodic Microstrip Defected Ground Structures," in 2020 50th european microwave conference (EuMC), 2020, pp. 483-486.
[39]
B. A. Mouris, C. Kolitsidas and R. Thobaben, "A Dual-Polarized Multi-Antenna Structure for Simultaneous Transmission of Wireless Information and Power," in 2019 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting, APSURSI 2019 - Proceedings, 2019, pp. 1805-1806.
[40]
K. H. Forssell, R. Thobaben and J. Gross, "Performance Analysis of Distributed SIMO Physical Layer Authentication," in ICC 2019 - 2019 IEEE International Conference on Communications (ICC), 2019.
[41]
H. Forssell et al., "On the Impact of Feature-Based Physical Layer Authentication on Network Delay Performance," in Globecom 2017 - 2017 IEEE Global Communications Conference, 2017.
[42]
H. Forssell et al., "Feature-Based Multi-User Authentication for Parallel Uplink Transmissions," in 2016 9TH INTERNATIONAL SYMPOSIUM ON TURBO CODES AND ITERATIVE INFORMATION PROCESSING (ISTC), 2016, pp. 355-359.
[43]
L. Grosjean et al., "Variable-rate anytime transmission with feedback," in IEEE Vehicular Technology Conference, 2016.
[44]
H. Sandberg, G. Dan and R. Thobaben, "Differentially private state estimation in distribution networks with smart meters," in Proceedings of the IEEE Conference on Decision and Control, 2015, pp. 4492-4498.
[45]
P. -. Lin et al., "Interference neutralization vs clean relaying in cognitive radio networks with secrecy," in Proceedings of the 12th International Conference on Mobile and Ubiquitous Systems : Computing, Networking and Services, MOBIQUITOUS 2015, 2015, pp. 240-246.
[46]
P. -. Lin et al., "Multi-phase transmission for secure cognitive radio networks," in 2015 IEEE International Conference on Communication Workshop, ICCW 2015, 2015, pp. 475-479.
[47]
F. Gabry, R. Thobaben and M. Skoglund, "Secrecy Games In Cognitive Radio Networks with Multiple Secondary Users," in 2015 IEEE CONFERENCE ON COMMUNICATIONS AND NETWORK SECURITY (CNS), 2015, pp. 143-148.
[48]
P. -. Lin et al., "Clean relaying in cognitive radio networks with variational distance secrecy constraint," in 2014 IEEE Globecom Workshops, GC Wkshps 2014, 2014, pp. 1337-1342.
[49]
R. Blasco-Serrano, R. Thobaben and M. Skoglund, "Communication and interference coordination," in 2014 Information Theory and Applications Workshop, ITA 2014 - Conference Proceedings, 2014, p. 6804218.
[50]
R. Thobaben, G. Dán and H. Sandberg, "Wiretap Codes for Secure Multi-Party Computation," in Globecom Workshops (GC Wkshps), 2014, 2014.
[51]
R. Blasco-Serrano et al., "An Achievable Measurement Rate-MSE Tradeoff in Compressive Sensing Through Partial Support Recovery," in 2013 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2013, pp. 6426-6430.
[52]
F. Gabry et al., "High SNR performance of amplify-and-forward relaying in Rayleigh fading wiretap channels," in 2013 Iran Workshop on Communication and Information Theory, IWCIT 2013, 2013, p. 6555771.
[53]
F. Naghibi et al., "The Lossless CEO Problem with Security Constraints," in Proceedings of the 10th International Symposium on Wireless Communication Systems (ISWCS), 2013.
[54]
L. Dössel et al., "Anytime reliability of systematic LDPC convolutional codes," in Communications (ICC), 2012 IEEE International Conference on, 2012, pp. 2171-2175.
[55]
Z. Si et al., "Bidirectional broadcasting by using multi-edge type LDPC convolutional codes," in Turbo Codes and Iterative Information Processing (ISTC), 2012 7th International Symposium on, 2012, pp. 91-95.
[56]
R. Blasco-Serrano et al., "Comparison of Underlay and Overlay Spectrum Sharing Strategies in MISO Cognitive Channels," in 2012 7th International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications (CROWNCOM), 2012, pp. 224-229.
[57]
F. Gabry et al., "Cooperation for Secure Broadcasting in Cognitive Radio Networks," in Communications (ICC), 2012 IEEE International Conference on, 2012, pp. 5613-5618.
[58]
A. Kliks et al., "Crystallized Rate Regions in the Secondary Interference Channels," in 2012 International ITG Workshop on Smart Antennas (WSA), 2012, pp. 312-317.
[59]
Z. Si, R. Thobaben and M. Skoglund, "Dynamic decode-and-forward relaying with rate-compatible LDPC convolutional codes," in 5th International Symposium on Communications Control and Signal Processing, ISCCSP 2012, 2012, p. 6217841.
[60]
L. De Nardis et al., "Impact of mobility in cooperative spectrum sensing : Theory vs. simulation," in Wireless Communication Systems (ISWCS), 2012 International Symposium on, 2012, pp. 416-420.
[61]
F. Naghibi et al., "Layered LDPC Convolutional Codes for Compression of Correlated Sources under Adversarial Attacks," in 2012 International Symposium on Information Theory and Its Applications, ISITA 2012, 2012, pp. 165-169.
[62]
J. Lv et al., "Linear Precoding in MISO Cognitive Channels with Causal Primary Message," in 2012 International Symposium on Wireless Communication Systems (ISWCS), 2012, pp. 406-410.
[63]
J. Lv et al., "Linear precoding in MISO cognitive channels with degraded message sets," in 2012 International ITG Workshop onSmart Antennas (WSA), 2012, pp. 119-124.
[64]
J. Lv et al., "Optimal beamforming in MISO cognitive channels with degraded message sets," in Wireless Communications and Networking Conference (WCNC), 2012 IEEE, 2012, pp. 538-543.
[65]
R. Blasco-Serrano, R. Thobaben and M. Skoglund, "Polar Codes for Coordination in Cascade Networks," in International Zurich Seminar on Communications : February 29-March 2, 2012, Sorell Hotel Zürichberg, Zurich, Switzerland proceedings, 2012, pp. 55-58.
[66]
F. Gabry et al., "Secure Broadcasting in Cooperative Cognitive Radio Networks," in 2012 Future Network and Mobile Summit, FutureNetw 2012, 2012.
[67]
R. Blasco-Serrano, R. Thobaben and M. Skoglund, "Bandwidth efficient compress-and-forward relaying based on joint source-channel coding," in 2011 IEEE Wireless Communications and Networking Conference, WCNC 2011, 2011, pp. 1800-1804.
[68]
Z. Si, R. Thobaben and M. Skoglund, "Bilayer LDPC convolutional codes for half-duplex relay channels," in 2011 IEEE International Symposium on Information Theory Proceedings, ISIT 2011, 2011, pp. 1464-1468.
[69]
F. Gabry, R. Thobaben and M. Skoglund, "Cooperation for secrecy in presence of an active eavesdropper : A game-theoretic analysis," in 8th International Symposium on Wireless Communication Systems (ISWCS), 2011, 2011, pp. 281-285.
[70]
F. Gabry, M. Skoglund and R. Thobaben, "Outage Performance and Power Allocation for Decode-and-Forward Relaying and Cooperative Jamming for the Wiretap Channel," in 2011 IEEE International Conference on Communications Workshops, ICC 2011 Workshops, 2011.
[71]
F. Gabry, R. Thobaben and M. Skoglund, "Outage Performances for Amplify-and-Forward, Decode-and-Forward and Cooperative Jamming Strategies for the Wiretap Channel," in 2011 IEEE Wireless Communications and Networking Conference, WCNC 2011, 2011, pp. 1328-1333.
[72]
Z. Si et al., "Rate-compatible LDPC convolutional codes for capacity-approaching hybrid ARQ," in 2011 IEEE Information Theory Workshop (ITW), 2011, pp. 513-517.
[73]
Z. Si, R. Thobaben and M. Skoglund, "A practical approach to adaptive coding for the three-node relay channel," in IEEE Wireless Communications and Networking Conference, 2010.
[74]
Z. Si, R. Thobaben and M. Skoglund, "Adaptive channel coding for the three-node relay channel with limited channel-state information," in Final Program and Abstract Book - 4th International Symposium on Communications, Control, and Signal Processing, 2010.
[75]
P. Fouillot, C. J. Le Martret and R. Thobaben, "Adaptive relaying strategies for collaborative spectrum sensing," in 2010 Proceedings of the 5th International Conference on Cognitive Radio Oriented Wireless Networks and Communications, CROWNCom 2010, 2010, p. 5577676.
[76]
R. Blasco-Serrano, R. Thobaben and M. Skoglund, "Compress-and-forward relaying based on symbol-wise joint source-channel coding," in IEEE International Conference on Communications, 2010, pp. 1-5.
[77]
M. Andersson et al., "Equivocation of Eve using two edge type LDPC codes for the binary erasure wiretap channel," in 2010 Conference Record of the Forty Fourth Asilomar Conference on Signals, Systems and Computers (ASILOMAR), 2010, pp. 2045-2049.
[78]
Z. Si, R. Thobaben and M. Skoglund, "Instantaneous relaying with bit-interleaved coded modulation : Design and optimization," in 2010 IEEE 6th International Symposium on Turbo Codes and Iterative Information Processing (ISTC), 2010, pp. 221-225.
[79]
K. Kansanen et al., "Low complexity bandwidth compression mappings for sensor networks," in Final Program and Abstract Book : 4th International Symposium on Communications, Control and Signal Processing, 2010.
[80]
R. Thobaben, "Non-binary joint network/channel coding for multi-user ARQ," in 5th International ICST Conference on Communications and Networking in China (CHINACOM), 2010, 2010.
[81]
E. G. Larsson, R. Thobaben and G. Wang, "On diversity combining with unknown channel state information and unknown noise variance," in IEEE Wireless Communications and Networking Conference, 2010.
[82]
R. Blasco-Serrano et al., "Polar codes for compress-and-forward in binary relay channels," in 44th Asilomar Conference on Signals, Systems and Computers, Asilomar 2010, 2010, pp. 1743-1747.
[83]
K. Kittichokechai et al., "Source and channel coding with action-dependent partially known two-sided state information," in IEEE International Symposium on Information Theory - Proceedings, 2010, pp. 629-633.
[84]
R. Thobaben, "Joint network/channel coding for bandwidth-efficient multi-user ARQ," in SPAWC : 2009 IEEE 10TH WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS, 2009, pp. 419-423.
[85]
Z. Si, R. Thobaben and M. Skoglund, "ON DISTRIBUTED SERIALLY CONCATENATED CODES," in SPAWC : 2009 IEEE 10TH WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS, 2009, pp. 653-657.
[86]
V. Rathi et al., "Two edge type LDPC codes for the wiretap channel," in Conference Record - Asilomar Conference on Signals, 2009, pp. 834-838.
[87]
R. Thobaben, "A Tutorial Introduction to Iterative Source-Channel Decoding," in 2008 ITG Conference on Voice Communication (SprachKommunikation), 2008.
[88]
R. Thobaben, "Joint Network/Channel Coding for Multi-User Hybrid-ARQ," in 7th International ITG Conference on Source and Channel Coding (SCC), 2008, 2008.
[89]
R. Thobaben, L. Schmalen and P. Vary, "Joint Source-Channel Coding with Inner Irregular Codes," in 2008 IEEE INTERNATIONAL SYMPOSIUM ON INFORMATION THEORY PROCEEDINGS, 2008, pp. 1153-1157.
[90]
R. Thobaben, "On Distributed Codes with Noisy Relays," in 2008 42ND ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS AND COMPUTERS, 2008, pp. 1010-1014.
[91]
R. Thobaben, "A new transmitter concept for iteratively-decoded source-channel coding schemes," in 2007 IEEE 8TH WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS, 2007, pp. 480-484.
[92]
R. Thobaben, "EXIT functions for randomly punctured systematic codes," in 2007 IEEE INFORMATION THEORY WORKSHOP, 2007, pp. 24-29.
[93]
R. Thobaben and E. G. Larsson, "Sensor-network-aided cognitive radio : On the optimal receiver for estimate-and-forward protocols applied to the relay channel," in CONFERENCE RECORD OF THE FORTY-FIRST ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS & COMPUTERS, VOLS 1-5, 2007, pp. 777-781.
[94]
R. Thobaben and J. Kliewer, "Design considerations for iteratively-decoded source-channel coding schemes," in Proceedings of 44th Allerton Conference on Communications, Control, and Computing, 2006.
[95]
J. Mietzner, R. Thobaben and P. A. Hoeher, "Analysis of the expected error performance of cooperative wireless networks employing distributed space-time codes," in IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, 2004, pp. 2854-2858.
[96]
R. Thobaben and I. Land, "Blind quality estimation for corrupted source signals based on A-posteriori probabilities," in 2004 IEEE INTERNATIONAL SYMPOSIUM ON INFORMATION THEORY, PROCEEDINGS, 2004, pp. 304-304.
[97]
R. Thobaben and J. Kliewer, "Robust transmission of variable-length encoded Markov sources using rate-1 channel coding and efficient iterative source-channel decoding," in 12th European Signal Processing Conference (EUSIPCO ’04), 2004, pp. 881-884.
[98]
J. Kliewer and R. Thobaben, "A-posteriori probability decoding of variable-length codes using a three-dimensional trellis representation," in IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, 2003, pp. 2213-2217.
[99]
R. Thobaben and J. Kliewer, "On iterative source-channel decoding for variable-length encoded Markov sources using a bit-level trellis," in 2003 4TH IEEE WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS - SPAWC 2003, 2003, pp. 50-54.
[100]
J. Kliewer and R. Thobaben, "Combining FEC and optimal soft-input source decoding for the reliable transmission of correlated variable-length encoded signals," in DATA COMPRESSION CONFERENCE, PROCEEDINGS, 2002, pp. 83-91.
[101]
J. Kliewer and R. Thobaben, "On the utilization of residual source redundancy for iterative joint source-channel decoding of variable-length codes," in ISIT : 2002 IEEE INTERNATIONAL SYMPOSIUM ON INFORMATION THEORY, PROCEEDINGS, 2002, pp. 199-199.

Kapitel i böcker

[102]
A. G. I. Amat and R. Thobaben, "An Introduction to Distributed Channel Coding," in Channel coding : theory, algorithms, and applications, SAN DIEGO : ELSEVIER ACADEMIC PRESS INC, 2014, pp. 399-450.

Icke refereegranskade

Kapitel i böcker

[103]
G. Caso et al., "Cooperative Sensing of Spectrum Opportunities," in Opportunistic Spectrum Sharing and White Space Access : The Practical Reality, : Wiley-Blackwell, 2015, pp. 143-165.
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