 | 2007 |
| 25 |  | Jae-Min Seol,
Seong-Whan Kim:
Scalable and Statistically Secure Fingerprinting Scheme for Mobile Game Content Distribution.
CIT 2007: 441-446 |
| 24 |  | Jae-Min Seol,
Seong-Whan Kim:
Collision-Resilient Symbol Based Extension of Query Tree Protocol for Fast RFID Tag Identification.
ICOIN 2007: 513-522 |
| 2006 |
| 23 |  | Jae-Min Seol,
Seong-Whan Kim:
Collision-Resilient Multi-state Query Tree Protocol for Fast RFID Tag Identification.
CIS 2006: 733-742 |
| 22 |  | Ki-Hong Ko,
Seong-Whan Kim:
Improvement of Film Scratch Inpainting Algorithm Using Sobel Based Isophote Computation over Hilbert Scan Line.
CIS 2006: 924-934 |
| 21 |  | Ki-Hong Ko,
Seong-Whan Kim:
Efficient Inpainting of Old Film Scratch using Sobel Edge Operator based Isophote Computation.
CIT 2006: 124 |
| 20 |  | Jae-Min Seol,
Seong-Whan Kim:
Efficient Collision-Resilient RFID Tag Identification using Balanced Incomplete Block Design Code.
CIT 2006: 220 |
| 19 |  | Seong-Whan Kim,
Ki-Hong Ko:
Kalman Filter Based Dead Reckoning Algorithm for Minimizing Network Traffic Between Mobile Nodes in Wireless GRID.
EUC 2006: 162-170 |
| 18 |  | Jae-Min Seol,
Seong-Whan Kim:
Scalable Fingerprinting Scheme Using Statistically Secure Anti-collusion Code for Large Scale Contents Distribution.
EUC 2006: 560-569 |
| 17 |  | Ki-Hong Ko,
Seong-Whan Kim:
Kalman Filter Based H.264 Motion Vector Recovery for Error Resilient Video Service over Mobile GRID.
ICDCIT 2006: 168-179 |
| 16 |  | Jae-Min Seol,
Seong-Whan Kim:
Statistically Secure Anti-Collusion Code Design for Median Attack Robustness for Practical Fingerprinting.
Information Hiding 2006: 328-342 |
| 15 |  | Seong-Whan Kim,
Ki-Hong Ko:
Kalman Filter Based Dead Reckoning Algorithm for Minimizing Network Traffic Between Mobile Game Users in Wireless GRID.
PRICAI 2006: 61-70 |
| 14 |  | Seong-Whan Kim,
Ki-Hong Ko:
Efficient Optimization of Inpainting Scheme and Line Scratch Detection for Old Film Restoration.
PRICAI 2006: 623-631 |
| 2005 |
| 13 |  | Jae-Min Seol,
Seong-Whan Kim:
Scalable and Robust Fingerprinting Scheme Using Statistically Secure Extension of Anti-collusion Code.
CIS (2) 2005: 1086-1091 |
| 12 |  | Seong-Whan Kim,
HyunSung Sung:
An Improvement of Auto-correlation Based Video Watermarking Scheme Using Independent Component Analysis.
CIS (2) 2005: 643-648 |
| 11 |  | Jae-Min Seol,
Seong-Whan Kim:
Statistically Secure Extension of Anti-collusion Code Fingerprinting.
ICDCIT 2005: 404-409 |
| 10 |  | Hyun-Seong Sung,
Seong-Whan Kim:
An Improvement of Auto-Correlation Based Video Watermarking Scheme Using Perceptual Masking for Motion.
ICDCIT 2005: 410-419 |
| 9 |  | Seong-Whan Kim,
Hyun-Jin Park,
Hyun-Seong Sung:
A Natural Modification of Autocorrelation Based Video Watermarking Scheme Using ICA for Better Geometric Attack Robustness.
ICNC (2) 2005: 451-460 |
| 8 |  | Jae-Min Seol,
Seong-Whan Kim:
A Scalable Fingerprinting Scheme for Tracing Traitors/Colluders in Large Scale Contents Distribution Environments.
ISDA 2005: 228-233 |
| 7 |  | Ki-Hong Ko,
Seong-Whan Kim:
Kalman Filter Based Error Resilience for H.264 Motion Vector Recovery.
PCM (1) 2005: 664-674 |
| 6 |  | Seong-Whan Kim,
HyunSung Sung:
Perceptually Tuned Auto-correlation Based Video Watermarking Using Independent Component Analysis.
PCM (2) 2005: 360-370 |
| 5 |  | Hyon-Gook Kim,
Seong-Whan Kim:
An Improvement of Dead Reckoning Algorithm Using Kalman Filter for Minimizing Network Traffic of 3D On-Line Games.
PCM (2) 2005: 676-687 |
| 2004 |
| 4 |  | Seong-Whan Kim,
Shan Suthaharan:
Perceptually Tuned Packet Scheduler for Video Streaming for DAB Based Access GRID.
GCC 2004: 967-970 |
| 3 |  | Seong-Whan Kim,
Shan Suthaharan:
An Entropy Masking Model for Multimedia Content Watermarking.
HICSS 2004 |
| 2000 |
| 2 |  | Shan Suthaharan,
Seong-Whan Kim,
Heung-Kyu Lee,
Sivapragasam Sathananthan:
Perceptually tuned robust watermarking scheme for digital images.
Pattern Recognition Letters 21(2): 145-149 (2000) |
| 1999 |
| 1 |  | Seong-Whan Kim,
Shan Suthaharan,
Geun-Ho Lee,
Heung-Kyu Lee,
K. R. Rao:
Joint Source/Channel Coding to Maximize Perceptual Video Quality on Packet Networks.
Real-Time Imaging 5(5): 329-339 (1999) |