 | 2011 |
| 13 |  | Nitin Maslekar,
Joseph Mouzna,
Houda Labiod,
Manoj Devisetty,
M. M. Manohara Pai:
Modified C-DRIVE: Clustering based on direction in vehicular environment.
Intelligent Vehicles Symposium 2011: 845-850 |
| 12 |  | A. K. Karunakar,
M. M. Manohara Pai:
Interactive region of interest scalability for wavelet based scalable video coder.
J. Real-Time Image Processing 6(2): 93-100 (2011) |
| 2010 |
| 11 |  | K. G. Aravind,
M. M. Manohara Pai:
A Novel Adaptable Routing Protocol for Wireless Sensor Networks.
BWCCA 2010: 373-378 |
| 10 |  | Shobha Poojary,
M. M. Manohara Pai:
Multipath Data Transfer in Wireless Multimedia Sensor Network.
BWCCA 2010: 379-383 |
| 9 |  | Vijay S. Rajpurohit,
M. M. Manohara Pai:
Parallel implementation of 3D object reconstruction in a Robotic navigational environment.
ICARCV 2010: 816-821 |
| 8 |  | Nadia Brahmi,
Mounir Boussedjra,
Joseph Mouzna,
A. K. V. Cornelio,
M. M. Manohara Pai:
An improved map-based location service for vehicular ad hoc networks.
WiMob 2010: 21-26 |
| 2009 |
| 7 |  | Mounir Boussedjra,
Joseph Mouzna,
Pradeep Bangera,
M. M. Manohara Pai:
Map-Based Location Service for VANET.
ICUMT 2009: 1-6 |
| 6 |  | Vijay S. Rajpurohit,
M. M. Manohara Pai:
Parallel Object Motion Prediction in a Robotic Navigational Environment.
PaCT 2009: 435-444 |
| 5 |  | A. K. Karunakar,
M. M. Manohara Pai:
Motion-compensated temporal filtering with optimized motion estimation.
J. Real-Time Image Processing 4(4): 329-338 (2009) |
| 2008 |
| 4 |  | Vijay S. Rajpurohit,
M. M. Manohara Pai:
An Optimized Fuzzy Based Short Term Object Motion Prediction for Real-Life Robot Navigation Environment.
VISUAL 2008: 114-125 |
| 3 |  | A. K. Karunakar,
M. M. Manohara Pai:
Inter-frame and Inter-layer Motion Prediction during Fast Block Motion Estimation in MCTF.
VISUAL 2008: 150-154 |
| 2007 |
| 2 |  | A. K. Karunakar,
M. M. Manohara Pai:
Computationally Efficient MCTF for MC-EZBC Scalable Video Coding Framework.
PReMI 2007: 666-673 |
| 2001 |
| 1 |  | P. Nagabhushan,
M. M. Manohara Pai:
Cognition of free space for planning the shortest path: A framed free space approach.
Pattern Recognition Letters 22(9): 971-982 (2001) |