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Dhananjai Madhava Rao
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2010 – 2019
- 2019
- [j15]Dhananjai Madhava Rao, Alexander Chernyakhovsky:
Automatic generation of agent-based models of migratory waterfowl for epidemiological analyses. Int. J. Comput. Aided Eng. Technol. 11(6): 747-762 (2019) - [j14]Dhananjai Madhava Rao, Julius Higiro:
Managing Pending Events in Sequential and Parallel Simulations Using Three-tier Heap and Two-tier Ladder Queue. ACM Trans. Model. Comput. Simul. 29(2): 9:1-9:28 (2019) - [c24]Dhananjai Madhava Rao, Sutharzan Sreeskandarajan, Chun Liang:
Accelerating Clustering using Approximate Spanning Tree and Prime Number Based Filter. IPDPS Workshops 2019: 166-174 - 2018
- [c23]Dhananjai Madhava Rao:
A parallel framework for ab initio transcript-clustering. ICSE (Companion Volume) 2018: 331-332 - [c22]Dhananjai Madhava Rao:
Performance comparison of Cross Memory Attach capable MPI vs. Multithreaded Optimistic Parallel Simulations. SIGSIM-PADS 2018: 37-48 - 2017
- [c21]Dhananjai Madhava Rao:
Music maker: Using music to introduce coding and concurrency to young learners. FIE 2017: 1-6 - [c20]Julius Higiro, Meseret Gebre, Dhananjai Madhava Rao:
Multi-tier Priority Queues and 2-tier Ladder Queue for Managing Pending Events in Sequential and Optimistic Parallel Simulations. SIGSIM-PADS 2017: 3-14 - 2016
- [j13]Neil Giridharan, Dhananjai Madhava Rao:
Eliciting Characteristics of H5N1 in High-Risk Regions Using Phylogeography and Phylodynamic Simulations. Comput. Sci. Eng. 18(4): 11-24 (2016) - [j12]Dhananjai Madhava Rao:
Efficient parallel simulation of spatially-explicit agent-based epidemiological models. J. Parallel Distributed Comput. 93-94: 102-119 (2016) - 2015
- [j11]Dhananjai Madhava Rao:
Computing Efficiency in Education. Computer 48(7): 76-79 (2015) - 2014
- [c19]Dhananjai Madhava Rao:
Accelerating parallel agent-based epidemiological simulations. SIGSIM-PADS 2014: 127-138 - 2012
- [c18]Yuan Zhang, Dhananjai Madhava Rao, Mufit Ozden, Jens Mueller, Praveen Raj Kumar, Chun Liang, John E. Karro:
Poster: De novo expression fragment assembly from Spanning Trees (EAST). ICCABS 2012: 1 - 2011
- [c17]Yuan Zhang, Dhananjai Madhava Rao, Jens Mueller, Mufit Ozden, Chun Liang, John E. Karro:
Workshop: Transcript assembly through a d2-based MST approach. ICCABS 2011: 279 - 2010
- [j10]Dhananjai Madhava Rao, J. C. Moler, Mufit Ozden, Y. Zhang, C. Liang, John E. Karro:
PEACE: Parallel Environment for Assembly and Clustering of Gene Expression. Nucleic Acids Res. 38(Web-Server-Issue): 737-742 (2010)
2000 – 2009
- 2009
- [j9]Dhananjai Madhava Rao, Alexander Chernyakhovsky, Victoria Rao:
Modeling and analysis of global epidemiology of avian influenza. Environ. Model. Softw. 24(1): 124-134 (2009) - 2008
- [j8]Dhananjai Madhava Rao, Philip A. Wilsey:
Predicting Performance Impacts due to Resolution Changes in Parallel Simulations. Simul. 84(10-11): 535-555 (2008) - [c16]Dhananjai Madhava Rao, Alexander Chernyakhovsky:
Parallel simulation of the global epidemiology of Avian Influenza. WSC 2008: 1583-1591 - 2006
- [j7]Dhananjai Madhava Rao, Philip A. Wilsey:
Accelerating ATM Simulations Using Dynamic Component Substitution (DCS). Simul. 82(4): 235-253 (2006) - [c15]Dhananjai Madhava Rao, Philip A. Wilsey:
Predicting Performance of Resolution Changes in Parallel Simulations. PADS 2006: 45-54 - [c14]Dhananjai Madhava Rao, Philip A. Wilsey:
Applying parallel, dynamic-resolution simulations to accelerate VLSI power estimation. WSC 2006: 694-702 - 2005
- [c13]Dhananjai Madhava Rao, Philip A. Wilsey:
Accelerating Spatially Explicit Simulations of Spread of Lyme Disease. Annual Simulation Symposium 2005: 251-258 - 2002
- [j6]Dale E. Martin, Radharamanan Radhakrishnan, Dhananjai Madhava Rao, Malolan Chetlur, Krishnan Subramani, Philip A. Wilsey:
Analysis and Simulation of Mixed-Technology VLSI Systems. J. Parallel Distributed Comput. 62(3): 468-493 (2002) - [j5]Dhananjai Madhava Rao, Philip A. Wilsey:
An ultra-large-scale simulation framework. J. Parallel Distributed Comput. 62(11): 1670-1693 (2002) - [j4]Dhananjai Madhava Rao, Philip A. Wilsey:
An Active Networks Simulation Environment. Simul. 78(7): 447-460 (2002) - [c12]Dhananjai Madhava Rao, Philip A. Wilsey:
Web-based simulation 2: performance prediction of dynamic component substitutions. WSC 2002: 816-824 - 2001
- [j3]Swaminathan Subramanian, Dhananjai Madhava Rao, Philip A. Wilsey:
Applying Multilevel Partitioning to Parallel Logic Simulation. Parallel Distributed Comput. Pract. 4(1) (2001) - [j2]Vijay Balakrishnan, Radharamanan Radhakrishnan, Dhananjai Madhava Rao, Nael B. Abu-Ghazaleh, Philip A. Wilsey:
A performance and scalability analysis framework for parallel discrete event simulators. Simul. Pract. Theory 8(8): 529-553 (2001) - [c11]Dhananjai Madhava Rao, Philip A. Wilsey:
Modeling and Simulation of Active Networks. Annual Simulation Symposium 2001: 177-184 - [c10]Dhananjai Madhava Rao, Harold W. Carter, Philip A. Wilsey:
Optimizing Costs of Web-based Modeling and Simulation. IPDPS 2001: 171 - [c9]Dhananjai Madhava Rao, Philip A. Wilsey:
Multi-Resolution Network Simulations Using Dynamic Component Substitution. MASCOTS 2001: 142-149 - 2000
- [j1]Dhananjai Madhava Rao, Radharamanan Radhakrishnan, Philip A. Wilsey:
Web-based network analysis and design. ACM Trans. Model. Comput. Simul. 10(1): 18-38 (2000) - [c8]Swaminathan Subramanian, Dhananjai Madhava Rao, Philip A. Wilsey:
Study of a Multilevel Approach to Partitioning for Parallel Logic Simulation. IPDPS 2000: 833-838 - [c7]Dhananjai Madhava Rao, Philip A. Wilsey:
Parallel Co-Simulation of Conventional and Active Networks. MASCOTS 2000: 291-298 - [c6]Dhananjai Madhava Rao, Philip A. Wilsey:
Dynamic component substitution in web-based simulation. WSC 2000: 1840-1848
1990 – 1999
- 1999
- [c5]Narayanan V. Thondugulam, Dhananjai Madhava Rao, Radharamanan Radhakrishnan, Philip A. Wilsey:
Relaxing Causal Constraints in PDES. IPPS/SPDP 1999: 696-700 - [c4]Dhananjai Madhava Rao, Philip A. Wilsey:
An Object-Oriented Framework for Parallel Simulation of Ultra-large Communication Networks. ISCOPE 1999: 37-48 - [c3]Dhananjai Madhava Rao, Philip A. Wilsey:
Simulation of Ultra-Large Communication Networks. MASCOTS 1999: 112-119 - 1998
- [c2]Radharamanan Radhakrishnan, Dale E. Martin, Malolan Chetlur, Dhananjai Madhava Rao, Philip A. Wilsey:
An Object-Oriented Time Warp Simulation Kernel. ISCOPE 1998: 13-23 - [c1]Dhananjai Madhava Rao, Narayanan V. Thondugulam, Radharamanan Radhakrishnan, Philip A. Wilsey:
Unsynchronized Parallel Discrete Event Simulation. WSC 1998: 1563-1570
Coauthor Index
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