2008 | ||
---|---|---|
36 | EE | João Pedro Sousa, Vahe Poladian, David Garlan, Bradley R. Schmerl, Peter Steenkiste: Steps toward activity-oriented computing. IPDPS 2008: 1-5 |
35 | EE | João Pedro Sousa, Bradley R. Schmerl, Vahe Poladian, Alexander Brodsky: uDesign: End-User Design Applied to Monitoring and Control Applications for Smart Spaces. WICSA 2008: 71-80 |
34 | EE | Marwan Abi-Antoun, Jonathan Aldrich, Nagi H. Nahas, Bradley R. Schmerl, David Garlan: Differencing and merging of architectural views. Autom. Softw. Eng. 15(1): 35-74 (2008) |
2007 | ||
33 | EE | Vahe Poladian, David Garlan, Mary Shaw, M. Satyanarayanan, Bradley R. Schmerl, João Pedro Sousa: Leveraging Resource Prediction for Anticipatory Dynamic Configuration. SASO 2007: 214-223 |
32 | EE | David Garlan, Bradley R. Schmerl: The Radar Architecture for Personal Cognitive Assistance. International Journal of Software Engineering and Knowledge Engineering 17(2): 171-190 (2007) |
2006 | ||
31 | EE | Marwan Abi-Antoun, Jonathan Aldrich, Nagi H. Nahas, Bradley R. Schmerl, David Garlan: Differencing and Merging of Architectural Views. ASE 2006: 47-58 |
30 | David Garlan, Bradley R. Schmerl: An Architecture for Personal Cognitive Assistance. SEKE 2006: 91-97 | |
29 | EE | Bradley R. Schmerl, Jonathan Aldrich, David Garlan, Rick Kazman, Hong Yan: Discovering Architectures from Running Systems. IEEE Trans. Software Eng. 32(7): 454-466 (2006) |
2005 | ||
28 | João Pedro Sousa, Vahe Poladian, David Garlan, Bradley R. Schmerl: Capitalizing on Awareness of User Tasks for Guiding Self-Adaptation. CAiSE Workshops (2) 2005: 83-96 | |
27 | EE | Bradley R. Schmerl, David Garlan, Hong Yan: Dynamically discovering architectures with DiscoTect. ESEC/SIGSOFT FSE 2005: 103-106 |
26 | EE | Marwan Abi-Antoun, Jonathan Aldrich, David Garlan, Bradley R. Schmerl, Nagi H. Nahas, Tony Tseng: Modeling and implementing software architecture with acme and archJava. ICSE 2005: 676-677 |
25 | EE | David Garlan, William K. Reinholtz, Bradley R. Schmerl, Nicholas D. Sherman, Tony Tseng: Bridging the Gap between Systems Design. SEW 2005: 34-46 |
24 | EE | Shang-Wen Cheng, David Garlan, Bradley R. Schmerl: Making Self-Adaptation an Engineering Reality. Self-star Properties in Complex Information Systems 2005: 158-173 |
23 | EE | Marwan Abi-Antoun, Jonathan Aldrich, David Garlan, Bradley R. Schmerl, Nagi H. Nahas: Semi-Automated Incremental Synchronization between Conceptual and Implementation Level Architectures. WICSA 2005: 265-268 |
22 | EE | Marwan Abi-Antoun, Jonathan Aldrich, David Garlan, Bradley R. Schmerl, Nagi H. Nahas, Tony Tseng: Improving system dependability by enforcing architectural intent. ACM SIGSOFT Software Engineering Notes 30(4): 1-7 (2005) |
2004 | ||
21 | EE | David Garlan, Bradley R. Schmerl: Using Architectural Models at Runtime: Research Challenges. EWSA 2004: 200-205 |
20 | EE | Shang-Wen Cheng, An-Cheng Huang, David Garlan, Bradley R. Schmerl, Peter Steenkiste: Rainbow: Architecture-Based Self-Adaptation with Reusable Infrastructure. ICAC 2004: 276-277 |
19 | EE | Hong Yan, David Garlan, Bradley R. Schmerl, Jonathan Aldrich, Rick Kazman: DiscoTect: A System for Discovering Architectures from Running Systems. ICSE 2004: 470-479 |
18 | EE | Bradley R. Schmerl, David Garlan: AcmeStudio: Supporting Style-Centered Architecture Development. ICSE 2004: 704-705 |
17 | EE | Jonathan Aldrich, David Garlan, Bradley R. Schmerl, Tony Tseng: Modeling and implementing software architecture with acme and archJava. OOPSLA Companion 2004: 156-157 |
16 | EE | Jonathan Aldrich, David Garlan, Bradley R. Schmerl, Tony Tseng: Modeling and implementing software architecture with acme and archJava. OOPSLA Companion 2004: 6-7 |
15 | EE | Shang-Wen Cheng, An-Cheng Huang, David Garlan, Bradley R. Schmerl, Peter Steenkiste: An Architecture for Coordinating Multiple Self-Management Systems. WICSA 2004: 243-254 |
14 | EE | Roshanak Roshandel, Bradley R. Schmerl, Nenad Medvidovic, David Garlan, Dehua Zhang: Understanding Tradeoffs among Different Architectural Modeling Approaches. WICSA 2004: 47-56 |
13 | EE | David Garlan, Vahe Poladian, Bradley R. Schmerl, João Pedro Sousa: Task-based self-adaptation. WOSS 2004: 54-57 |
12 | EE | David Garlan, Shang-Wen Cheng, An-Cheng Huang, Bradley R. Schmerl, Peter Steenkiste: Rainbow: Architecture-Based Self-Adaptation with Reusable Infrastructure. IEEE Computer 37(10): 46-54 (2004) |
2002 | ||
11 | EE | Shang-Wen Cheng, David Garlan, Bradley R. Schmerl, João Pedro Sousa, Bridget Spitznagel, Peter Steenkiste, Ningning Hu: Software Architecture-Based Adaptation for Pervasive Systems. ARCS 2002: 67-82 |
10 | EE | Shang-Wen Cheng, David Garlan, Bradley R. Schmerl, Peter Steenkiste, Ningning Hu: Software Architecture-Based Adaptation for Grid Computing. HPDC 2002: 389-398 |
9 | EE | Bradley R. Schmerl, David Garlan: Exploiting architectural design knowledge to support self-repairing systems. SEKE 2002: 241-248 |
8 | EE | David Garlan, Shang-Wen Cheng, Bradley R. Schmerl: Increasing System Dependability through Architecture-Based Self-Repair. WADS 2002: 61-89 |
7 | Shang-Wen Cheng, David Garlan, Bradley R. Schmerl, João Pedro Sousa, Bridget Spitznagel, Peter Steenkiste: Using Architectural Style as a Basis for System Self-repair. WICSA 2002: 45-59 | |
6 | EE | David Garlan, Bradley R. Schmerl: Model-based adaptation for self-healing systems. WOSS 2002: 27-32 |
2000 | ||
5 | EE | Alan Kaplan, John V. E. Ridgway, Bradley R. Schmerl, Krishnan Sridhar, Jack C. Wileden: Toward Pure Polylingual Persistence. POS 2000: 70-83 |
1997 | ||
4 | Bradley R. Schmerl, Chris D. Marlin: Versioning and Consistency for Dynamically Composed Configurations. SCM 1997: 49-65 | |
1996 | ||
3 | EE | Bradley R. Schmerl, Chris D. Marlin: Consistency Issues in Partially Bound Dynamically Composed Systems. ASYNC 1996: 183-191 |
2 | EE | Bradley R. Schmerl, Chris D. Marlin: Consistency Issues in Partially Bound Dynamically Composed Systems. Australian Software Engineering Conference 1996: 183-191 |
1995 | ||
1 | Bradley R. Schmerl, Chris D. Marlin: Designing Configuration Management Facilities for Dynamically Bound Systems. SCM 1995: 88-100 |