2009 |
34 | EE | Bahar Akbal-Delibas,
Pruet Boonma,
Junichi Suzuki:
Extensible and Precise Modeling for Wireless Sensor Networks.
UNISCON 2009: 551-562 |
2008 |
33 | EE | Pruet Boonma,
Junichi Suzuki:
MONSOON: A Coevolutionary Multiobjective Adaptation Framework for Dynamic Wireless Sensor Networks.
HICSS 2008: 497 |
32 | EE | Hiroshi Wada,
Pruet Boonma,
Junichi Suzuki:
Macroprogramming Spatio-temporal Event Detection and Data Collection in Wireless Sensor Networks: An Implementation and Evaluation Study.
HICSS 2008: 498 |
2007 |
31 | EE | Pruet Boonma,
Qi Han,
Junichi Suzuki:
Leveraging Biologically-inspired Mobile Agents Supporting Composite Needs of Reliability and Timeliness in Sensor Applications.
FBIT 2007: 851-860 |
30 | EE | Hiroshi Wada,
Pruet Boonma,
Junichi Suzuki:
A SpaceTime Oriented Macroprogramming Paradigm for Push-Pull Hybrid Sensor Networking.
ICCCN 2007: 868-875 |
29 | EE | Hiroshi Wada,
Junichi Suzuki,
Katsuya Oba:
A Feature Modeling Support for Non-Functional Constraints in Service Oriented Architecture.
IEEE SCC 2007: 187-195 |
28 | EE | Chonho Lee,
Hiroshi Wada,
Junichi Suzuki:
Towards a Biologically-inspired Architecture for Self-Regulatory and Evolvable Network Applications.
Advances in Biologically Inspired Information Systems 2007: 21-45 |
27 | EE | Pruet Boonma,
Junichi Suzuki:
BiSNET: A biologically-inspired middleware architecture for self-managing wireless sensor networks.
Computer Networks 51(16): 4599-4616 (2007) |
26 | EE | Paskorn Champrasert,
Junichi Suzuki:
Building Self-Configuring Data Centers with Cross Layer Coevolution.
JSW 2(5): 29-43 (2007) |
2006 |
25 | EE | Paskorn Champrasert,
Junichi Suzuki:
A Biologically-Inspired Autonomic Architecture for Self-Healing Data Centers.
COMPSAC (1) 2006: 103-112 |
24 | EE | Hiroshi Wada,
Junichi Suzuki,
Katsuya Oba:
A Service-Oriented Design Framework for Secure Network Applications.
COMPSAC (1) 2006: 359-368 |
23 | EE | Paskorn Champrasert,
Junichi Suzuki:
SymbioticSphere: A Biologically-Inspired Autonomic Architecture for Self-Managing Network Systems.
COMPSAC (2) 2006: 350-352 |
22 | EE | Hiroshi Wada,
Junichi Suzuki:
A Domain Specific Modeling Framework for Secure Network Applications.
COMPSAC (2) 2006: 353-355 |
21 | EE | Chonho Lee,
Junichi Suzuki:
Biologically-Inspired Design of Autonomous and Adaptive Grid Services.
ICAS 2006: 20 |
20 | EE | Hiroshi Wada,
Junichi Suzuki,
Katsuya Oba:
A Model-Driven Development Framework for Non-Functional Aspects in Service Oriented Grids.
ICAS 2006: 30 |
19 | EE | Paskorn Champrasert,
Junichi Suzuki:
Towards Green Grids: A Biologically-Inspired Adaptive Architecture for Power Efficient Server Farms.
ICAS 2006: 39 |
18 | EE | Pruet Boonma,
Paskorn Champrasert,
Junichi Suzuki:
BiSNET: A Biologically-Inspired Architecture forWireless Sensor Networks.
ICAS 2006: 54 |
17 | EE | Hiroshi Wada,
Junichi Suzuki,
Katsuya Oba:
Modeling Non-Functional Aspects in Service Oriented Architecture.
IEEE SCC 2006: 222-229 |
16 | EE | Pruet Boonma,
Junichi Suzuki:
Biologically-Inspired Adaptive Data Aggregation for Multi-Modal Wireless Sensor Networks.
LCN 2006: 377-386 |
15 | EE | Paskorn Champrasert,
Junichi Suzuki:
SymbioticSphere: A Biologically-Inspired Autonomic Architecture for Self-Adaptive and Self-Healing Server Farms.
WOWMOM 2006: 469-474 |
2005 |
14 | EE | Chonho Lee,
Paskorn Champrasert,
Junichi Suzuki:
A Biologically-inspired Adaptation Mechanism for Autonomic Grid Networks.
CLUSTER 2005: 1 |
13 | EE | Paskorn Champrasert,
Chonho Lee,
Junichi Suzuki:
SymbioticSphere: Towards an Autonomic Grid Network System.
CLUSTER 2005: 1-2 |
12 | EE | Hiroshi Wada,
Junichi Suzuki:
Modeling Turnpike Frontend System: A Model-Driven Development Framework Leveraging UML Metamodeling and Attribute-Oriented Programming.
MoDELS 2005: 584-600 |
11 | EE | Hiroshi Wada,
Junichi Suzuki,
Katsuya Oba:
Modeling turnpike: a model-driven framework for domain-specific software development.
OOPSLA Companion 2005: 128-129 |
10 | EE | Junichi Suzuki,
Tatsuya Suda:
A middleware platform for a biologically inspired network architecture supporting autonomous and adaptive applications.
IEEE Journal on Selected Areas in Communications 23(2): 249-260 (2005) |
9 | EE | Junichi Suzuki:
Biologically-inspired adaptation of autonomic network applications.
Parallel Algorithms Appl. 20(2): 127-146 (2005) |
2004 |
8 | EE | Ken-ichiroh Kawakami,
Shigetoshi Sameshima,
Katsumi Kawano,
Junichi Suzuki,
Tatsuya Suda,
Stephan Steglich,
Seiichi Shin:
SDO Model and its Standardization Activity.
SAINT Workshops 2004: 342-347 |
7 | EE | Junichi Suzuki,
Tatsuya Suda:
Middleware Support for Super Distributed Autonomic Services in Pervasive Networks.
SAINT Workshops 2004: 375-381 |
1999 |
6 | EE | Junichi Suzuki,
Yoshikazu Yamamoto:
SoftDock: A Distributed Collaborative Platform for Model-Based Software Development.
DEXA Workshop 1999: 6772-677 |
5 | | Junichi Suzuki,
Yoshikazu Yamamoto:
Extending UML with Aspects: Aspect Support in the Design Phase.
ECOOP Workshops 1999: 299-300 |
4 | | Junichi Suzuki,
Yoshikazu Yamamoto:
Extending UML for Modelling Reflective Software Componentsa.
UML 1999: 220-235 |
3 | | Junichi Suzuki,
Yoshikazu Yamamoto:
Leveraging Distributed Software Development.
IEEE Computer 32(9): 59-65 (1999) |
1998 |
2 | EE | Junichi Suzuki,
Yoshikazu Yamamoto:
Managing the Software Design Documents with XML.
SIGDOC 1998: 127-136 |
1 | | Junichi Suzuki,
Yoshikazu Yamamoto:
Making UML Models Interoperables with UXF.
UML 1998: 78-91 |