 | 2011 |
| 14 |  | Can Zhang,
Hao-peng Chen,
Jinbo Du:
A Tabu Search Approach for Dynamic Service Substitution in SOA Applications.
APSCC 2011: 284-289 |
| 13 |  | Can Zhang,
Hao-peng Chen,
Shuotao Gao:
ALARM: Autonomic Load-Aware Resource Management for P2P Key-Value Stores in Cloud.
DASC 2011: 404-410 |
| 2010 |
| 12 |  | Hao-peng Chen,
Shu-jian Wang,
Shao-chong Li:
SRMC: A Model for Web Services Registry with Multilevel Caches.
APSCC 2010: 199-205 |
| 11 |  | Jun-cheng Yang,
Hao-peng Chen:
A behavior-aware matchmaking model for semantic Web services discovery.
NCM 2010: 183-188 |
| 10 |  | Shao-chong Li,
Hao-peng Chen,
Xi Chen:
A Mechanism for Web Service Selection and Recommendation Based on Multi-QoS Constraints.
SERVICES 2010: 221-228 |
| 9 |  | Hao-peng Chen,
Shao-chong Li:
SRC: A service registry on cloud providing behavior-aware and QoS-aware service discovery.
SOCA 2010: 1-4 |
| 8 |  | Hao-peng Chen,
Can Zhang,
Guang Yang:
A Model for Managing and Discovering Services Based on Dynamic Quality of Services.
JNW 5(8): 888-895 (2010) |
| 2009 |
| 7 |  | Meng Li,
Hao-peng Chen,
Nan Wang:
The description and calculation of quality of composite services.
APSCC 2009: 385-390 |
| 6 |  | Hao-peng Chen,
Guang Yang,
Can Zhang:
A Closed-Loop Mechanism for Service Evaluating and Discovering on the Internet.
NCM 2009: 1-8 |
| 2008 |
| 5 |  | Guang Yang,
Hao-peng Chen:
An Extensible Computing Model for Reputation Evaluation Based on Objective and Automatic Feedbacks.
ALPIT 2008: 585-592 |
| 4 |  | Lu-yi Guo,
Hao-peng Chen,
Guang Yang,
Ruo-yu Fei:
A QoS Evaluation Algorithm for Web Service Ranking Based on Artificial Neural Network.
CSSE (2) 2008: 381-384 |
| 3 |  | Shu-jia Wang,
Hao-peng Chen:
A Web Service Selecting Model Based on Measurable QoS Attributes of Client-Side.
CSSE (2) 2008: 385-389 |
| 2 |  | Jiang Ma,
Hao-peng Chen:
A Reliability Evaluation Framework on Composite Web Service.
SOSE 2008: 123-128 |
| 1 |  | Yang Shuo,
Hao-peng Chen:
An Improving Fault Detection Mechanism in Service-Oriented Applications Based on Queuing Theory.
SOSE 2008: 245-250 |