2007 |
12 | EE | Yi Li,
Zhong Wang,
Zhong Wang,
Ruomei Wang,
Aihua Mao,
Yubei Lin:
FeaFur: A Computer Software Package for Simulating Human Thermophysiological Responses in Dynamic Thermal Environment.
Computational Textile 2007: 223-233 |
11 | EE | Yi Li,
Zhong Wang,
Zhong Wang,
Ruomei Wang,
Aihua Mao,
Yubei Lin:
FeaFur: A Computer Software Package for Simulating Human Thermophysiological Responses in Dynamic Thermal Environment.
Computational Textile 2007: 223-233 |
2005 |
10 | EE | Zhong Wang,
Xiaobo Sharon Hu:
Energy-aware variable partitioning and instruction scheduling for multibank memory architectures.
ACM Trans. Design Autom. Electr. Syst. 10(2): 369-388 (2005) |
2004 |
9 | EE | Zhong Wang,
Jianwen Zhu:
Piecewise quadratic waveform matching with successive chord iteration.
ASP-DAC 2004: 274-279 |
8 | EE | Zhong Wang,
Xiaobo Sharon Hu:
Power Aware Variable Partitioning and Instruction Scheduling for Multiple Memory Banks.
DATE 2004: 312-317 |
2003 |
7 | EE | Zhong Wang,
Jianwen Zhu:
Transistor-Level Static Timing Analysis by Piecewise Quadratic Waveform Matching.
DATE 2003: 11026-11031 |
2001 |
6 | EE | Zhong Wang,
Edwin Hsing-Mean Sha,
Yuke Wang:
Optimal partitioning and balanced scheduling with the maximal overlap of data footprints.
ACM Great Lakes Symposium on VLSI 2001: 31-36 |
5 | EE | Zhong Wang,
Edwin Hsing-Mean Sha,
Xiaobo Hu:
Combined partitioning and data padding for scheduling multiple loop nests.
CASES 2001: 67-75 |
4 | | Zhong Wang,
Qingfeng Zhuge,
Edwin Hsing-Mean Sha:
Scheduling and partitioning for multiple loop nests.
ISSS 2001: 183-188 |
3 | EE | Zhong Wang,
Timothy W. O'Neil,
Edwin Hsing-Mean Sha:
Minimizing Average Schedule Length under Memory Constraints by Optimal Partitioning and Prefetching.
VLSI Signal Processing 27(3): 215-233 (2001) |
2000 |
2 | EE | Zhong Wang,
Michael Kirkpatrick,
Edwin Hsing-Mean Sha:
Optimal two level partitioning and loop scheduling for hiding memory latency for DSP applications.
DAC 2000: 540-545 |
1999 |
1 | EE | Zhong Wang,
Zhongxian Chi,
Chen-guang Wang:
MAC: A Component Reuse Architecture Based on Multi-Agent Adapter.
TOOLS (31) 1999: 267-272 |