 | 2011 |
| 13 |  | Hongya Wang,
Jie Jin,
Zhijun Wang,
LihChyun Shu:
On a novel property of the earliest deadline first algorithm.
FSKD 2011: 197-201 |
| 12 |  | Jie Jin,
Lei Pan,
Chongjun Wang,
Junyuan Xie:
A Center-Based Community Detection Method in Weighted Networks.
ICTAI 2011: 513-518 |
| 2010 |
| 11 |  | Taobin Jin,
Jie Jin,
Yuan Li,
Kejia Li,
Shan Yang:
Intelligent model of microwave low-pass filter using PDGS with defected rectangles.
ICNC 2010: 1705-1708 |
| 10 |  | Taobin Jin,
Jie Jin,
Ruipu Yao,
Kejia Li,
Yizhen Zhang:
RBF model of microwave filter using PDGS with defected rectangles.
ICNC 2010: 519-522 |
| 9 |  | Taobin Jin,
Jie Jin,
Ruipu Yao,
Hongmeng Ji,
Yizhen Zhang:
Transmission properties study of PDGS with defected triangles.
WCNIS 2010: 37-40 |
| 8 |  | Chengjian Zhang,
Tingting Qin,
Jie Jin:
The extended Pouzet-Runge-Kutta methods for nonlinear neutral delay-integro-differential equations.
Computing 90(1-2): 57-71 (2010) |
| 7 |  | Jie Jin,
Chi-Ying Tsui:
An Energy Efficient Layered Decoding Architecture for LDPC Decoder.
IEEE Trans. VLSI Syst. 18(8): 1185-1195 (2010) |
| 2009 |
| 6 |  | Jie Jin,
Chi-Ying Tsui:
Improving the Hardware Utilization Efficiency of Partially Parallel LDPC Decoder with Scheduling and Sub-matrix Decomposition.
ISCAS 2009: 2233-2236 |
| 5 |  | Weibo Li,
Yanbing Zhang,
Jie Jin:
Research of the Service Design Approach Based on SCA_OSGi.
SSME 2009: 392-395 |
| 4 |  | Chengjian Zhang,
Tingting Qin,
Jie Jin:
An improvement of the numerical stability results for nonlinear neutral delay-integro-differential equations.
Applied Mathematics and Computation 215(2): 548-556 (2009) |
| 2008 |
| 3 |  | Jie Jin,
Chi-Ying Tsui:
A low power layered decoding architecture for LDPC decoder implementation for IEEE 802.11n LDPC codes.
ISLPED 2008: 253-258 |
| 2007 |
| 2 |  | Jie Jin,
Chi-Ying Tsui:
Low-Power Limited-Search Parallel State Viterbi Decoder Implementation Based on Scarce State Transition.
IEEE Trans. VLSI Syst. 15(10): 1172-1176 (2007) |
| 2006 |
| 1 |  | Jie Jin,
Chi-Ying Tsui:
A low power Viterbi decoder implementation using scarce state transition and path pruning scheme for high throughput wireless applications.
ISLPED 2006: 406-411 |