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Guoyong Shi
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2020 – today
- 2024
- [j44]Qixu Xie, Guoyong Shi:
Multistage Op Amp design space exploration by g m / I D sampling and symbolic design equations. Int. J. Circuit Theory Appl. 52(3): 1358-1383 (2024) - [j43]Limin Hao, Guoyong Shi:
Finding the longest delay paths for the array-form multipliers using a genetic algorithm. Integr. 96: 102148 (2024) - 2023
- [j42]Guoyong Shi:
Automatic generation of macromodels and design equations for application to Op Amp design. Int. J. Circuit Theory Appl. 51(10): 4521-4549 (2023) - [j41]Tianshu Hou, Peining Zhen, Ngai Wong, Quan Chen, Guoyong Shi, Shuqi Wang, Hai-Bao Chen:
Multilayer Perceptron-Based Stress Evolution Analysis Under DC Current Stressing for Multisegment Wires. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 42(2): 544-557 (2023) - [j40]Bo Li, Qixu Xie, Guoyong Shi:
A Memristor Crossbar-Based Lyapunov Equation Solver. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 42(11): 4324-4328 (2023) - [j39]Limin Hao, Guoyong Shi:
Realizable Reduction of Multi-Port RCL Networks by Block Elimination. IEEE Trans. Circuits Syst. I Regul. Pap. 70(1): 399-412 (2023) - [j38]José Romero Hung, Chao Li, Taolei Wang, Jinyang Guo, Pengyu Wang, Chuanming Shao, Jing Wang, Guoyong Shi, Xiangwen Liu, Hanqing Wu:
DRAGON: Dynamic Recurrent Accelerator for Graph Online Convolution. ACM Trans. Design Autom. Electr. Syst. 28(1): 1:1-1:27 (2023) - 2022
- [j37]Bo Li, Guoyong Shi:
A CMOS rectified linear unit operating in weak inversion for memristive neuromorphic circuits. Integr. 87: 24-28 (2022) - [j36]Bo Li, Guoyong Shi:
A Native SPICE Implementation of Memristor Models for Simulation of Neuromorphic Analog Signal Processing Circuits. ACM Trans. Design Autom. Electr. Syst. 27(1): 6:1-6:24 (2022) - [c49]Guoyong Shi, Jungang Liang, Yong Cui:
A Supervised Learning Rule for Recurrent Spiking Neural Networks with Weighted Spikes. ICTAI 2022: 522-527 - [i1]Tianshu Hou, Peining Zhen, Ngai Wong, Quan Chen, Guoyong Shi, Shuqi Wang, Hai-Bao Chen:
Multilayer Perceptron Based Stress Evolution Analysis under DC Current Stressing for Multi-segment Wires. CoRR abs/2205.09065 (2022) - 2021
- [j35]Qixu Xie, Guoyong Shi:
An analytical gm/ID-based harmonic distortion prediction method for multistage operational amplifiers. Int. J. Circuit Theory Appl. 49(7): 2047-2073 (2021) - [j34]Guoyong Shi:
Sizing of multi-stage Op Amps by combining design equations with the gm/ID method. Integr. 79: 48-60 (2021) - [j33]Limin Hao, Guoyong Shi:
High-Dimensional Extension of the TICER Algorithm. IEEE Trans. Circuits Syst. I Regul. Pap. 68(11): 4722-4734 (2021) - [j32]José Romero Hung, Chao Li, Pengyu Wang, Chuanming Shao, Jinyang Guo, Jing Wang, Guoyong Shi:
ACE-GCN: A Fast Data-driven FPGA Accelerator for GCN Embedding. ACM Trans. Reconfigurable Technol. Syst. 14(4): 21:1-21:23 (2021) - [c48]Chen Dong, Limin Hao, Guoyong Shi, Zhenya Zhou, Minghou Cheng:
A Time Constant Estimation Method for Block RC Circuits with Application to Power Grid Analysis. ASICON 2021: 1-4 - [c47]Bo Li, Mingjie Yang, Guoyong Shi:
Design of Analog CMOS-Memristive Neural Network Circuits for Pattern Recognition. ASICON 2021: 1-4 - [c46]Liang Qi, Xinyu Qin, Sai-Weng Sin, Chixiao Chen, Fan Ye, Guoyong Shi, Guoxing Wang:
Advances in Continuous-time MASH ΔΣ Modulators. ASICON 2021: 1-4 - 2020
- [j31]Guoyong Shi:
Automatic Stage-form Circuit Reduction for Multistage Opamp Design Equation Generation. ACM Trans. Design Autom. Electr. Syst. 25(1): 2:1-2:26 (2020)
2010 – 2019
- 2019
- [j30]Ailin Zhang, Guoyong Shi:
Closed-Form Distortion Formulas for Continuous-Time Sigma-Delta Modulators. IEEE Access 7: 75642-75647 (2019) - [j29]Bo Li, Yonglei Zhao, Guoyong Shi:
A novel design of memristor-based bidirectional associative memory circuits using Verilog-AMS. Neurocomputing 330: 437-448 (2019) - [j28]Guoyong Shi:
Symbolic Distortion Analysis of Multistage Amplifiers. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(1): 369-382 (2019) - 2018
- [j27]Guoyong Shi:
Regression model based consensus for clock synchronisation of wireless sensor network. Int. J. Sens. Networks 26(3): 162-173 (2018) - [j26]Guoyong Shi:
Toward automated reasoning for analog IC design by symbolic computation - A survey. Integr. 60: 117-131 (2018) - [j25]Ailin Zhang, Guoyong Shi:
A fast symbolic SNR computation method and its Verilog-A implementation for Sigma-Delta modulator design optimization. Integr. 60: 190-203 (2018) - [j24]Guoyong Shi:
Generating the Closed-Form Second-Order Characteristics of Analog Differential Cells by Symbolic Perturbation. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(9): 2939-2950 (2018) - [c45]Hao Yu, Guoyong Shi:
Symbolic Circuit Reduction for Multistage Amplifier Macromodeling. APCCAS 2018: 247-250 - [c44]Yonglei Zhao, Guoyong Shi:
A Circuit Implementation Method for Memristor Crossbar with On-chip Training. APCCAS 2018: 451-454 - [c43]Xianghong Lin, Guoyong Shi:
A Supervised Multi-spike Learning Algorithm for Recurrent Spiking Neural Networks. ICANN (1) 2018: 222-234 - 2017
- [j23]Guoyong Shi, Ailin Zhang, Yanjie Gu:
A comparative study on using linear programming and simulated annealing in the optimal realization of a SC filter. Int. J. Circuit Theory Appl. 45(12): 2134-2148 (2017) - [j22]Guoyong Shi:
Topological Approach to Symbolic Pole-Zero Extraction Incorporating Design Knowledge. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 36(11): 1765-1778 (2017) - [j21]Guoyong Shi, Hanbin Hu, Shuwen Deng:
Topological Approach to Automatic Symbolic Macromodel Generation for Analog Integrated Circuits. ACM Trans. Design Autom. Electr. Syst. 22(3): 47:1-47:25 (2017) - [c42]Yonglei Zhao, Bo Li, Guoyong Shi:
A current-feedback method for programming memristor array in bidirectional associative memory. ISPACS 2017: 747-751 - [c41]Hao Yu, Guoyong Shi:
Developing a web-based symbolic circuit analysis tool for learning and design aid. SMACD 2017: 1-4 - 2016
- [j20]Ailin Zhang, Guoyong Shi:
An Automatic Integrator Macromodel Generation Method for Behavioral Simulation of SC Sigma-Delta Modulators. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 99-A(5): 908-916 (2016) - [j19]Lei Zeng, Xin Yi, Guoyong Shi, Mohamad Sawan, Guoxing Wang:
A high-voltage stimulation chip for wearable stroke rehabilitation systems. Int. J. Circuit Theory Appl. 44(8): 1589-1601 (2016) - [j18]Kai He, Sheldon X.-D. Tan, Hengyang Zhao, Xuexin Liu, Hai Wang, Guoyong Shi:
Parallel GMRES solver for fast analysis of large linear dynamic systems on GPU platforms. Integr. 52: 10-22 (2016) - [j17]Guoyong Shi:
On the Nonconvergence of the Vector Fitting Algorithm. IEEE Trans. Circuits Syst. II Express Briefs 63-II(8): 718-722 (2016) - [j16]Kai He, Sheldon X.-D. Tan, Hai Wang, Guoyong Shi:
GPU-Accelerated Parallel Sparse LU Factorization Method for Fast Circuit Analysis. IEEE Trans. Very Large Scale Integr. Syst. 24(3): 1140-1150 (2016) - 2015
- [j15]Guoyong Shi:
Two-graph analysis of pathological equivalent networks. Int. J. Circuit Theory Appl. 43(9): 1127-1146 (2015) - [j14]Hai-Bao Chen, Sheldon X.-D. Tan, David H. Shin, Xin Huang, Hai Wang, Guoyong Shi:
H2-matrix-based finite element linear solver for fast transient thermal analysis of high-performance ICs. Int. J. Circuit Theory Appl. 43(12): 1953-1970 (2015) - [c40]Guoyong Shi, Zhiwei Ke, Fuwu Yan, Jie Hu, Wenjie Yin, Yanhong Jin:
A vehicle electric control unit over-the-air reprogramming system. ICCVE 2015: 48-51 - [c39]Yanjie Gu, Guoyong Shi:
An interactive program for automatic network function generation with insights. ISCAS 2015: 1810-1813 - [c38]Ailin Zhang, Guoyong Shi:
A symbolic SC integrator model for fast time-response simulation. ISCAS 2015: 1949-1952 - [c37]Hanbin Hu, Guoyong Shi, Andy Tai, Frank Lee:
Topological symbolic simplification for analog design. ISCAS 2015: 2644-2647 - [c36]Hosoon Shin, Sheldon X.-D. Tan, Guoyong Shi, Esteban Tlelo-Cuautle:
Rare event diagnosis by iterative failure region locating and elite learning sample selection. LATS 2015: 1-5 - [c35]Yue Zhao, Hosoon Shin, Hai-Bao Chen, Sheldon X.-D. Tan, Guoyong Shi, Xin Li:
Statistical rare event analysis using smart sampling and parameter guidance. SoCC 2015: 53-58 - [c34]Yanjie Gu, Guoyong Shi:
Optimal realization of switched-capacitor circuits by symbolic analysis. SoCC 2015: 70-73 - 2014
- [c33]Jiandong Cheng, Guoyong Shi:
Symbolic computation of SNR for variational analysis of sigma-delta modulator. ASP-DAC 2014: 443-448 - 2013
- [j13]Zhigang Hao, Sheldon X.-D. Tan, Guoyong Shi:
Statistical full-chip total power estimation considering spatially correlated process variations. Integr. 46(1): 80-88 (2013) - [j12]Guoyong Shi:
Graph-Pair Decision Diagram Construction for Topological Symbolic Circuit Analysis. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 32(2): 275-288 (2013) - [j11]Xuexin Liu, Sheldon X.-D. Tan, Adolfo Adair Palma-Rodriguez, Esteban Tlelo-Cuautle, Guoyong Shi:
Performance bound analysis of analog circuits in frequency- and time-domain considering process variations. ACM Trans. Design Autom. Electr. Syst. 19(1): 6:1-6:22 (2013) - [j10]Zhigang Hao, Guoyong Shi, Sheldon X.-D. Tan, Esteban Tlelo-Cuautle:
Symbolic Moment Computation for Statistical Analysis of Large Interconnect Networks. IEEE Trans. Very Large Scale Integr. Syst. 21(5): 944-957 (2013) - [c32]Hanbin Hu, Guoyong Shi, Yan Zhu:
Incremental symbolic construction for topological modeling of analog circuits. ASICON 2013: 1-4 - [c31]Yang Song, Haipeng Fu, Hao Yu, Guoyong Shi:
Stable backward reachability correction for PLL verification with consideration of environmental noise induced jitter. ASP-DAC 2013: 755-760 - [c30]Yang Song, Hao Yu, Sai Manoj Pudukotai Dinakarrao, Guoyong Shi:
SRAM dynamic stability verification by reachability analysis with consideration of threshold voltage variation. ISPD 2013: 43-49 - 2012
- [j9]Yuanzhe Wang, Zheng Zhang, Cheng-Kok Koh, Guoyong Shi, Grantham K. H. Pang, Ngai Wong:
Passivity Enforcement for Descriptor Systems Via Matrix Pencil Perturbation. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 31(4): 532-545 (2012) - [c29]Xuexin Liu, Sheldon X.-D. Tan, Zhigang Hao, Guoyong Shi:
Time-domain performance bound analysis of analog circuits considering process variations. ASP-DAC 2012: 535-540 - [c28]Yang Song, Guoyong Shi:
Hierarchical graph reduction approach to symbolic circuit analysis with data sharing and cancellation-free properties. ASP-DAC 2012: 541-546 - [c27]Yan Zhu, Guoyong Shi, Frank Lee, Andy Tai:
Symbolic time-varying root-locus analysis for oscillator design. NEWCAS 2012: 165-168 - [c26]Jiajun Chen, Guoyong Shi, Andy Tai, Frank Lee:
A size sensitivity method for interactive MOS circuit sizing. NEWCAS 2012: 169-172 - 2011
- [c25]Sahana Swarup, Sheldon X.-D. Tan, Zao Liu, Hai Wang, Zhigang Hao, Guoyong Shi:
Battery state of charge estimation using adaptive subspace identification method. ASICON 2011: 91-94 - [c24]Hui Xu, Guoyong Shi, Xiaopeng Li:
Hierarchical exact symbolic analysis of large analog integrated circuits by symbolic stamps. ASP-DAC 2011: 19-24 - [c23]Zhigang Hao, Sheldon X.-D. Tan, Ruijing Shen, Guoyong Shi:
Performance bound analysis of analog circuits considering process variations. DAC 2011: 310-315 - [c22]Xiaopeng Li, Hui Xu, Guoyong Shi, Andy Tai:
Hierarchical symbolic sensitivity computation with applications to large amplifier circuit design. ISCAS 2011: 2733-2736 - [c21]Zhigang Hao, Sheldon X.-D. Tan, Guoyong Shi:
An efficient statistical chip-level total power estimation method considering process variations with spatial correlation. ISQED 2011: 671-676 - [c20]Zhigang Hao, Ruijing Shen, Sheldon X.-D. Tan, Bao Liu, Guoyong Shi, Yici Cai:
Statistical full-chip dynamic power estimation considering spatial correlations. ISQED 2011: 677-682 - 2010
- [j8]Guoyong Shi:
Computational Complexity Analysis of Determinant Decision Diagram. IEEE Trans. Circuits Syst. II Express Briefs 57-II(10): 828-832 (2010) - [c19]Diming Ma, Guoyong Shi, Alex Lee:
A design platform for analog device size sensitivity analysis and visualization. APCCAS 2010: 48-51 - [c18]Zhigang Hao, Guoyong Shi:
A fast symbolic computation approach to statistical analysis of mesh networks with multiple sources. ASP-DAC 2010: 383-388 - [c17]Guoyong Shi:
A simple implementation of determinant decision diagram. ICCAD 2010: 70-76
2000 – 2009
- 2009
- [c16]Guoyong Shi, Xiaoxuan Meng:
Variational Analog Integrated Circuit Design via Symbolic Sensitivity Analysis. ISCAS 2009: 3002-3005 - 2008
- [c15]Zhigang Hao, Guoyong Shi:
New approaches to interconnect macromodeling with explicit delay extraction. APCCAS 2008: 1546-1549 - 2007
- [c14]Guoyong Shi, Weiwei Chen, Chuanjin Richard Shi:
A Graph Reduction Approach to Symbolic Circuit Analysis. ASP-DAC 2007: 197-202 - 2006
- [j7]Guoyong Shi, Bo Hu, Chuanjin Richard Shi:
On symbolic model order reduction. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 25(7): 1257-1272 (2006) - [j6]Chuanjin Richard Shi, Michael W. Tian, Guoyong Shi:
Efficient DC fault simulation of nonlinear analog circuits: one-step relaxation and adaptive simulation continuation. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 25(7): 1392-1400 (2006) - [c13]Weiwei Chen, Guoyong Shi:
Implementation of a Symbolic Circuit Simulator for Topological Network Analysis. APCCAS 2006: 1368-1372 - 2005
- [j5]Guoyong Shi, Chuanjin Richard Shi:
Model-order reduction by dominant subspace projection: error bound, subspace computation, and circuit applications. IEEE Trans. Circuits Syst. I Regul. Pap. 52-I(5): 975-993 (2005) - 2004
- [j4]Anton A. Stoorvogel, Ali Saberi, Guoyong Shi:
Properties of recoverable region and semi-global stabilization in recoverable region for linear systems subject to constraints. Autom. 40(9): 1481-1494 (2004) - [c12]Guoyong Shi, Chuanjin Richard Shi:
Parametric reduced order modeling for interconnect analysis. ASP-DAC 2004: 774-779 - 2003
- [c11]Ali Saberi, Anton A. Stoorvogel, Guoyong Shi, Peddapullaiah Sannuti:
Semi-global stabilization of linear systems subject to non-right invertible constraints. ACC 2003: 5066-5071 - [c10]Anton A. Stoorvogel, Ali Saberi, Guoyong Shi:
Properties of recoverable region and semi-global stabilization in recoverable region for linear systems subject to constraints. ACC 2003: 5072-5077 - 2002
- [c9]Guoyong Shi, Ali Saberi:
On the input-to-state stability (ISS) of a double integrator with saturated linear control laws. ACC 2002: 59-61 - [c8]Guoyong Shi, Ali Saberi, Anton A. Stoorvogel, Peddapullaiah Sannuti:
Semi-global stabilization and output regulation of constrained linear plants via measurement feedback. CDC 2002: 1072-1077 - 2001
- [c7]Ali Saberi, Jian Han, Anton A. Stoorvogel, Guoyong Shi:
Constrained stabilization problems for discrete-time linear plants. ACC 2001: 3221-3226 - [c6]Guoyong Shi, Ali Saberi, Anton A. Stoorvogel, Peddapullaiah Sannuti:
Constrained output regulation of discrete-time linear plants. CDC 2001: 1755-1760 - [c5]Ali Saberi, Anton A. Stoorvogel, Guoyong Shi, Peddapullaiah Sannuti:
Internal stabilization and external LP stabilization of linear systems subject to constraints. CDC 2001: 4242-4247 - 2000
- [j3]Guoyong Shi:
Optimal bidirectional associative memories. Int. J. Syst. Sci. 31(6): 751-757 (2000) - [c4]Guoyong Shi, Ali Saberi, Anton A. Stoorvogel:
On Lp (lp) performance with global internal stability for linear systems with actuators subject to amplitude and rate saturations. ACC 2000: 730-734 - [c3]Guoyong Shi, Ali Saberi, Anton A. Stoorvogel, Peddapullaiah Sannuti:
Generalized output regulation of linear plants with actuators subject to amplitude and rate saturations. ACC 2000: 1240-1244 - [c2]Ali Saberi, Anton A. Stoorvogel, Peddapullaiah Sannuti, Guoyong Shi:
On optimal output regulation for linear systems-state feedback. ACC 2000: 2428-2432
1990 – 1999
- 1998
- [c1]Anton A. Stoorvogel, Ali Saberi, Guoyong Shi:
On achieving L p (ℓp) performance with global internal stability for linear plants with saturating actuators. Robustness in Identification and Control 1998: 271-286 - 1997
- [j2]Guoyong Shi:
A genetic algorithm applied to a classic job-shop scheduling problem. Int. J. Syst. Sci. 28(1): 25-32 (1997) - [j1]Guoyong Shi:
Genetic approach to the design of bidirectional associative memory. Int. J. Syst. Sci. 28(2): 133-140 (1997)
Coauthor Index
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last updated on 2024-08-15 23:48 CEST by the dblp team
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