default search action
Victor Sreeram
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2025
- [j61]Le Yin, Wenjing Xie, Shiyuan Wang, Victor Sreeram:
Simultaneous input and state estimation: From a unified least-squares perspective. Autom. 171: 111906 (2025) - 2024
- [j60]Umair Zulfiqar, Xin Du, Qiu-Yan Song, Zhi-Hua Xiao, Victor Sreeram:
Relative error-based time-limited H2 model order reduction via oblique projection. J. Frankl. Inst. 361(2): 1093-1114 (2024) - [j59]Jiashuai Li, Xiuyan Peng, Bing Li, Victor Sreeram, Jiawei Wu:
Fault-tolerant visual servo control for a robotic arm with actuator faults. Neural Comput. Appl. 36(25): 15815-15828 (2024) - [j58]Bin Liu, Bing Li, Victor Sreeram, Shuofeng Li:
MBT-UNet: Multi-Branch Transform Combined with UNet for Semantic Segmentation of Remote Sensing Images. Remote. Sens. 16(15): 2776 (2024) - [j57]Umair Zulfiqar, Xin Du, Qiu-Yan Song, Muwahida Liaquat, Victor Sreeram:
H2 model order reduction: A relative error setting. Syst. Control. Lett. 185: 105745 (2024) - [j56]Hao Shen, Dongji Wang, Ju H. Park, Victor Sreeram, Jing Wang:
Switching-Like Event-Triggered Sliding Mode Load Frequency Control for Networked Power Systems Under Energy-Limited DoS Attacks. IEEE Trans. Syst. Man Cybern. Syst. 54(3): 1589-1598 (2024) - [c73]Kumari Kanchan, Deepak Kumar, Victor Sreeram:
A New Frequency Confined Gramians-based Model Order Reduction Technique. ANZCC 2024: 121-124 - [i15]Qiu-Yan Song, Umair Zulfiqar, Zhi-Hua Xiao, Mohammad Monir Uddin, Victor Sreeram:
Balanced Truncation of Linear Systems with Quadratic Outputs in Limited Time and Frequency Intervals. CoRR abs/2402.11445 (2024) - [i14]Umair Zulfiqar, Zhi-Hua Xiao, Qiu-Yan Song, Mohammad Monir Uddin, Victor Sreeram:
Time-limited H2-optimal Model Order Reduction of Linear Systems with Quadratic Outputs. CoRR abs/2408.05965 (2024) - [i13]Umair Zulfiqar, Zhi-Hua Xiao, Qiu-Yan Song, Mohammad Monir Uddin, Victor Sreeram:
ℋ2-optimal Model Reduction of Linear Quadratic Output Systems in Finite Frequency Range. CoRR abs/2408.07939 (2024) - [i12]Umair Zulfiqar, Zhi-Hua Xiao, Qiu-Yan Song, Victor Sreeram:
On the Connection Between Gramian-based and Interpolation-based Model Order Reduction. CoRR abs/2409.13358 (2024) - 2023
- [j55]Umair Zulfiqar, Xin Du, Qiu-Yan Song, Victor Sreeram:
On frequency- and time-limited μH2-optimal model order reduction. Autom. 153: 111012 (2023) - 2022
- [j54]Yuanjun Zhao, Roberto Togneri, Victor Sreeram:
Multi-task Learning-Based Spoofing-Robust Automatic Speaker Verification System. Circuits Syst. Signal Process. 41(7): 4068-4089 (2022) - [j53]Umair Zulfiqar, Victor Sreeram, Mian Ilyas Ahmad, Xin Du:
Frequency-weighted ℋ2-optimal model order reduction via oblique projection. Int. J. Syst. Sci. 53(1): 182-198 (2022) - [c72]Chhabindra Nath Singh, Deepak Kumar, Paulson Samuel, Akhilesh Kumar Gupta, Victor Sreeram:
Colliding bodies optimization-based approximants of linear-time invariant continuous-time systems. ANZCC 2022: 46-50 - [c71]Rida Anum, Muwahida Liaquat, Victor Sreeram, Umair Zulfiqar:
Co-operative Formation Control Of Multiple Unmanned Aerial Vehicles Via Distributive Observer Approach. ANZCC 2022: 109-114 - [c70]Chhabindra Nath Singh, Deepak Kumar, Paulson Samuel, Akhilesh Kumar Gupta, Victor Sreeram:
Approximation of Commensurate Fractional-order systems using Colliding bodies optimization. ASCC 2022: 312-315 - [c69]Umair Zulfiqar, Xin Du, Qiuyan Song, Victor Sreeram:
Three Frequency-limited Balanced Truncation Algorithms: A Comparison and Three Families of Extensions. ASCC 2022: 1654-1659 - [i11]Umair Zulfiqar, Xin Du, Qiuyan Song, Zhi-Hua Xiao, Victor Sreeram:
Relative Error-based Time-limited H2 Model Order Reduction via Oblique Projection. CoRR abs/2212.08247 (2022) - [i10]Umair Zulfiqar, Xin Du, Qiuyan Song, Muwahida Liaquat, Victor Sreeram:
H2 Model Order Reduction: A Relative Error Setting. CoRR abs/2212.09929 (2022) - [i9]Umair Zulfiqar, Xin Du, Qiuyan Song, Zhi-Hua Xiao, Victor Sreeram:
Frequency-limited H2 Model Order Reduction Based on Relative Error. CoRR abs/2212.09930 (2022) - 2021
- [j52]Umair Zulfiqar, Victor Sreeram, Mian Ilyas Ahmad, Xin Du:
Time- and frequency-limited H2-optimal model order reduction of bilinear control systems. Int. J. Syst. Sci. 52(10): 1953-1973 (2021) - [j51]Umair Zulfiqar, Victor Sreeram, Mian Ilyas Ahmad, Xin Du:
Frequency-weighted ℌ2-pseudo-optimal model order reduction. IMA J. Math. Control. Inf. 38(2): 622-653 (2021) - [j50]Hao Shen, Shiyu Jiao, Ju H. Park, Victor Sreeram:
An Improved Result on $H_{\infty }$ Load Frequency Control for Power Systems With Time Delays. IEEE Syst. J. 15(3): 3238-3248 (2021) - [j49]Jing Wang, Tingting Ru, Jianwei Xia, Hao Shen, Victor Sreeram:
Asynchronous Event-Triggered Sliding Mode Control for Semi-Markov Jump Systems Within a Finite-Time Interval. IEEE Trans. Circuits Syst. I Regul. Pap. 68(1): 458-468 (2021) - [c68]Muhammad Mudassar, Umair Zulfiqar, Victor Sreeram, Muwahida Liaquat, Ahmad Jazlan:
Reduced-order Damping Controller Design for Power Systems via Frequency-weighted Model Reduction. ANZCC 2021: 39-42 - [c67]Naeem Aftab, Ahmad Jazlan, Victor Sreeram, Michael Lees, Mitchell Lees:
Industry 4.0: An Introduction to the Future of Manufacturing in Australia. ANZCC 2021: 149-154 - [c66]Tejavath Veerendar, Deepak Kumar, Victor Sreeram:
Colliding Bodies Optimization-based PID Controller for Load Frequency Control of single area power system. ANZCC 2021: 185-188 - [i8]Umair Zulfiqar, Victor Sreeram, Mian Ilyas Ahmad, Xin Du:
Frequency-weighted H2-optimal Model Order Reduction via Projection. CoRR abs/2101.06745 (2021) - [i7]Umair Zulfiqar, Victor Sreeram, Xin Du:
Frequency- and Time-limited H2-optimal Model Order Reduction within Projection Framework. CoRR abs/2102.03603 (2021) - 2020
- [j48]Yuanjun Zhao, Roberto Togneri, Victor Sreeram:
Replay anti-spoofing countermeasure based on data augmentation with post selection. Comput. Speech Lang. 64: 101115 (2020) - [j47]Hamid Imtiaz Toor, Muhammad Imran, Abdul Ghafoor, Deepak Kumar, Victor Sreeram, Abdul Rauf:
Frequency Limited Model Reduction Techniques for Discrete-Time Systems. IEEE Trans. Circuits Syst. II Express Briefs 67-II(2): 345-349 (2020) - [j46]Hao Shen, Shicheng Huo, Huaicheng Yan, Ju H. Park, Victor Sreeram:
Distributed Dissipative State Estimation for Markov Jump Genetic Regulatory Networks Subject to Round-Robin Scheduling. IEEE Trans. Neural Networks Learn. Syst. 31(3): 762-771 (2020) - [c65]Bheem Sonker, Deepak Kumar, Victor Sreeram, Paulson Samuel:
Differential Evolution based IMC-PID Design for Load frequency control of Two-area power systems. ANZCC 2020: 67-70 - [c64]Tejavath Veerendar, Deepak Kumar, Victor Sreeram:
Teaching-Learning Optimization based Dual-loop Two-Degree of Freedom Load Frequency Controller. ANZCC 2020: 71-74 - [i6]Umair Zulfiqar, Victor Sreeram, Xin Du:
Pseudo-optimal Model Order Reduction for Bilinear Systems. CoRR abs/2001.11129 (2020) - [i5]Yuanjun Zhao, Roberto Togneri, Victor Sreeram:
Multi-task Learning Based Spoofing-Robust Automatic Speaker Verification System. CoRR abs/2012.03154 (2020)
2010 – 2019
- 2019
- [j45]Ali Kharrazi, Yateendra Mishra, Victor Sreeram:
Discrete-Event Systems Supervisory Control for a Custom Power Park. IEEE Trans. Smart Grid 10(1): 483-492 (2019) - [c63]Deepak Kumar, Umair Zulfiqar, Victor Sreeram, Muhammad Imran, Wan Mariam Wan Muda, Ahmad Jazlan, Ai-Guo Wu:
Positive-Real Truncated Balanced Realization based Frequency-Weighted Model reduction. ANZCC 2019: 145-147 - [c62]Umair Zulfiqar, Victor Sreeram, Muhammad Imran:
Channel-specific Frequency-limited Model Reduction. ANZCC 2019: 194-196 - [c61]Yuanjun Zhao, Roberto Togneri, Victor Sreeram:
Data augmentation and post selection for improved replay attack detection. APSIPA 2019: 818-821 - [i4]Umair Zulfiqar, Victor Sreeram, Xin Du:
Controller Reduction via Weighted Interpolation. CoRR abs/1909.06106 (2019) - [i3]Umair Zulfiqar, Victor Sreeram, Xin Du:
Time-limited pseudo-optimal H2-model order reduction. CoRR abs/1909.10275 (2019) - [i2]Umair Zulfiqar, Victor Sreeram, Xin Du:
Frequency-Limited Pseudo-Optimal Rational Krylov Algorithm for Power System Reduction. CoRR abs/1910.02374 (2019) - [i1]Umair Zulfiqar, Victor Sreeram, Xin Du:
A Cumulative Framework for H2-Model Order Reduction in Limited Time and Frequency Intervals with Monotonic Decay in Error. CoRR abs/1911.11427 (2019) - 2018
- [j44]Wei Gao, Shen Fan, Roberto Togneri, Victor Sreeram:
A new proof of a contrast function for bounded component analysis and further analysis. Comput. Speech Lang. 51: 93-109 (2018) - [j43]Hao Shen, Feng Li, Shengyuan Xu, Victor Sreeram:
Slow State Variables Feedback Stabilization for Semi-Markov Jump Systems With Singular Perturbations. IEEE Trans. Autom. Control. 63(8): 2709-2714 (2018) - [j42]Deepak Kumar, Victor Sreeram, Xin Du:
Model Reduction Using Parameterized Limited Frequency Interval Gramians for 1-D and 2-D Separable Denominator Discrete-Time Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(8): 2571-2580 (2018) - [j41]Hao Shen, Feng Li, Zheng-Guang Wu, Ju H. Park, Victor Sreeram:
Fuzzy-Model-Based Nonfragile Control for Nonlinear Singularly Perturbed Systems With Semi-Markov Jump Parameters. IEEE Trans. Fuzzy Syst. 26(6): 3428-3439 (2018) - [j40]Yanzheng Zhu, Hao Shen, Michael V. Basin, Victor Sreeram:
Editorial for Recent Developments on Stochastic Hybrid Systems: Control, Filtering and its Applications special section. Trans. Inst. Meas. Control 40(9): 2705-2707 (2018) - [c60]Muhammad Imran, Abdul Ghafoor, Umair Zulfiqar, Victor Sreeram:
Model Reduction of Discrete Time Systems using Time Limited Gramians. ANZCC 2018: 22-26 - [c59]Deepak Kumar, Umair Zulfiqar, Victor Sreeram:
Frequency-weighted balanced Truncation of 2-D separable denominator discrete-time systems. ANZCC 2018: 377-379 - [c58]Umair Zulfiqar, Victor Sreeram:
Weighted Iterative Tangential Interpolation Algorithms. ANZCC 2018: 380-384 - [c57]Yuanjun Zhao, Roberto Togneri, Victor Sreeram:
Spoofing Detection Using Adaptive Weighting Framework and Clustering Analysis. INTERSPEECH 2018: 626-630 - 2017
- [c56]Deepak Kumar, Ahmad Jazlan, Victor Sreeram:
Generalized time limited Gramian based model reduction. ANZCC 2017: 47-49 - [c55]Deepak Kumar, Ahmad Jazlan, Victor Sreeram:
Model reduction based on limited time interval impulse response gramians. ANZCC 2017: 50-52 - [c54]Dipesh Lamsal, Thomas Conradie, Victor Sreeram, Yateendra Mishra, Deepak Kumar:
A fuzzy logic control approach for smoothing of wind and photovoltaic generation output fluctuations. ANZCC 2017: 80-82 - [c53]Yuanjun Zhao, Roberto Togneri, Victor Sreeram:
Compressed high dimensional features for speaker spoofing detection. APSIPA 2017: 569-572 - [c52]Wei Gao, Roberto Togneri, Victor Sreeram:
A Contrast Function and Algorithm for Blind Separation of Audio Signals. INTERSPEECH 2017: 1889-1893 - 2016
- [j39]Yanzheng Zhu, Lixian Zhang, Victor Sreeram, Wafa Shammakh, Bashir Ahmad:
Resilient model approximation for Markov jump time-delay systems via reduced model with hierarchical Markov chains. Int. J. Syst. Sci. 47(14): 3496-3507 (2016) - [j38]Ai-Guo Wu, Victor Sreeram, Wei-Jun Wu:
Solution to dynamic matrix linear systems by operator exponential functions. J. Frankl. Inst. 353(5): 1019-1040 (2016) - [j37]Ai-Guo Wu, Yang-Yang Qian, Wanquan Liu, Victor Sreeram:
Linear quadratic regulation for discrete-time antilinear systems: An anti-Riccati matrix equation approach. J. Frankl. Inst. 353(5): 1041-1060 (2016) - [c51]Ahmad Jazlan, Victor Sreeram, Roberto Togneri, Ha Binh Minh:
Generalized gramian based frequency interval model reduction for unstable systems. AuCC 2016: 43-47 - [c50]Kamran Zeb, Ayesha, Aun Haider, Waqar Uddin, Muhammad Bilal Qureshi, Chaudhry Arshad Mehmood, Ahmad Jazlan, Victor Sreeram:
Indirect Vector Control of Induction Motor using Adaptive Sliding Mode Controller. AuCC 2016: 358-363 - 2015
- [j36]Wan Mariam Wan Muda, Victor Sreeram, Ha Binh Minh, Abdul Ghafoor:
Comments on "Model-Order Reduction Using Variational Balanced Truncation With Spectral Shaping". IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(1): 333-335 (2015) - [c49]Ahmad Jazlan, Victor Sreeram, Roberto Togneri:
Cross gramian based time interval model reduction. AuCC 2015: 274-276 - 2014
- [j35]Muhammad Imran, Abdul Ghafoor, Victor Sreeram:
A frequency weighted model order reduction technique and error bounds. Autom. 50(12): 3304-3309 (2014) - [c48]Ahmad Jazlan, Victor Sreeram, Roberto Togneri, Maamar Bettayeb:
Time weighted model reduction of flat plate solar collectors. AuCC 2014: 107-111 - 2013
- [j34]Tyrone Fernando, S. MacDougall, Victor Sreeram, Hieu Trinh:
Existence conditions for unknown input functional observers. Int. J. Control 86(1): 22-28 (2013) - [j33]Victor Sreeram, Shafishuhaza Sahlan, Wan Mariam Wan Muda, Tyrone Fernando, Herbert H. C. Iu:
A generalised partial-fraction-expansion based frequency weighted balanced truncation technique. Int. J. Control 86(5): 833-843 (2013) - [j32]Hassan Abbas Khan, A. C. M. Tan, Y. Xiao, Victor Sreeram, Herbert H. C. Iu:
An implementation of novel CMAC algorithm for very short term load forecasting. J. Ambient Intell. Humaniz. Comput. 4(6): 673-683 (2013) - [j31]Sanath Alahakoon, Tyrone Fernando, Hieu Trinh, Victor Sreeram:
Unknown input sliding mode functional observers with application to sensorless control of permanent magnet synchronous machines. J. Frankl. Inst. 350(1): 107-128 (2013) - [c47]Ahmad Jazlan, Victor Sreeram, Roberto Togneri, Wail A. Mousa:
A review on reduced order approximation for digital filters with complex coefficients using model reduction. AuCC 2013: 79-84 - [c46]Ai-Guo Wu, Guang-Ren Duan, Wanquan Liu, Victor Sreeram:
Controllability and stability of discrete-time antilinear systems. AuCC 2013: 403-408 - [c45]Xin Du, Ahmad Jazlan, Victor Sreeram, Roberto Togneri, Abdul Ghafoor, Shafishuhaza Sahlan:
A frequency limited model reduction technique for linear discrete systems. AuCC 2013: 421-426 - [c44]Muhammad Imran, Abdul Ghafoor, Safia Akram, Victor Sreeram:
Limited frequency interval Gramians based model reduction for nonsingular generalized systems. AuCC 2013: 441-444 - [c43]Sachit Gopalan, Victor Sreeram, Herbert H. C. Iu, Yateendra Mishra:
An improved protection strategy for microgrids. ISGT Europe 2013: 1-5 - [c42]Sachit Gopalan, Victor Sreeram, Herbert H. C. Iu, Yateendra Mishra:
A flexible protection scheme for an islanded Multi-Microgrid. ISGT Europe 2013: 1-5 - [c41]Muhammad Mohsin Riaz, Abdul Ghafoor, Victor Sreeram:
Singular Value Decomposition and Akaike Information Criterion Based through Wall Image Enhancement. VTC Spring 2013: 1-4 - 2012
- [j30]Andrew Lewis Fitch, Dongsheng Yu, Herbert H. C. Iu, Victor Sreeram:
Hyperchaos in a memristor-Based Modified Canonical Chua's Circuit. Int. J. Bifurc. Chaos 22(6) (2012) - [j29]Shafishuhaza Sahlan, Abdul Ghafoor, Victor Sreeram:
A new method for the model reduction technique via a limited frequency interval impulse response Gramian. Math. Comput. Model. 55(3-4): 1034-1040 (2012) - [c40]Hammad A. Khan, Peter Bargiev, Victor Sreeram, Herbert H. C. Iu, Tyrone Lucius Fernando, Yateendra Mishra:
Active and reactive power control of synchronous generator for the realization of a virtual power plant. IECON 2012: 1204-1210 - [c39]Andrew Lewis Fitch, Herbert Ho-Ching Iu, X. Y. Wang, Victor Sreeram, W. G. Qi:
Realization of an analog model of memristor based on light dependent resistor. ISCAS 2012: 1139-1142 - [c38]Tarik-Ul Islam Khandoker, Licai Fang, Defeng Huang, Victor Sreeram:
A robust time synchronization approach for underwater networks with inconsistent timestamps. ISCIT 2012: 1086-1091 - 2011
- [j28]Herbert Ho-Ching Iu, Dongsheng Yu, Andrew Lewis Fitch, Victor Sreeram, Hao Chen:
Controlling Chaos in a Memristor Based Circuit Using a Twin-T Notch Filter. IEEE Trans. Circuits Syst. I Regul. Pap. 58-I(6): 1337-1344 (2011) - [c37]Tarik-Ul Islam Khandoker, Defeng David Huang, Victor Sreeram:
A low complexity linear regression approach to time synchronization in underwater networks. ICICS 2011: 1-5 - [c36]Wan Mariam Wan Muda, Victor Sreeram, Herbert Ho-Ching Iu:
An improved algorithm for partial fraction expansion based frequency weighted balanced truncation. ACC 2011: 5037-5042 - [c35]Shahariar Kabir, Victor Sreeram, Tyrone Fernando, Shafishuhaza Sahlan:
On partial-fraction expansion based frequency weighted balanced truncation. AuCC 2011: 332-337 - [c34]Wan Mariam Wan Muda, Victor Sreeram, Herbert Ho-Ching Iu:
An improved algorithm for frequency weighted balanced truncation. CDC/ECC 2011: 7182-7187 - [c33]Herbert Ho-Ching Iu, Dongsheng Yu, Andrew Lewis Fitch, Victor Sreeram:
Chaos control in a memristor based circuit. ISCAS 2011: 2946-2949 - 2010
- [j27]Guoliang Wang, Qingling Zhang, Victor Sreeram:
H∞ control for discrete-time singularly perturbed systems with two Markov processes. J. Frankl. Inst. 347(5): 836-847 (2010) - [j26]Xue Zhang, Qingling Zhang, Victor Sreeram:
Bifurcation analysis and control of a discrete harvested prey-predator system with Beddington-DeAngelis functional response. J. Frankl. Inst. 347(7): 1076-1096 (2010) - [j25]Guoliang Wang, Qingling Zhang, Victor Sreeram:
Partially mode-dependent H∞ filtering for discrete-time Markovian jump systems with partly unknown transition probabilities. Signal Process. 90(2): 548-556 (2010) - [c32]Wan Mariam Wan Muda, Victor Sreeram, Herbert Ho-Ching Iu:
Passivity-preserving frequency weighted model order reduction techniques for general large-scale RLC systems. ICARCV 2010: 1310-1315
2000 – 2009
- 2009
- [j24]Guoliang Wang, Qingling Zhang, Victor Sreeram:
Design of reduced-order H∞ filtering for Markovian jump systems with mode-dependent time delays. Signal Process. 89(2): 187-196 (2009) - [j23]Pantazis Houlis, Victor Sreeram:
A Parametrized Controller Reduction Technique via a New Frequency Weighted Model Reduction Formulation. IEEE Trans. Autom. Control. 54(5): 1087-1093 (2009) - [c31]Shafishuhaza Sahlan, Victor Sreeram:
New results on partial fraction expansion based frequency weighted balanced truncation. ACC 2009: 5695-5700 - [c30]Victor Sreeram, Shafishuhaza Sahlan:
Improved results on frequency weighted balanced truncation. CDC 2009: 3250-3255 - [c29]Pantazis Houlis, Victor Sreeram:
A new double sided frequency weighted problem formulation. ECC 2009: 1041-1046 - 2008
- [j22]Anthony G. K. C. Lim, Victor Sreeram:
Design Of Digital Compensation Filters In Iq Modulator By H2 Norm Minimization-A State-Space Approach. Intell. Autom. Soft Comput. 14(2): 135-150 (2008) - [j21]Abdul Ghafoor, Victor Sreeram:
Model Reduction Via Limited Frequency Interval Gramians. IEEE Trans. Circuits Syst. I Regul. Pap. 55-I(9): 2806-2812 (2008) - [c28]Tyrone Fernando, Victor Sreeram, Bijnan Bandyopadhyay:
Sliding mode functional observers. ICARCV 2008: 1012-1016 - [c27]Rob Susanto-Lee, Tyrone Fernando, Victor Sreeram:
Simulation of fuzzy-modified expert PID algorithms for blood glucose control. ICARCV 2008: 1583-1589 - [c26]Pantazis Houlis, Victor Sreeram:
A generalized controller reduction technique using LFT framework. ICARCV 2008: 2130-2135 - [c25]Victor Sreeram, Shafishuhaza Sahlan:
An improved frequency weighted balancing related technique with error bounds. ICARCV 2008: 2148-2153 - 2007
- [j20]Bijnan Bandyopadhyay, Alemayehu G.-E. Abera, Sivaramakrishnan Janardhanan, Victor Sreeram:
Sliding mode control design via reduced order model approach. Int. J. Autom. Comput. 4(4): 329-334 (2007) - [j19]Abdul Ghafoor, Victor Sreeram:
Partial-Fraction Expansion Based Frequency Weighted Model Reduction Technique With Error Bounds. IEEE Trans. Autom. Control. 52(10): 1942-1948 (2007) - [c24]Shafishuhaza Sahlan, Abdul Ghafoor, Victor Sreeram:
Properties of Frequency Weighted Balanced Truncation Techniques. CASE 2007: 765-770 - 2006
- [c23]Harsha R. Sirisena, Victor Sreeram:
Modeling of scalable TCP for AQM design in high speed networks. ACC 2006: 1-3 - [c22]Abdul Ghafoor, Victor Sreeram:
Frequency Interval Gramians based Model Reduction. APCCAS 2006: 2000-2003 - [c21]Pantazis Houlis, Victor Sreeram:
A Parametrized Controller Reduction Technique. CDC 2006: 3430-3435 - [c20]Abdul Ghafoor, Victor Sreeram:
Frequency Weighted Balanced Model Reduction: A Survey. ICARCV 2006: 1-6 - [c19]Pantazis Houlis, Victor Sreeram:
An Interconnection between Combined Classical Block Diagrams and Linear Fractional Transformation Block Diagrams. ICARCV 2006: 1-5 - [c18]Harsha R. Sirisena, Aun Haider, Victor Sreeram:
Control-Theoretic Design of RED AQM for Scalable TCP in High Speed Networks. ICC 2006: 177-182 - 2005
- [j18]Anthony G. K. C. Lim, Victor Sreeram, Guoliang Wang:
Digital Compensation in IQ Modulator Using H∞ Optimization - A State-Space Approach. EURASIP J. Adv. Signal Process. 2005(4): 541-549 (2005) - [c17]Abdul Ghafoor, Jing Wang, Victor Sreeram:
Frequency-Weighted Model Reduction Method with Error Bounds for 2-D Separable Denominator Discrete Systems. ISIC 2005: 525-530 - [c16]Pantazis Houlis, Victor Sreeram:
Controller Reduction Via a New Double-Sided Frequency Weighted Model Reduction Formulation. ISIC 2005: 537-542 - [c15]Victor Sreeram, Abdul Ghafoor:
Frequency weighted model reduction technique with error bounds. ACC 2005: 2584-2589 - 2004
- [j17]Anthony Galvin K. C. Lim, Victor Sreeram, Guo-Qing Wang:
Digital compensation in IQ modulators using adaptive FIR filters. IEEE Trans. Veh. Technol. 53(6): 1809-1817 (2004) - [c14]Jing Wang, Qingling Zhang, Wanquan Liu, Victor Sreeram:
Model reduction of singular systems via covariance approximation. ACC 2004: 90-95 - [c13]Jing Wang, Qingling Zhang, Wanquan Liu, Xin Xin, Victor Sreeram:
H∞ suboptimal model reduction for singular systems. ACC 2004: 119-124 - [c12]Anthony G. K. C. Lim, Victor Sreeram, Guoliang Wang:
Design of digital pre-compensation filters by H∞ optimization. ACC 2004: 2087-2092 - [c11]Victor Sreeram:
An improved frequency weighted balancing related technique with error bounds. CDC 2004: 3084-3089 - [c10]Anthony G. K. C. Lim, Victor Sreeram, Guo-Qing Wang:
An equation error approach for the design of digital IIR compensation filters in IQ modulator. ISCAS (3) 2004: 205-208 - 2003
- [c9]Anthony G. K. C. Lim, Guo-Qing Wang, Victor Sreeram:
Adaptive digital compensation in DSP based FM modulators. ISCAS (2) 2003: 328-331 - [c8]Anthony G. K. C. Lim, Victor Sreeram, Ezra Zeheb:
A technique for reduction of uncertain FIR filters. ISCAS (4) 2003: 656-659 - 2002
- [j16]G. Wang, Victor Sreeram, Wan Quan Liu:
Balanced performance preserving controller reduction. Syst. Control. Lett. 46(2): 99-110 (2002) - [c7]Q. L. Zhang, Victor Sreeram, Guoliang Wang, W. Q. Liu:
H∞ suboptimal model reduction for singular systems. ACC 2002: 1168-1173 - [c6]Victor Sreeram:
On the properties of frequency weighted balanced truncation techniques. ACC 2002: 1753-1754 - [c5]Victor Sreeram:
Frequency response error bounds for time-weighted balanced truncation. CDC 2002: 3330-3331 - 2001
- [j15]Wan Quan Liu, Victor Sreeram:
Model reduction of singular systems. Int. J. Syst. Sci. 32(10): 1205-1215 (2001) - [j14]G. Wang, Victor Sreeram, Wan Quan Liu:
Performance preserving controller reduction via additive perturbation of the closed-loop transfer function. IEEE Trans. Autom. Control. 46(5): 771-775 (2001) - [j13]Wanquan Liu, Wei-Yong Yan, Victor Sreeram, Kok Lay Teo:
Global convergence analysis for the NIC flow. IEEE Trans. Signal Process. 49(10): 2422-2430 (2001) - 2000
- [c4]K. Campbell, Victor Sreeram, Guoliang Wang:
A frequency-weighted discrete system balanced truncation method and an error bound. ACC 2000: 2403-2404 - [c3]Guoliang Wang, Victor Sreeram:
A method to realize performance preserving controller reduction. ACC 2000: 2410-2414 - [c2]Wan Quan Liu, Victor Sreeram:
Model reduction of singular systems. CDC 2000: 2373-2378
1990 – 1999
- 1999
- [j12]M. Diab, Victor Sreeram, Wanquan Liu:
Frequency-weighted model reduction via quasi-Kalman decomposition. IEEE Trans. Autom. Control. 44(1): 139-144 (1999) - [j11]Guo-Qing Wang, Victor Sreeram, Wanquan Liu:
A new frequency-weighted balanced truncation method and an error bound. IEEE Trans. Autom. Control. 44(9): 1734-1737 (1999) - 1998
- [j10]Chengshan Xiao, Victor Sreeram, Wan Quan Liu, Anastasios N. Venetsanopoulos:
Identification and model reduction of 2-D systems via the extended impulse response Gramians. Autom. 34(1): 93-101 (1998) - [j9]Saman S. Abeysekera, Antonio Cantoni, Victor Sreeram:
A comprehensive analysis of stuff threshold modulation used in clock-rate adaptation schemes. IEEE Trans. Commun. 46(8): 1088-1096 (1998) - 1997
- [j8]Wan Quan Liu, M. Paskota, Victor Sreeram, Kok Lay Teo:
Improvement on stability bounds for singularly perturbed systems via state feedback. Int. J. Syst. Sci. 28(6): 571-578 (1997) - [c1]Ba-Ngu Vo, Thi-Ngoc Ho, Antonio Cantoni, Victor Sreeram:
FIR filters in continuous-time envelope constrained filter design. ICASSP 1997: 1905-1908 - 1995
- [j7]E.-J. Ang, Victor Sreeram, Wanquan Liu:
Identification/reduction to a balanced realization via the extended impulse response gramian. IEEE Trans. Autom. Control. 40(12): 2153-2158 (1995) - 1994
- [j6]Victor Sreeram, Panos Agathoklis, Mohamed Mansour:
The generation of discrete-time q-Markov covers via inverse solution of the Lyapunov equation. IEEE Trans. Autom. Control. 39(2): 381-385 (1994) - [j5]Victor Sreeram, Panos Agathoklis:
The discrete-time q-Markov cover models with improved low-frequency approximation. IEEE Trans. Autom. Control. 39(5): 1102-1105 (1994) - [j4]Victor Sreeram:
On the generalized q-Markov cover models for discrete-time systems. IEEE Trans. Autom. Control. 39(12): 2502-2505 (1994) - 1993
- [j3]Victor Sreeram, Panos Agathoklis:
On the theory of state-covariance assignment for single-input linear discrete systems. IEEE Trans. Autom. Control. 38(7): 1111-1115 (1993) - [j2]Victor Sreeram, Panos Agathoklis:
On the computation of the Gram matrix in time domain and its application. IEEE Trans. Autom. Control. 38(10): 1516-1520 (1993) - 1992
- [j1]Venkatappa Sreeram, Panos Agathoklis:
Design of linear-phase IIR filters via impulse-response gramians. IEEE Trans. Signal Process. 40(2): 389-394 (1992)
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-18 19:33 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint