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Edwin E. Yaz
Person information
- affiliation: Marquette University, College of Engineering, Milwaukee, WI, USA
- affiliation (PhD 1982): Bosphorus University, Istanbul, Turkey
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2020 – today
- 2024
- [c58]Paris Her, Edwin E. Yaz, Susan C. Schneider:
Region-Guided Violence Recognition and Saliency Evaluation in Surveillance Videos. AVSS 2024: 1-8 - [c57]Jiayi Su, Susan C. Schneider, Edwin E. Yaz:
Multi-Object Tracking Using Video Sequences with Improved Performance and Reduced Computation Cost. CCTA 2024: 511-518 - 2022
- [c56]Jiayi Su, Paris Her, Erik Clemens, Edwin E. Yaz, Susan C. Schneider, Henry Medeiros:
Violence Detection using 3D Convolutional Neural Networks. AVSS 2022: 1-8 - [c55]Jiayi Su, Susan C. Schneider, Edwin E. Yaz, Fabien Josse:
Simultaneous State of Charge and Total Capacity Estimation of Lithium-ion Cells Using Multiple Model Adaptive Estimation. CCTA 2022: 778-784 - 2021
- [c54]Alia R. Strandt, Susan C. Schneider, Edwin E. Yaz:
A Compensating Control for Systems with Intermittent Actuator Faults. ACC 2021: 2855-2860 - [c53]Jiayi Su, Susan C. Schneider, Edwin E. Yaz, Fabien Josse:
Online State of Charge Estimation of Lithium-ion Battery Cells: A Multiple Model Adaptive Estimation Approach. ACC 2021: 4447-4452 - [c52]Jiayi Su, Alia R. Strandt, Susan C. Schneider, Edwin E. Yaz, Fabien Josse:
Improved State of Charge Estimation of Lithium-ion Battery cells. ECC 2021: 1645-1650
2010 – 2019
- 2019
- [j24]Xin Wang, Edwin E. Yaz:
Second-Order Fault Tolerant Extended Kalman Filter for Discrete Time Nonlinear Systems. IEEE Trans. Autom. Control. 64(12): 5086-5093 (2019) - 2018
- [j23]Xin Wang, Max Reitz, Edwin E. Yaz:
Field Oriented Sliding Mode Control of Surface-Mounted Permanent Magnet AC Motors: Theory and Applications to Electrified Vehicles. IEEE Trans. Veh. Technol. 67(11): 10343-10356 (2018) - [c51]Alia R. Strandt, Andrew P. Strandt, Susan C. Schneider, Edwin E. Yaz:
Stator Resistance Estimation Using Adaptive Estimation via a Bank of Kalman Filters. ACC 2018: 1078-1083 - [c50]Xin Wang, Edwin E. Yaz, Susan C. Schneider:
Coupled State-Dependent Riccati Equation Control for Continuous Time Nonlinear Mechatronics Systems. ACC 2018: 2102-2107 - [c49]M. Sami Fadali, Edwin E. Yaz:
Dissipative Resilient Observer. ACC 2018: 6584-6589 - 2017
- [c48]Jennifer L. Bonniwell, Susan C. Schneider, Edwin E. Yaz:
Finite-time mean-square boundedness, H2, and H∞-properties of the discrete-time extended Kalman filter for systems with independent sensor failures. ACC 2017: 5774-5779 - 2016
- [c47]Jennifer L. Bonniwell, Susan C. Schneider, Edwin E. Yaz:
H∞-property of the discrete-time extended Kalman filter with uncertain measurements. ACC 2016: 107-112 - [c46]Xin Wang, Edwin E. Yaz:
Smart power grid synchronization with Fault Tolerant nonlinear estimation. ACC 2016: 5020-5025 - [c45]Karthick Sothivelr, Florian Bender, Fabien Josse, Edwin E. Yaz, Antonio J. Ricco:
Sensor-based estimation of BTEX concentrations in water samples using recursive least squares and Kalman filter techniques. IEEE SENSORS 2016: 1-3 - 2015
- [c44]Fan Feng, Jennifer L. Bonniwell, Susan C. Schneider, Edwin E. Yaz:
Performance analysis of resilient dynamic feedback H2 controllers. CCA 2015: 1404-1409 - [c43]W. Alexander Baker, Susan C. Schneider, Edwin E. Yaz:
Robust regional eigenvalue assignment by dynamic state-feedback control for nonlinear continuous-time systems. CDC 2015: 6903-6908 - [c42]Jennifer L. Bonniwell, Susan C. Schneider, Edwin E. Yaz:
H∞-property of the discrete-time extended Kalman filter with stochastic ℓ2 disturbances. CDC 2015: 6992-6997 - [c41]Fan Feng, Susan C. Schneider, Edwin E. Yaz:
Performance analysis of resilient dynamic feedback H2 controllers for discrete-time systems. ECC 2015: 2003-2008 - 2014
- [j22]Xin Wang, Edwin E. Yaz:
Stochastically resilient extended Kalman filtering for discrete-time nonlinear systems with sensor failures. Int. J. Syst. Sci. 45(7): 1393-1401 (2014) - [c40]Fan Feng, Edwin E. Yaz, Susan C. Schneider, Yvonne Ilke Yaz:
Discrete-time resilient controller design with general criteria for a class of uncertain nonlinear systems. ACC 2014: 4268-4273 - 2013
- [j21]Mohammad N. ElBsat, Edwin E. Yaz:
Robust and resilient finite-time bounded control of discrete-time uncertain nonlinear systems. Autom. 49(7): 2292-2296 (2013) - [c39]Mohammad N. ElBsat, Edwin E. Yaz:
Finite-time bounded state-dependent control of a class of discrete-time nonlinear systems. ACC 2013: 3882-3887 - [c38]Fan Feng, Chung Seop Jeong, Edwin E. Yaz, Susan C. Schneider, Yvonne Ilke Yaz:
Robust controller design with general criteria for uncertain conic nonlinear systems with disturbances. ACC 2013: 5869-5874 - [c37]Fan Feng, Edwin E. Yaz, Susan C. Schneider, Yvonne Ilke Yaz:
Discrete-time robust controller design for a class of nonlinear systems with uncertainties. CDC 2013: 1119-1124 - 2012
- [c36]Xin Wang, Edwin E. Yaz, Chung Seop Jeong, Yvonne Ilke Yaz:
A resilient Extended Kalman Filter for discrete-time nonlinear stochastic systems with sensor failures. ACC 2012: 4783-4788 - [c35]Mohammad N. ElBsat, Edwin E. Yaz:
Robust and resilient finite-time bounded observer for a class of discrete-time nonlinear systems with nonlinear measurements. CDC 2012: 925-930 - [c34]Mohammad N. ElBsat, Edwin E. Yaz:
Robust and Resilient Finite-Time Control of a Class of Continuous-Time Nonlinear Systems. ROCOND 2012: 15-20 - 2011
- [j20]Chung Seop Jeong, Edwin Engin Yaz, Yvonne Ilke Yaz:
Lyapunov-based design of resilient mixed MSE-dissipative-type state observers for a class of nonlinear systems and general performance criteria. Int. J. Syst. Sci. 42(5): 789-800 (2011) - [j19]Chung Seop Jeong, Edwin E. Yaz, Yvonne Ilke Yaz:
Design of mixed H2-dissipative observers with stochastic resilience for discrete-time nonlinear systems. J. Frankl. Inst. 348(4): 790-809 (2011) - [c33]Chung Seop Jeong, Edwin Engin Yaz, Yvonne Ilke Yaz:
Resilient observer design for discrete-time nonlinear systems with general criteria. CCA 2011: 1157-1162 - [c32]Mohammad N. ElBsat, Edwin E. Yaz:
Mixed criteria control design with finite-time boundedness and H∞ property for a class of discrete-time nonlinear systems. CDC/ECC 2011: 3520-3525 - 2010
- [c31]Xin Wang, Edwin E. Yaz, Chung Seop Jeong:
Robust nonlinear feedback control of discrete-time nonlinear systems with mixed performance criteria. ACC 2010: 6357-6362 - [c30]Chung Seop Jeong, Fan Feng, Edwin E. Yaz, Yvonne Ilke Yaz:
Robust and resilient optimal controller design for a class of nonlinear system with general criteria. ACC 2010: 6363-6368 - [c29]Xin Wang, Edwin E. Yaz:
Robust multi-criteria optimal fuzzy control of continuous-time nonlinear systems. ACC 2010: 6460-6465 - [c28]Xin Wang, Edwin E. Yaz, Yvonne Ilke Yaz:
Robust and resilient state dependent control of continuous-time nonlinear systems with general performance criteria. CDC 2010: 603-608 - [c27]Xin Wang, Edwin E. Yaz:
Robust multi-criteria optimal fuzzy control of discrete-time nonlinear systems. CDC 2010: 4269-4274
2000 – 2009
- 2009
- [c26]Xin Wang, Edwin E. Yaz:
A new nonlinear-filter-based modulation/demodulation technique for chaotic communication. ACC 2009: 1876-1881 - 2008
- [c25]Chung Seop Jeong, Edwin Engin Yaz, Yvonne Ilke Yaz:
Lyapunov-based design of resilient observers for a class of nonlinear systems and general performance criteria. CCA 2008: 942-947 - [c24]Franck O. Hounkpevi, Edwin E. Yaz:
State estimation with sensor failure for discrete-time nonlinear stochastic systems. ACC 2008: 611-612 - 2007
- [j18]Franck O. Hounkpevi, Edwin E. Yaz:
Robust minimum variance linear state estimators for multiple sensors with different failure rates. Autom. 43(7): 1274-1280 (2007) - [j17]Edwin Engin Yaz, Chung Seop Jeong, Adil Bahakeem, Yvonne Ilke Yaz:
Discrete-time nonlinear observer design with general criteria. J. Frankl. Inst. 344(6): 918-928 (2007) - [j16]Franck O. Hounkpevi, Edwin E. Yaz:
Minimum variance generalized state estimators for multiple sensors with different delay rates. Signal Process. 87(4): 602-613 (2007) - [c23]Chung Seop Jeong, Edwin Engin Yaz, Yvonne Ilke Yaz:
An LMI Approach to Continuous-Time Observer Design with Stochastic Resilience. ACC 2007: 312-316 - [c22]Chung Seop Jeong, Edwin Engin Yaz, Yvonne Ilke Yaz:
Stochastically resilient design of H∞ observers for discrete-time nonlinear systems. CDC 2007: 1227-1232 - 2006
- [j15]Edwin E. Yaz:
Discussion on: "Application of Logarithmic-based Parameter and Upper Bounding Estimation Rules to Adaptive-Robust Control of Robot Manipulators". Eur. J. Control 12(2): 171-175 (2006) - [c21]Franck O. Hounkpevi, Edwin E. Yaz:
Third party demodulation of a chaotic communication scheme using adaptive estimation via parallel processing. ACC 2006 - [c20]Chung Seop Jeong, Edwin Engin Yaz, Adel Bahakeem, Yvonne Ilke Yaz:
Resilient design of observers with general criteria using LMIs. ACC 2006 - [c19]Franck O. Hounkpevi, Edwin E. Yaz:
A Current Output Stochastic Observer Design for Randomly Delayed Measurements. CDC 2006: 4757-4762 - 2005
- [j14]Edwin E. Yaz, Chung Seop Jeong, Yvonne Ilke Yaz, Adel Bahakeem:
Resilient design of discrete-time observers with general criteria using LMIs. Math. Comput. Model. 42(9-10): 931-938 (2005) - [c18]Edwin Engin Yaz, Chung Seop Jeong, Adil Bahakeem, Yvonne Ilke Yaz:
Nonlinear observer design with general criteria. ACC 2005: 3636-3640 - [c17]Tongyan Zhai, Edwin E. Yaz, Huawei Ruan:
Unbiased minimum variance estimator design for scalar quadratic maps. ACC 2005: 4034-4038 - 2004
- [c16]Edwin E. Yaz, Chung Seop Jeong, Mosleh Alotaibi:
Resilient design of Thau's observer using LMIs. ACC 2004: 3482-3483 - [c15]Huawei Ruan, Edwin E. Yaz, Tongyan Zhai, Yvonne Ilke Yaz:
A generalization of tent map and its use in EKF based chaotic parameter modulation/demodulation. CDC 2004: 2071-2075 - 2003
- [c14]Huawei Ruan, Tongyan Zhai, Edwin Engin Yaz:
A chaotic secure communication scheme with extended Kalman filter based parameter estimation. CCA 2003: 404-408 - [c13]Chung Seop Jeong, Edwin Engin Yaz, Yvonne Ilke Yaz:
Resilient design of discrete-time observers with general criteria using LMIs. CCA 2003: 1416-1419 - [c12]Huawei Ruan, Tongyan Zhai, Edwin Engin Yaz:
A demodulation scheme based on state estimation for chaotic digital communication. ACC 2003: 1614-1618 - [c11]Issac M. Tshiofwe, Mosleh Al-Harthi, Mosleh Alotaibi, Javid Amirazodi, Edwin E. Yaz:
A reduced-order compensator for suppression of process and measurement disturbances. ACC 2003: 3886-3891 - [c10]Tongyan Zhai, Huawei Ruan, Edwin E. Yaz:
Performance evaluation of extended Kalman filter based state estimation for first order nonlinear dynamic systems. CDC 2003: 1386-1391 - 2002
- [j13]Edwin Engin Yaz, Yvonne Ilke Yaz:
Optimal Dissipative Control of a Class of Discrete-time Nonlinear Stochastic Systems with General Criteria. Eur. J. Control 8(5): 445-452 (2002) - [c9]Zhen Z. Ye, Issac M. Tshiofwe, Mosleh Al-Harthi, Edwin E. Yaz:
High-gain observer for nonlinear density estimation of traffic networks. CDC 2002: 561-562 - 2001
- [j12]Edwin E. Yaz, Yvonne Ilke Yaz:
State estimation of uncertain nonlinear stochastic systems with general criteria. Appl. Math. Lett. 14(5): 605-610 (2001) - [c8]Edwin Engin Yaz, Yvonne Ilke Yaz:
LMI-based state estimator design for discrete-time stochastic systems with quadratic sum constraints. ACC 2001: 75-76 - [c7]Asad Azemi, Edwin Engin Yaz:
Full and reduced-order-robust adaptive observers for chaotic synchronization. ACC 2001: 1985-1990 - [c6]Edwin Engin Yaz, Asad Azemi:
A linear differential inequality approach to nonlinear observer design for chaotic synchronization. ACC 2001: 2509-2513 - [c5]Isaac M. Tshiofwe, Mosleh Alotaibi, Javid Amirazodi, Edwin E. Yaz:
An LMI-based disturbance reduction control for systems with multiple state and input delays. CDC 2001: 1444-1445 - [c4]Edwin Engin Yaz, Yvonne Ilke Yaz:
LMI based observer design for nonlinear systems with integral quadratic constraints. CDC 2001: 2954-2955 - [c3]Zhen Z. Ye, Javid Amirazodi, Mosleh Alotaibi, Isaac M. Tshiojk, Mosleh Al-Harthi, Edwin E. Yaz:
Single-sensor based nonlinear density estimation for traffic networks with multiple routes and sections. CDC 2001: 4146-4151 - 2000
- [j11]Edwin Engin Yaz, Yvonne Ilke Yaz:
Reduced-order filtering of jump Markov systems with noise-free measurements. J. Frankl. Inst. 337(7): 923-928 (2000) - [c2]Edwin Engin Yaz, Yvonne Ilke Yaz:
LMI-based state estimation of a class of uncertain nonlinear stochastic systems. CDC 2000: 1141-1142 - [c1]Edwin Engin Yaz, Yvonne Ilke Yaz:
Optimal control of discrete-time nonlinear stochastic systems with general criteria. CDC 2000: 2873-2874
1990 – 1999
- 1999
- [j10]Konrad Reif, Stefan Günther, Edwin E. Yaz, Rolf Unbehauen:
Stochastic stability of the discrete-time extended Kalman filter. IEEE Trans. Autom. Control. 44(4): 714-728 (1999) - [j9]Yvonne Ilke Yaz, Edwin E. Yaz:
On LMI formulations of some problems arising in nonlinear stochastic system analysis. IEEE Trans. Autom. Control. 44(4): 813-816 (1999) - 1998
- [j8]Edwin E. Yaz:
Linear Matrix Inequalities In System And Control Theory. Proc. IEEE 86(12): 2473-2474 (1998) - 1997
- [j7]Edwin E. Yaz:
Linear Matrix Inequalities In System And Control Theory [Book Reviews]. Proc. IEEE 85(4): 698-699 (1997) - [j6]Edwin E. Yaz:
Linear Matrix Inequalities In System And Control Theory [Book Review]. Proc. IEEE 85(5): 798-799 (1997) - [j5]Wittawat NaNacara, Edwin Engin Yaz:
Recursive estimator for linear and nonlinear systems with uncertain observations. Signal Process. 62(2): 215-228 (1997) - 1994
- [j4]Edwin Engin Yaz, Robert E. Skelton:
Parametrization of all linear compensators for discrete-time stochastic parameter systems. Autom. 30(6): 945-955 (1994) - 1993
- [j3]Edwin E. Yaz:
Comments on "On the robust control of robot manipulators by M.W. Spong. IEEE Trans. Autom. Control. 38(3): 511-512 (1993) - [j2]Edwin E. Yaz:
Optimal stochastic control for performance- and stability-robustness. IEEE Trans. Autom. Control. 38(5): 757-760 (1993) - [j1]Edwin E. Yaz, Xiaoru Niu:
New robustness bounds for discrete systems with random perturbations. IEEE Trans. Autom. Control. 38(12): 1866-1870 (1993)
Coauthor Index
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