Hardware-inthe-Loop Methods for Real-Time Frequency-Response Measurements of on-Board Power Distribution Systems
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Tuomas Messo | Roni Luhtala | Tomi Roinila | Yin Sun | Alejandra Fabian | Rick Scharrenberg | Erik de Jong
[1] A.H. Tan,et al. The generation of binary and near-binary pseudo-random signals: an overview , 2001, IMTC 2001. Proceedings of the 18th IEEE Instrumentation and Measurement Technology Conference. Rediscovering Measurement in the Age of Informatics (Cat. No.01CH 37188).
[2] D. Maksimovic,et al. Integration of Frequency Response Measurement Capabilities in Digital Controllers for DC–DC Converters , 2008, IEEE Transactions on Power Electronics.
[3] Keith R. Godfrey,et al. Design of Ternary Signals for MIMO Identification in the Presence of Noise and Nonlinear Distortion , 2009, IEEE Transactions on Control Systems Technology.
[4] Rachid Beguenane,et al. Wind turbine emulator using OPAL-RT real-time HIL/RCP laboratory , 2014, 2014 26th International Conference on Microelectronics (ICM).
[5] Ai Hui Tan,et al. MAXIMUM LENGTH TERNARY SIGNAL DESIGN BASED ON NYQUIST POINT MAPPING , 2006 .
[6] Li Yao,et al. An improved pseudo-random binary sequence design for multivariable system identification(A16-395) , 2006, 2006 6th World Congress on Intelligent Control and Automation.
[7] Tuomas Messo,et al. Pseudo-Random Sequences in DQ-Domain Analysis of Feedforward Control in Grid-Connected Inverters , 2015 .
[8] Enrico Santi,et al. Wide bandwidth system identification of AC system impedances by applying pertubations to an existing converter , 2011, 2011 IEEE Energy Conversion Congress and Exposition.
[9] T. Messo,et al. Modeling the grid synchronization induced negative-resistor-like behavior in the output impedance of a three-phase photovoltaic inverter , 2013, 2013 4th IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG).
[10] Dushan Boroyevich,et al. Optimal control of three-phase embedded power grids , 2016, 2016 IEEE 17th Workshop on Control and Modeling for Power Electronics (COMPEL).
[11] Tuomas Messo,et al. Implementation of Real-Time Impedance-Based Stability Assessment of Grid-Connected Systems Using MIMO-Identification Techniques , 2018, IEEE Transactions on Industry Applications.
[12] Jian Sun,et al. Broadband methods for online grid impedance measurement , 2013, 2013 IEEE Energy Conversion Congress and Exposition.
[13] Keith R. Godfrey,et al. Ternary input signal design for system identification , 2007 .
[14] O. Nelles. Nonlinear System Identification , 2001 .
[15] Keith R. Godfrey,et al. Perturbation signals for system identification , 1993 .
[16] Tuomas Messo,et al. Online Grid-Impedance Measurement Using Ternary-Sequence Injection , 2018, IEEE Transactions on Industry Applications.
[17] Tomi Roinila,et al. Real-Time Stability Analysis and Control of Multiconverter Systems by Using MIMO-Identification Techniques , 2019, IEEE Transactions on Power Electronics.
[18] Damien Paire,et al. Fuel cell modeling With dSPACE and OPAL-RT real time platforms , 2014, 2014 IEEE Transportation Electrification Conference and Expo (ITEC).
[19] Jian Sun,et al. Impedance-Based Stability Criterion for Grid-Connected Inverters , 2011, IEEE Transactions on Power Electronics.
[20] Keith R. Godfrey,et al. Practical Issues in the Synthesis of Ternary Sequences , 2017, IEEE Transactions on Instrumentation and Measurement.
[21] Tuomas Messo,et al. MIMO-Identification Techniques for Rapid Impedance-Based Stability Assessment of Three-Phase Systems in DQ Domain , 2018, IEEE Transactions on Power Electronics.
[22] Tomi Roinila,et al. Online measurement of bus impedance of interconnected power electronics systems: Applying orthogonal sequences , 2017, 2017 IEEE Energy Conversion Congress and Exposition (ECCE).
[23] Ai Hui Tan,et al. Channel Identification of Concatenated Fiber-Wireless Uplink Using Ternary Signals , 2011, IEEE Transactions on Vehicular Technology.
[24] T. Messo,et al. Adaptive control of grid-connected inverters based on real-time measurements of grid impedance: DQ-domain approach , 2017, 2017 IEEE Energy Conversion Congress and Exposition (ECCE).
[25] Bo Wen,et al. AC Stability Analysis and dq Frame Impedance Specifications in Power-Electronics-Based Distributed Power Systems , 2017, IEEE Journal of Emerging and Selected Topics in Power Electronics.
[26] E. Santi,et al. A novel Passivity-Based Stability Criterion (PBSC) for switching converter DC distribution systems , 2012, 2012 Twenty-Seventh Annual IEEE Applied Power Electronics Conference and Exposition (APEC).
[27] X. Roboam,et al. More Electricity in the Air: Toward Optimized Electrical Networks Embedded in More-Electrical Aircraft , 2012, IEEE Industrial Electronics Magazine.
[28] Rik Pintelon,et al. System Identification: A Frequency Domain Approach , 2012 .
[29] Enrico Santi,et al. Stabilizing controller design for multi-bus MVDC distribution systems using a passivity based stability criterion and positive feed-forward control , 2015, 2015 IEEE Energy Conversion Congress and Exposition (ECCE).
[30] C. Saudemont,et al. Comparison of technical features between a More Electric Aircraft and a Hybrid Electric Vehicle , 2008, 2008 IEEE Vehicle Power and Propulsion Conference.
[31] M. Pipattanasomporn,et al. Real-time co-simulation platform using OPAL-RT and OPNET for analyzing smart grid performance , 2015, 2015 IEEE Power & Energy Society General Meeting.
[32] Marco Liserre,et al. Improving System Efficiency for the More Electric Aircraft: A Look at dc\/dc Converters for the Avionic Onboard dc Microgrid , 2017, IEEE Industrial Electronics Magazine.