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Research Article

A compensator design and stability margin monitor for digitally controlled DC-DC converters

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Received 30 May 2023, Accepted 03 Jun 2024, Published online: 26 Jun 2024

References

  • Abbas, G., U. Farooq, J. Gu, and M. U. Asad. 2014. “Graphical User Interface Based Controller Design for Switching Converters.” In Proceedings of International Conference on Information and Automation, Hailar, China, 28–30 July 2014. 1149–1153. New York: IEEE. doi: 10.1109/ICInfA.2014.6932822.
  • Ahmed, O. A., and J. A. M. Bleijs. 2010. “PSpice and Simulink Co-Simulation for High Efficiency DC-DC Converter Using SLPS Interface Software.” Proceedings of IET International Conference on Power Electronics, Machines and Drives, 19–21 April 2010. Brighton, UK. doi: 10.1049/cp.2010.0077.
  • Ahmeid, M., M. Armstrong, M. Al-Greer, and S. Gadoue. 2018. “Computationally Efficient Self-Tuning Controller for DC–DC Switch Mode Power Converters Based on Partial Update Kalman Filter.” IEEE Transactions on Power Electronics 33 (9): 8081–8090. doi: 10.1109/TPEL.2017.2768618.
  • Al-Atrash, H., and I. Batarseh. 2007. “Digital Controller Design for a Practicing Power Electronics Engineer.” In Proceedings of IEEE Applied Power Electronics Conference and Exposition, Anaheim, CA, USA, 25 February - 01 March 2007:34–41. New York. IEEE. doi: 10.1109/APEX.2007.357493.
  • Al-Greer, M., M. Armstrong, M. Ahmeid, and D. Giaouris. 2019. “Advances on System Identification Techniques for DC–DC Switch Mode Power Converter Applications.” IEEE Transactions on Power Electronics 34 (7): 6973–6990. doi: 10.1109/TPEL.2018.2874997.
  • Årström, K. J. 1991. “Assessment of Achievable Performance of Simple Feedback Loops.” International Journal of Adaptive Control and Signal Processing 5 (1): 3–19. doi: 10.1002/acs.4480050103.
  • Barkley, A., and E. Santi. 2009. “Improved Online Identification of a DC–DC Converter and Its Control Loop Gain Using Cross-Correlation Methods.” IEEE Transactions on Power Electronics 24 (8): 2021–2031. doi: 10.1109/TPEL.2009.2020588.
  • Bhardwaj, M., S. Choudhury, and B. Akin. 2018. “Auto Injection Control for In-Circuit Frequency Response Measurement.” IEEE Transactions on Industrial Electronics 65 (6): 5032–5039. doi: 10.1109/TIE.2017.2772173.
  • Bronstein, M. M. 2011. “Lazy Sliding Window Implementation of the Bilateral Filter on Parallel Architectures.” IEEE Transactions on Image Processing 20 (6): 1751–1756. doi: 10.1109/TIP.2010.2095020.
  • Channappanavar, R., and S. Mishra. 2018. “A Review of Compensator Design for Digital Controller Implementation for DC-DC Converters.” In Proceedings of IEEE Energy Conversion Congress and Exposition, Portland, OR, USA, 23–27 September 2018. 1401–1406. New York: IEEE. doi: 10.1109/ECCE.2018.8557908.
  • Chuang, C. C., S. T. Wu, H. J. Chiu, and Y. K. Lo. 2023. “Simulation and Implementation of a Harmonics Suppression Technique for a Single-Phase Full-Bridge Converters.” Journal of the Chinese Institute of Engineers 46 (2): 141–153. doi: 10.1080/02533839.2022.2161944.
  • Cui, X., and A. T. Avestruz. 2023. “Fast-Response Variable Frequency DC–DC Converters Using Switching Cycle Event-Driven Digital Control.” IEEE Transactions on Power Electronics 38 (7): 8190–8207. doi: 10.1109/TPEL.2023.3263516.
  • Dolgov, A., B. Miao, R. Zane, and D. Maksimovic. 2006. “GUI-Based Laboratory Architecture for Teaching and Research in Digital Control of SMPS.” In Proceedings of IEEE Workshops on Computers in Power Electronics, Troy, NY, USA, 16–19 July 2006. 236–239. New York: IEEE. doi: 10.1109/COMPEL.2006.305636.
  • Gietler, H., M. Kanzian, C. Unterrieder, A. Berger, R. Priewasser, M. Huemer, and H. Zangl. 2020. “On-Time Mismatch Based System Identification Technique for Buck Converters.” IEEE Transactions on Industrial Electronics 67 (9): 7898–7908. doi: 10.1109/TIE.2019.2939982.
  • Hu, H., V. Yousefzadeh, and D. Maksimovic. 2008. “Nonuniform A/D Quantization for Improved Dynamic Responses of Digitally Controlled DC–DC Converters.” IEEE Transactions on Power Electronics 23 (4): 1998–2005. doi: 10.1109/TPEL.2008.924845.
  • Kanzian, M., H. Gietler, C. Unterrieder, M. Agostinelli, M. Lunglmayr, and M. Huemer. 2019. “Low-Complexity State-Space-Based System Identification and Controller Auto-Tuning Method for Multi-Phase DC–DC Converters.” IEEE Transactions on Industry Applications 55 (2): 2076–2087. doi: 10.1109/TIA.2018.2878687.
  • Leng, C. W., C. H. Yang, and C. H. Tsai. 2008. “An Integrated GUI Design Tool for Digitally Controlled Switching DC-DC Converter.” In Proceedings of IEEE International Conference on Communications, Circuits and Systems, Xiamen, China, 25–27 May 2008. 1324–1327. New York: IEEE. doi: 10.1109/ICCCAS.2008.4658010.
  • Li, Z., L. Hang, Y. He, Z. He, A. Tong, D. Liu, and P. Zeng. 2023. “Sampled-Data Modeling and Stability Analysis of Digitally Controlled Buck Converter with Trailing-Edge and Leading-Edge Modulations.” IEEE Transactions on Power Electronics 38 (1): 177–194. doi: 10.1109/TPEL.2022.3192412.
  • Liu, J. Y., C. H. Yang, and C. H. Tsai. 2011. “Correlation-Based System Identification of Digitally Controlled SMPS.” In Proceedings of IEEE International Conference on Power Electronics and Drive Systems, Singapore, 5–8 December 2011. 1149–1152. New York: IEEE. doi: 10.1109/PEDS.2011.6147405.
  • Maksimovic, D., and R. Zane. 2007. “Small-Signal Discrete-Time Modeling of Digitally Controlled PWM Converters.” IEEE Transactions on Power Electronics 22 (6): 2552–2556. doi: 10.1109/TPEL.2007.909776.
  • Martinez, C., V. Valdivia, A. Lazaro, J. Lourido, I. Quesada, C. Lucena, P. Zumel, and A. Barrado. 2010. “Efficient CAD Tool for Power Electronics Compensator Design.” In Proceedings of IEEE Energy Conversion Congress and Exposition,Atlanta, GA, USA, 12–16 September 2010. 4507–4513. New York: IEEE. doi: 10.1109/ECCE.2010.5618420.
  • Morroni, J., R. Zane, and D. Maksimovic. 2009a. “Design and Implementation of an Adaptive Tuning System Based on Desired Phase Margin for Digitally Controlled DC–DC Converters.” IEEE Transactions on Power Electronics 24 (2): 559–564. doi: 10.1109/TPEL.2008.2007641.
  • Morroni, J., R. Zane, and D. Maksimovic. 2009b. “An Online Stability Margin Monitor for Digitally Controlled Switched-Mode Power Supplies.” IEEE Transactions on Power Electronics 24 (11): 2639–2648. doi: 10.1109/TPEL.2009.2029335.
  • Nanda, A., G. R. Chilukuri, and S. Kapat. 2023. “Frequency Domain Design Techniques in Digitally Voltage and Current Mode Controlled DC- DC Converters with Fast Transient Performance.” In Proceedings of IEEE Applied Power Electronics Conference and Exposition, Orlando, FL, USA, 19–23 March 2023. 762–768. New York: IEEE. doi: 10.1109/APEC43580.2023.10131401.
  • Peng, H., A. Prodic, E. Alarcon, and D. Maksimovic. 2007. “Modeling of Quantization Effects in Digitally Controlled DC–DC Converters.” IEEE Transactions on Power Electronics 22 (1): 208–215. doi: 10.1109/TPEL.2006.886602.
  • Peterchev, A. V., and S. R. Sanders. 2003. “Quantization Resolution and Limit Cycling in Digitally Controlled PWM Converters.” IEEE Transactions on Power Electronics 18 (1): 301–308. doi: 10.1109/TPEL.2002.807092.
  • Prodic, A., and D. Maksimovic. 2002. “Mixed-Signal Simulation of Digitally Controlled Switching Converters.” In Proceedings of IEEE Workshop on Computers in Power Electronics, Mayaguez, PR, USA, 3–4 June 2002. 100–105. New York: IEEE. doi: 10.1109/CIPE.2002.1196722.
  • Shirazi, M., J. Morroni, A. Dolgov, R. Zane, and D. Maksimovic. 2008. “Integration of Frequency Response Measurement Capabilities in Digital Controllers for DC–DC Converters.” IEEE Transactions on Power Electronics 23 (5): 2524–2535. doi: 10.1109/TPEL.2008.2002066.
  • Stefanutti, W., P. Mattavelli, S. Saggini, and M. Ghioni. 2007. “Autotuning of Digitally Controlled DC–DC Converters Based on Relay Feedback.” IEEE Transactions on Power Electronics 22 (1): 199–207. doi: 10.1109/TPEL.2006.886614.
  • Tsai, C.-H., C. H. Yang, and C. W. Leng. 2014. “Design and Implementation of a Digitally Controlled Single‐Inductor Dual‐Output (SIDO) Buck Converter.” International Journal of Circuit Theory and Applications 42 (3): 221–237. doi: 10.1002/cta.1844.
  • Tsai, C. H., C. H. Yang, J. H. Shiau, and B. T. Yeh. 2014. “Digitally Controlled Switching Converter with Automatic Multimode Switching.” IEEE Transactions on Power Electronics 29 (4): 1830–1839. doi: 10.1109/TPEL.2013.2265297.
  • Veerachary, M., and M. V. Reddy. 2010. “Robust Digital Controller for Fourth Order Converter.” Proceedings of IEEE Joint International Conference on Power Electronics, Drives and Energy Systems & 2010 Power India, New Delhi, India, 1–5. New York:. IEEE. 20–23 December 2010. doi: 10.1109/PEDES.2010.5712508.
  • Wang, J., S. Zhen, Y. He, P. Zeng, J. Chen, W. Zhou, P. Luo, and B. Zhang. 2018. “Digital PID Based on Pseudo Type-III Compensation for DC-DC Converter.” Proceedings of IEEE Asia Pacific Conference on Circuits and Systems, Chengdu, China, 20–23 December 2010. New York: IEEE. doi: 10.1109/APCCAS.2018.8605657.
  • Yang, C. H., C. N. Liu, and C. H. Tsai. 2010. “Direct Digital Compensator Design for Switching Converters.” Proceedings of IEEE International Symposium on Next Generation Electronics, Kaohsiung, Taiwan, 18–19 November 2010. 143–146. New York: IEEE. doi: 10.1109/ISNE.2010.5669179.
  • Zumel, P., C. Fernández, M. A. Granda, A. Lázaro, and A. Barrado. 2018. “Computer-Aided Design of Digital Compensators for DC/DC Power Converters.” Energies 11 (12): 1–21. doi: 10.3390/en11123251.
  • Zumel, P., M. Garcia-Valderas, A. Lazaro, C. Lopez-Ongil, and A. Barrado. 2010. “Co-Simulation PSIM-Modelsim Oriented to Digitally Controlled Switching Power Converters.” In Proceedings of IEEE Workshop on Control and Modeling for Power Electronics, Boulder, CO, USA, 28–30 June 2010. 1–7. New York: IEEE. doi: 10.1109/COMPEL.2010.5562420.

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