Abstract:With the development of science and technology, multi-converter systems are more and more popular in complex applications, and cascade is the most common connection mode. The stability of cascaded system (including small-signal stability and large-signal stability) is the key factor for reliable operation. Because of the nonlinear characteristic of power electronic converter, it is extremely difficult to analyze the large-signal stability of single stage and cascaded system directly. So, a simple and effective large-signal model is necessary for the large-signal stability analysis. Based on the energy conservation law, this paper proposes a novel large-signal model for Boost converter with peak current-mode control. This averaged model achieves order reduction and unification under different operation modes(such as CCM and DCM) under large signal disturbance. It is suitable to model and analyze the large signal stability of single stage and cascaded system due to its simplicity. The feasibility of proposed model is verified by simulation and experimental results.
杜韦静, 张军明, 张阳, 钱照明. 一种新型研究Boost电路大信号稳定性的模型[J]. 电工技术学报, 2013, 28(3): 188-194.
Du Weijing, Zhang Junming, Zhang Yang, Qian Zhaoming. A Novel Model for the Large-signal Stability Analysis of Boost Converter. Transactions of China Electrotechnical Society, 2013, 28(3): 188-194.
[1] 钱照明, 张军明, 谢小高, 等. 电力电子系统集成研究进展与现状[J]. 电工技术学报, 2006, 21(3): 1-14. Qian Zhaoming, Zhang Junming, Xie Xiaogao, et al. Progress in power electronic system integration[J]. Transactions of China Electrotechnical Society, 2006, 21(3): 1-14. [2] Wang F, Cass C J, Boroyevich D, et al. Overview of research activities at center for power electronics systems[C]. IEEE Electric Ship Technologies Symposium Conference, 2005: 28-33. [3] Blaabjerg F, Consoli A, Ferreira J A, et al. The future of electronic power processing and conversion[J]. IEEE Transactions on Power Electronics, 2005, 20(30): 715-720. [4] Middlerook R D. Input filter considerations in design and application of switching regulators[C]. IEEE Institute for Advanced Studies Annual Meeting, 1976: 91-107. [5] Zhang J M, Xie X G, Jiao D Z, et al. Stability problems and input impedance improvement for cascaded power electronic systems[C]. Applied Power Electronics Conference and Exposition, 2004: 1018-1024. [6] Robert W Erickson, Slobodan Cuk, Middlebrook R D. Large-signal modelling and analysis of switching regulators[C]. Power Electronics Specialists Conference, 1982: 240-250. [7] Liu Yanfei, Paresh C Sen. A general unified large signal model for current programmed DC-to-DC converters[J]. IEEE Transactions on Power Electronics, 1994, 9(4): 414-424. [8] Musavi F, Al Haddad K, Hadi Kanaan. A novel large signal modeling and dynamic analysis of paralleled DC/DC converters with automatic load sharing control[C]. IEEE International Conference on Industrial Technology, 2004: 536-541. [9] Wang Runxin, Liu Jinjun, Wang Hao, et al. Modeling current-mode-controlled power stages for simulating multiple-module inter-connected power supply systems[C]. IEEE Power Electronics Specialists Conference, 2007: 975-979. [10] Ali Emadi. Modeling and analysis of multiconverter DC power electronic systems using the generalized state-space averaging method[J]. IEEE Transactions on Industrial Electronics, 2004, 51(3): 661-668. [11] 王润新, 刘进军, 侯丹. 用于实现互联系统仿真的电源模块大信号模型[J]. 西安交通大学学报, 2009, 43(6): 76-81. Wang Runxin, Liu Jinjun, Hou Dan. Large-signal model of power supply modules for implementing inter-connected system simulations[J]. Journal of Xi’an Jiaotong University, 2009, 43(6): 76-81. [12] Pavljasevic S, Maksimovic D. Using a discrete-time model for large-signal analysis of a current- programmed Boost converter[C]. IEEE Power Electronics Specialist Conference, 1991: 715-721. [13] Francisco Guinjoan, Javier Calvente, Alberto Poveda, et al. Large-signal modeling and simulation of switching DC-DC converters[J], IEEE Transactions on Power Electronics, 1997, 12(3): 485-494. [14] Hui S Y R, Christos Christopoulos. Modeling nonlinear power electronic circuits with the transmission- line modeling technique[J]. IEEE Transactions on Power Electronics, 1995, 10(1): 48-54. [15] Tahami F, Mobed M, Molayee B. On piecewise affined large-signal modeling of PWM converters[C]. IEEE International Conference on Industrial Technology, 2006: 1419-1423. [16] 陆益明, 张波, 尹丽云. DC/DC变换器的切换仿射线性系统模型及控制[J]. 中国电机工程学报, 2008, 28(15): 16-22. Lu Yimin, Zhang Bo, Yin Liyun. Switched affine systems modeling and control of DC/DC converters[J]. Proceedings of the CSEE, 2008, 28(15): 16-22. [17] 陈明亮, 马伟明, 滕方宏. HS理论在DC/DC变换器建模及仿真中的应用[J]. 电力电子技术, 2007, 41(3): 86-88. Chen Mingliang, Ma Weiming, Teng Fanghong. Application of hybrid system theory in modeling and simulation of DC/DC converter[J]. Power Electronics, 2007, 41(3): 86-88.