Utilizing ultra-capacitor energy storage in motor drives with cascaded multilevel inverters

This paper proposes two cascaded multilevel inverter topologies and corresponding control strategies applied to motor drive that interfaces single DC source and ultra-capacitor (UC) energy storage elements. In the first topology, a dynamic control method is developed, which allows the UC to provide reactive power to cancel lower order harmonics through a conditioning inverter both in steady state and transient state. Therefore, the bulk inverter supplied by the DC source can provide real power with reduced switching loss, improved efficiency, and better electromagnetic interference (EMI). In the second topology, the UC energy storage can be controlled not only to provide reactive power compensation, but to also provide real power to compensate for peak power demands such as braking and acceleration. The control scheme for this topology includes decoupled current control for independent active/reactive power compensation between DC source and energy storage, and voltage balancing control of energy storage elements. In order to analyze and verify the proposed control algorithms, co-simulation using Simulink and PSIM is used to formulate a detail system simulation platform, while utilizing a circuit model of a Maxwell Technologies UC pack. Experimental results will be presented in the final paper.

[1]  Bimal K. Bose,et al.  Modern Power Electronics and AC Drives , 2001 .

[2]  Hui Li,et al.  A novel ZVS-ZCS bidirectional DC-DC converter for fuel cell and battery application , 2004 .

[3]  L. Solero,et al.  Design of multiple-input power converter for hybrid vehicles , 2004, IEEE Transactions on Power Electronics.

[4]  Zhong Du,et al.  Control of a multilevel converter using resultant theory , 2003, IEEE Trans. Control. Syst. Technol..

[5]  Fang Zheng Peng,et al.  A multilevel voltage-source inverter with separate DC sources for static VAr generation , 1995, IAS '95. Conference Record of the 1995 IEEE Industry Applications Conference Thirtieth IAS Annual Meeting.

[6]  L. Solero,et al.  Design of multiple-input power converter for hybrid vehicles , 2004, Nineteenth Annual IEEE Applied Power Electronics Conference and Exposition, 2004. APEC '04..

[7]  Shuai Lu,et al.  A New Method of Utilizing Ultra-Capacitor Energy Sources in Hybrid Electric Vehicles Over a Wide Speed Range , 2007, APEC 07 - Twenty-Second Annual IEEE Applied Power Electronics Conference and Exposition.

[8]  Zhong Du,et al.  Inductorless DC-AC Cascaded H-Bridge Multilevel Boost Inverter for Electric/Hybrid Electric Vehicle Applications , 2007, 2007 IEEE Industry Applications Annual Meeting.