Title :
Electric vehicle and grid interface with modified PWM rectifier and DC-DC converter with power decoupling and unity power factor
Author :
Verma, Anil Kumar ; Singh, Bawa ; Shahani, D.T.
Author_Institution :
Indian Inst. of Technol. Delhi, New Delhi, India
Abstract :
In this paper, a configuration with modified single-phase H-bridge AC-DC converter for DC ripple compensation and power decoupling with a DC-DC converter for bidirectional power flow between PHEV (Plug in Hybrid Electric Vehicle) and power grid is proposed. It is well known that single-phase PWM voltage source converter (VSC) suffers from second-order ripple power and subsequent DC-link voltage pulsation. To reduce this low frequency pulsation of DC-link voltage and to obtain the sinusoidal grid current with unity power factor, a modified single-phase H-bridge PWM rectifier consisting of a conventional H-bridge PWM VSC and a pure passive auxiliary circuit is presented with a bidirectional DC-DC converter in order to ensure the bi-directional power flow management between PHEV and power grid at unity power factor and reduced ripple current. The modified H-bridge has the advantage of less number of switches and small DC link capacitor. First 230 V 50 Hz AC supply from source is converted to 400 V DC through single phase VSC and again the battery of EV or PHEV is charge in buck mode and discharge in boost mode with the help of bidirectional DC-DC buck - boost converter. In discharging mode, it delivers energy back to the grid at 230V, 50 Hz. A battery with a charging power of 3.6 kW at 120 V is used in PHEV.
Keywords :
DC-DC power convertors; PWM power convertors; PWM rectifiers; battery powered vehicles; capacitors; hybrid electric vehicles; load flow; power factor; power grids; secondary cells; DC link capacitor; DC ripple compensation; DC-link voltage low-frequency pulsation; H-bridge PWM VSC; PHEV; bidirectional DC-DC buck-boost converter; bidirectional power flow management; frequency 50 Hz; modified single-phase H-bridge AC-DC converter; modified single-phase H-bridge PWM rectifier; passive auxiliary circuit; plug in hybrid electric vehicle; power 3.6 kW; power decoupling; power grid interface; second-order ripple power; single-phase PWM VSC; single-phase PWM voltage source converter; sinusoidal grid current; unity power factor; voltage 120 V; voltage 230 V; voltage 400 V; Automotive electronics; Batteries; Pulse width modulation; Switches; Grid to Vehicle (G2V); Plug in hybrid Electric Vehicle (PHEV); Ripple Current; Vehicle to Grid (V2G); Voltage Source Converter (VSC);
Conference_Titel :
Power Electronics (IICPE), 2012 IEEE 5th India International Conference on
Conference_Location :
Delhi
Print_ISBN :
978-1-4673-0931-8
DOI :
10.1109/IICPE.2012.6450484