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 Bidirectional DC-DC converters (BDC) buck / boost



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5. Bidirectional DC-DC converters (BDC) buck / boost: 
These converters have ability to flow energy in two directions due to 
presence of diodes that prevent the reverse flow of the current. Unidirectional 
converters can be converted into bidirectional converters by replacing diode with 
control switch in its structure as shown in fig3: 


236 
Fig 3. Structure of (BDC) buck / boost [8] 
These converters operate in two modes, buck (energy converts from high voltage 
HV to low LV) and boost (energy converts from low voltage LV to high HV), and 
Fig4 shows current waveform in both modes: 
Fig 4. Current waveform in both modes buck & boost [8] 
(Buck Mode): In this mode, switch Q1 and diode D2 enters into conduction 
depending on the duty cycle whereas the switch Q2 and diode D1 are off all the 
time. This mode can further be divided into two intervals depending on the 
conduction on the switch Q2 and diode D1 as shown in the Fig5. 
Interval 1 (Q1-on, D1-off; Q2-off, D2-Off): In this mode, the higher voltage 
supercapacitors will charge the inductor and the output capacitor will get charged 
by it. 
Interval 2 (Q1-off, D1-off; Q2-off, D2-on): In this mode, again since the 
inductor current cannot change instantaneously, it is discharged through the 
freewheeling diode D2.
Fig 5. Operation of converter in buck mode [9] 
The voltage across the load is stepped down as compared to the input 
voltage. Neglecting the voltage drops across the diode and the transistor: 
Voltage across LV BUS, VL = VH* 
(Boost Mode): In this mode, switch Q2 and diode D1 enters into conduction 
depending on the duty cycle whereas the switch Q1 and diode D2 are off all the 
time. This mode can further be divided into two intervals depending on the 
conduction on the switch Q1 and diode D2 as shown in the Fig6. 
Interval 1 (Q2-on, D2-off; Q1-off, D2-off): In this mode can be considered 


237 
to be short circuited, therefore the lower voltage charges the inductor and the 
inductor current goes on increasing till not the gate pulse is removed from the Q2. 
Also since the diode D1 is reversed biased in this mode and the switch Q1 is off, 
no current flows through the switch Q1. 
Interval 2 (Q1-off, D1-off; Q2-off, D2-on): In this mode can be considered 
to be opened circuited. Now, since the current owing through the inductor cannot 
change instantaneously, the polarity of the voltage across it reverses and hence it 
starts acting in series with the input voltage. Therefore, the diode D1 is forward 
biased and hence the inductor current charges the output capacitor C2 to a higher 
voltage. Therefore, the output voltage boosts up. 

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