Victron energy VBC-HV Скачать руководство пользователя страница 12

 

SETUP 

4.1 

Background information 

4.1.1 

Charge Efficiency Factor (CEF) 

During battery charging, not all of the energy transferred into the battery 
is available when the battery is being discharged. The charge efficiency 
factor (CEF) of a brand new battery is approximately 90 %. This means 
that 10 Ah must be transferred to the battery to get 9 Ah actually stored in 
the battery. The CEF of a battery will decrease as the battery ages. 

4.1.2 

Peukert’s exponent 

As mentioned in chapter 1.4, the Peukert efficiency describes how, when 
you discharge a battery faster than the 20 h rating, its Ah capacity 
decreases. The amount of battery capacity reduction is called the 
„Peukert exponent‟ and can be adjusted from 1.00 to 1.50. The higher the 
Peukert exponent the faster the battery size shrinks with increasing 
discharge rate. An ideal (theoretical) battery has a Peukert exponent of 
1.00 and has a fixed capacity; regardless of the size of the discharge 
current. Of course such batteries do not exist, and a setting of 1.00 in the 
VBC-HV is only implemented to bypass Peukert compensation. The 
default setting for the Peukert exponent is 1.25, and is an acceptable 
average value for most types of lead acid battery. However for precise 
battery monitoring, entering the right Peukert exponent is essential. If the 
Peukert exponent is not provided with your battery, you can calculate it 
by using other specifications which should be provided with your battery. 
 
The Peukert equation is stated below:  

t

n

I

Cp

 where the Peukert exponent, n = 

2

1

1

2

log

log

log

log

I

I

t

t

 

The battery specifications needed for calculation of the Peukert exponent, 
are the rated battery capacity (usually the 20 h discharge rate

1

) and for 

example a 5 h discharge rate

2

. See below for an example of how to 

define the Peukert exponent using these two specifications. 

                                                      

1

 Please note that the rated battery capacity can also be defined as the 10 h or even 5 h discharge rate. 

2

 The 5 h discharge rate in this example is just arbitrary. Make sure that besides the C20 rating (low discharge current) you 

choose a second rating with a substantially higher discharge current. 

Содержание VBC-HV

Страница 1: ...Manual EN VE Net Battery Controller 70 385V model VBC HV...

Страница 2: ......

Страница 3: ...PRODUCTS AND MAKES SUCH VICTRON ENERGY PRODUCTS AVAILABLE SOLELY ON AN AS IS BASIS IN NO EVENT SHALL VICTRON ENERGY B V BE LIABLE TO ANYONE FOR SPECIAL COLLATERAL INCIDENTAL OR CONSEQUENTIAL DAMAGES I...

Страница 4: ......

Страница 5: ...mpatible devices to communicate with each other This means that the charger for example can get information from the battery monitor to optimize the charge current It is possible to control and monito...

Страница 6: ...of the battery is low its capacity is decreased even more This is why simple Amp hour counters or Voltmeters give you far from an accurate state of charge indication The VBC HV can display both the A...

Страница 7: ...a short circuit and possibly an explosion 5 Remove personal metal items such as rings bracelets necklaces and watches when working with a battery A battery can produce a short circuit current high eno...

Страница 8: ...ller to a VE Net Panel or other VE Net device using a standard straight Cat5 cable The total length of Cat5 cables used in a VE Net network should not exceed 100m After installation and checking all t...

Страница 9: ...Net I T T GND VBC Battery system Relay connection Fuse 100mAT Temperature sensor Battery Vin max 385V VE Net Vin max 70V Figure 1 Battery negative System ground Battery positive Load Read the Safety...

Страница 10: ...chapter 4 1 3 for more information 3 2 Main menu To view more detailed information press the Enter button to enter the Battery Controller menu Name Description Units Battery voltage Displays the volta...

Страница 11: ...hes 100 again Amp hours Average discharge The average discharge over all the cycles counted Amp hours Number of cycles Every time the battery is discharged below 65 of its rated capacity and charged b...

Страница 12: ...uch batteries do not exist and a setting of 1 00 in the VBC HV is only implemented to bypass Peukert compensation The default setting for the Peukert exponent is 1 25 and is an acceptable average valu...

Страница 13: ...for a 12 V battery or 21 V for a 24 V battery A calculation example is shown below A 200 Ah battery is discharged with a constant current of 20 A and after 8 5 hours 1 75 V cell is reached So 20 h ra...

Страница 14: ...charging your battery not only keeps it in sync with the VBC HV but also prevents substantial capacity loss of your battery which limits its lifetime 4 1 4 Synchronisation parameters Based on increas...

Страница 15: ...current If the charge current is below this percentage of the battery capacity the battery can be considered as fully charged 4 1 10 1 Sync time The minimum time that the above two parameters must be...

Страница 16: ...the shunt at the maximum rated current 50 mV 1 100 1 Current offset Used to compensate for small errors in current measurement caused by unwanted offsets picked up by the measurement cables 0 A 60000...

Страница 17: ...arm 50 0 100 1 Low SOC clr The state of charge threshold that has to be reached to cancel an active state of charge alarm 80 0 100 1 Low SOC action The type of action to take when the alarm condition...

Страница 18: ...Supply current relay inactive 144V 5mA 288V 5mA Operating temperature range 0 50 C Potential free alarm contact Mode Normally open Rating 30V 3A max Dimensions VBC HV Housing 75 x 110 x 23mm 230x140x...

Страница 19: ......

Страница 20: ...n 06 Date 5 March 2010 Victron Energy B V De Paal 35 1351 JG Almere PO Box 50016 1305 AA Almere The Netherlands General phone 31 0 36 535 97 00 Customer support desk 31 0 36 535 97 03 Fax 31 0 36 535...

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