First off, thanks for the awesome information posted all over this forum.
I'm trying to size and arrive a cost for a 1.2Kw system for my apartment, for the cost part I would specially appreciate existing Indian users to come forward and help me.
Here we go:
-----------------
Determine the load in energy for a 24-hour period. Not the watts, but the watt-hours:
Device- W- Nos- Hrs/Day- WH/Day
CFL- 13- 4- 5- 260
Fan- 43- 3- 18- 2322
TV- 165-2- 4- 1320
Total: 3902 Watt/hr/daily
Total load at any given time: 511 watts (devices X w X Nos)
Determine the size of the solar array to be used: 3902X1.5 = 5853whr
DETERMINE SOLAR INSOLATION IN HOURS: 4.67kWh/m2/day
DETERMINE THE SIZE OF THE SOLAR PANEL ARRAY: 5853/4.67 = 1253 watts
DETERMINE BATTERY SIZE:
1 day backup and 50% discharge cycle: 3902 *2 = 7804 watts
Using 48v batteries: 7804/48 = 163Ah
DETERMINE CHARGE CONTROLLER SIZE IN AMPS: 1253/48 = 26Amp MPPT
Pure Since wave Inverter = Upper ceiling of Total load at a given time = ceiling of 511w = 600/650VA
------------------
Now for the queries:
1. I've taken only a 1 day backup time for the batteries since I stay in a Metro area and I do not have power cuts more than 2-3 hr. So 1 day backup should cover me for the power cuts as well let me use the energy at night time. Hope this assumption is correct.
2. I think finding a 165Ah/48v battery is difficult, I can see more of 24v and 12v around. I would be more happy with a single 165Ah/48v to maintain and that I have a space crunch. Any ideas ?
3. Is my calculation for Inverter correct ? or for that matter is there anything I missed our in the entire calculations ?
-------------------
Final BOQ for the system:
1. PV Panels 240w X 5
2. Charge Controller (48v / 30a / 1400w max) X 1
3. Sukam Shiny 650 VA Inverter (Pure Sinewave) X 1
4. Batteries 163AH/48V - FEI0-IN2000PLUS(200Ah/48v) X 1
5. Copper Wiring - As required.
6. Panel Mounting Stands - Any good local availability ?
I'm trying to size and arrive a cost for a 1.2Kw system for my apartment, for the cost part I would specially appreciate existing Indian users to come forward and help me.
Here we go:
-----------------
Determine the load in energy for a 24-hour period. Not the watts, but the watt-hours:
Device- W- Nos- Hrs/Day- WH/Day
CFL- 13- 4- 5- 260
Fan- 43- 3- 18- 2322
TV- 165-2- 4- 1320
Total: 3902 Watt/hr/daily
Total load at any given time: 511 watts (devices X w X Nos)
Determine the size of the solar array to be used: 3902X1.5 = 5853whr
DETERMINE SOLAR INSOLATION IN HOURS: 4.67kWh/m2/day
DETERMINE THE SIZE OF THE SOLAR PANEL ARRAY: 5853/4.67 = 1253 watts
DETERMINE BATTERY SIZE:
1 day backup and 50% discharge cycle: 3902 *2 = 7804 watts
Using 48v batteries: 7804/48 = 163Ah
DETERMINE CHARGE CONTROLLER SIZE IN AMPS: 1253/48 = 26Amp MPPT
Pure Since wave Inverter = Upper ceiling of Total load at a given time = ceiling of 511w = 600/650VA
------------------
Now for the queries:
1. I've taken only a 1 day backup time for the batteries since I stay in a Metro area and I do not have power cuts more than 2-3 hr. So 1 day backup should cover me for the power cuts as well let me use the energy at night time. Hope this assumption is correct.
2. I think finding a 165Ah/48v battery is difficult, I can see more of 24v and 12v around. I would be more happy with a single 165Ah/48v to maintain and that I have a space crunch. Any ideas ?
3. Is my calculation for Inverter correct ? or for that matter is there anything I missed our in the entire calculations ?
-------------------
Final BOQ for the system:
1. PV Panels 240w X 5
2. Charge Controller (48v / 30a / 1400w max) X 1
3. Sukam Shiny 650 VA Inverter (Pure Sinewave) X 1
4. Batteries 163AH/48V - FEI0-IN2000PLUS(200Ah/48v) X 1
5. Copper Wiring - As required.
6. Panel Mounting Stands - Any good local availability ?
Comment