Kalkulator PV Off-Grid

Sila log masuk untuk menggunakan sistem ini.

Rekabentuk Sistem Solar PV Off-Grid

PETUNJUK BORANG:
Input Wajib Diisi (Pengguna)
Hasil Output Automatik (Sistem)
Langkah 1 & 2: Profil Beban DC & AC
Load (DC)Nos. nPower, P (W)Converter eff, ηUse, T (h)Energy, Edc (Wh)Max Demand, MDdc (W)Tindakan
Total Edc, (Wh)0.00
Total MDdc, (W)0.00
Load (AC)Nos. nPower, P (W)Power Factor, PFUse, T (h)Energy, Eac (VAh)Max Demand, MDacSurge Factor, sfSurge Demand, SdacTindakan
WVAWVA
Inverter Efficiency :
Total Eac, (Wh)0.00
Total MDac & Total Sdac (VA)0.000.00
Langkah 3: Pemilihan Voltan Sistem
TMD Period 10.00 W
System Voltage V
TSD Period 10.00 W

I load0.00 Ampere
I bat_sd0.00 Ampere
Langkah 4: Charge Required (Sizing Bateri)
Erequired0.00Wh
fstorageBattery storage factor
TautonomyDays of autonomy
Battery DOD MaxMaximum depth of discharge
TMD0.00W
Vsystem48V
Battery Block Volt.V
CbatAh
Cah_req0.00Ah
Tdischarge0.00h   C5
Ns_bat1unit(s) in series
Np_bat0.00 round up1
Cah_bank200 Ah
Energy of battery bank design9600 Wh
Langkah 5: Sizing Panel Solar & Pengawal Cas
Erequired0.00Wh
Peak sun HR (PSH) ? h
fovs pvOversizing factor
fclean
fdegrade
fmmp
Efficiency of CC
Efficiency of cable
nsub mppt0.00ratio
Tmod°C
ypmax (γ)%/°C
ftemp_pmax0.00
Pmax STCWp
Pmax Corr0.00W

Ntot pv cc mppt 0.00 round up 1 module
Rumusan & Visualisasi Aliran Tenaga Sistem
SEDA OGPV Status Compliance
SYSTEM BALANCED & OPTIMAL
100% DESIGN VALID
1. Solar Array
0 Wp
0 Modules
2. Charge Controller
MPPT Mode
1 Unit
3. Battery Bank
0 Wh
0 Ah @ 48V
4. Off-Grid Inverter
0 W
48V System
5. Total Load Demand
0 Wh/day
0 W (TMD)
Aliran Tenaga Harian 24-Jam (Solar, Beban & SOC Bateri)
Kapasiti Tenaga Komponen (Wh)