Evaluasi Performa Sistem Pemompaan Air Irigasi Berbasis Pembangkit Listrik Tenaga Surya
| dc.contributor.author | Wahyu Tri Widyatama | |
| dc.date.accessioned | 2026-07-27T06:32:05Z | |
| dc.date.issued | 2026-07-21 | |
| dc.description | :: Finalisasi file repositori 27 Juli 2026_Kurnadi | |
| dc.description.abstract | Limited access to conventional electricity in agricultural areas has driven the adoption of solar photovoltaic (PV) systems as an alternative energy source for irrigation. However, the actual performance of small-scale PV-based pumping systems under different operating conditions particularly the comparison between battery-charging-while-pumping mode and battery-only mode remains insufficiently quantified in experimental literature. This study evaluates the performance of a small-scale PLTS irrigation pumping system prototype under two distinct operating conditions: Configuration 1 (Panel + Battery + Pump), in which two 100 Wp polycrystalline panels connected in parallel (total 200 Wp) actively charge the battery while the pump operates; and Configuration 2 (Battery + Pump only), in which the pump is powered solely by the battery without solar panel contribution. The prototype consists of a PWM 30 A solar charge controller, a VRLA 12 V/100 Ah battery, a 1000 W modified sine wave (MSW) inverter, and a Shimizu SP-116 BIT 0.25 HP AC submersible pump (Qmax 45 l/min, Hmax 34 m), connected via 42.6 m of PVC pipe to a 3,600-liter tank with a calibrated sight glass. Each configuration was tested for 69 minutes at 3-minute intervals, repeated three times (144 data points total). Results revealed that Configuration 2 outperformed Configuration 1 in hydraulic productivity despite lower initial power (451.7 W vs. 538.8 W): it produced greater total water volume (641.6 l vs. 620.5 l), higher initial flow rate (15.4 vs. 13.5 l/min), higher average pump efficiency (5.56% vs. 4.62%), and lower specific energy consumption (0.656 vs. 0.790 Wh/l). The SOC decline rate was nearly identical (1.087 vs. 1.079 %/min), indicating the 200 Wp panel compensates only 25–30% of pump power demand. These findings demonstrate that DC voltage stability rather than absolute power magnitude is the primary determinant of pump performance in small-scale MSW inverter-based PV systems. | |
| dc.description.sponsorship | DPU: Prof. Drs. Agus Subekti, M.Sc., Ph.D. | |
| dc.identifier.uri | https://repository.unej.ac.id/handle/123456789/12071 | |
| dc.language.iso | other | |
| dc.publisher | Fakultas Matematika dan Ilmu Pengetahuan Alam | |
| dc.subject | battery state of charge | |
| dc.subject | DC voltage stability | |
| dc.subject | irrigation pump efficiency | |
| dc.subject | modified sine wave inverter solar PV pumping system | |
| dc.title | Evaluasi Performa Sistem Pemompaan Air Irigasi Berbasis Pembangkit Listrik Tenaga Surya | |
| dc.type | Other |
