Analisis Karakteristik Pengisian dan Pengosongan Baterai Menggunakan Sumber Listrik Tenaga Surya Untuk Pemompaan Air Irigasi
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Fakultas Matematika dan Ilmu Pengetahuan Alam
Abstract
This study examines the charging and discharging characteristics of batteries
powered by solar energy for irrigation water pumping. Batteries serve as energy
storage devices; therefore, understanding their charging and discharging
characteristics is essential to ensure optimal system performance. The objective of
this study is to determine the power storage characteristics of a 12 V 100 Ah VRLA
battery during charging without discharge, charging with discharge via a water
pump, and battery discharge to power the water pump. The research method used
was an experimental approach involving direct measurements on a solar power
system consisting of solar panels, a Solar Charge Controller (SCC), a 12 V 100 Ah
VRLA battery, an inverter, and a water pump as the load. Data collection was
performed under three operating conditions: charging without discharge, charging
with discharge via a water pump, and discharging the battery to power the water
pump. The measured parameters included current, voltage, and power in the PV
system. The measurement data was then used to calculate changes in ΔAH and SOC
to analyze the battery’s energy storage and discharge characteristics. The results
showed that under charging without discharge conditions, the SOC value increased
gradually at a rate influenced by solar intensity, resulting in a non-constant
charging current. Under charging-and-discharging conditions, the discharge
current exceeds the charge current, causing a continuous decrease in SOC because
the energy entering the battery is less than the energy consumed by the load.
Meanwhile, under discharging-only conditions, both SOC and battery voltage
decrease consistently due to energy consumption by the load. Based on the research
results, it can be concluded that battery characteristics are significantly influenced
by the balance between energy input and energy output. Managing the battery
discharge limit to 70% is necessary to maintain the service life and performance of
the PV system
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:: Finalisasi file repositori 27 Juli 2026_Kurnadi
