Skip to content
Open access

DESIGN OF A SOLAR-POWERED PADDY AND HUSK SEPARATOR MACHINE

Aug 2026 · EDUCATIONE · 0 citations · 26 references

Abstract

This study designed and implemented a prototype paddy-husk separator that integrates a 200 Wp off-grid photovoltaic (PV) power system with vibrating-sieve and pneumatic separation. The mechanical assembly uses a hollow-steel frame, a perforated sieve, an eccentric drive, and a fan, while the electrical subsystem comprises a solar panel, a solar charge controller, a 12 V battery, and a 1000 W inverter. Prototype tests were reported at input loads of 10, 15, and 20 kg. The measured AC load remained at 126-132 W, which is below the inverter power rating. The pulley ratio of a 50 mm motor pulley and a 12-inch driven pulley yields a calculated sieve-shaft speed of 196.85 rpm, compared with a 214 rpm design target. Under the reported test conditions, the highest observed processing capacity was 723 kg/h at a 15 kg input load, whereas the highest reported separation efficiency (86.2%) and the lowest reported loss (1.50%) occurred at 20 kg. These results demonstrate the feasibility of integrating off-grid PV power with dual mechanical-pneumatic separation at prototype scale. However, the study does not document paddy variety, moisture content, replicate-level variability, or the full mass-balance record used to reconstruct separation efficiency and losses; therefore, field reliability, solar autonomy, and broader performance claims require further validation.

Read PDF

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.