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Discover Applied Sciences· 2026Q2

Taguchi–ANN-based performance optimization of a retrofit electronic seed metering unit

B. S. Madhusudan, H. L. Kushwaha, Adarsh Kumar, Roaf Ahmad Parray et al.

Short summary

A retrofit electronic seed metering unit achieved reliable green gram seed placement, with the D2 groove size (4.08 mm) producing spacing closest to the agronomic requirement (9.85–10.1 cm) at 1.5 km/h, yielding a Quality of Feed Index (QFI) over 88.5%.

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Key points

  • Retrofit electronic seed metering unit developed for green gram precision sowing.
  • D2 groove size (4.08 mm) at 1.5 km/h yielded optimal spacing (9.85–10.1 cm).
  • Achieved Quality of Feed Index (QFI) > 88.5%, miss index < 5.2%, and multiple index < 6.3% under optimal conditions.
  • ANN model accurately predicted performance with R > 0.98.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Uniform intra-row seed spacing is essential for maintaining an optimum plant population in green gram, where the recommended agronomic spacing is about 10 cm. Conventional ground-driven seed drills often produce irregular spacing because seed release depends on wheel motion and slip. To improve placement accuracy, a microcontroller-based electronic seed metering mechanism was developed as a retrofit attachment and evaluated using a laboratory sticky-belt test rig. Experiments were conducted at three forward speeds (1.5, 2.0 and 2.5 km h⁻¹) and three groove diameters corresponding to 120% (D1 = 4.45 mm), 110% (D2 = 4.08 mm) and 100% (D3 = 3.71 mm) of the geometric mean seed size. Seed distribution performance was assessed using quality of feed index (QFI), miss index and multiple index. Second-order quadratic regression and Taguchi design were applied for parameter optimization, and an artificial neural network (ANN) model was developed for performance prediction. Spacing increased with forward speed for all groove sizes due to reduced seed pickup duration. The D2 groove produced spacing closest to the agronomic requirement, giving 9.85–10.1 cm at 1.5 km h⁻¹. Under this condition, QFI exceeded 88.5%, while miss and multiple indices remained below 5.2% and 6.3%, respectively. The ANN model showed strong prediction capability ( R > 0.98). The developed retrofit electronic metering unit achieved reliable seed placement suitable for precision sowing of green gram.

The authors' abstract, as published at the source. Discover Applied Sciences, 2026 · DOI ↗

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Field: Civil and Structural Engineering

Civil and Structural EngineeringEngineering