Field Demonstration of a Low-Cost NDVI-Guided Stepwise Variable-Rate Nitrogen Topdressing Applicator for Rice
Hasan Mirzakhaninafchi, Manjeet Singh, Apoorv Prakash, Santosh Kumar, Aseem Verma, Shikha Sharda, Jugminder Kaur, Parmar Raghuvirsinh, Ali Pirhadi Tavandashti, Ali Mirzakhani Nafchi, Glen Rains, Wesley PorterLow-cost variable-rate applicators are needed to translate crop-sensing nitrogen (N) recommendations into field-scale fertilizer delivery. This study presents a field demonstration of a normalized difference vegetation index (NDVI)-guided stepwise variable-rate granular urea topdressing applicator for rice in a single-site, single-season comparison with a uniform split-management treatment. The tractor-mounted system used an active optical canopy sensor, a deterministic NDVI-to-rate rule, pulse-width-modulation actuator control, and fluted-roller metering. Fertilizer rates are reported as urea product, with elemental N equivalents calculated from 46% N content. The uniform split-management treatment prescribed three 75.00 kg urea ha−1 splits, totaling 225.00 kg urea ha−1 seasonally. The NDVI-guided split-management treatment prescribed two fixed manual splits of 56.25 kg urea ha−1 each and used a sensor-guided third split at 45 days after transplanting. Because the first two splits differed between treatments, the comparison represents two complete split-management strategies rather than the isolated effect of the sensor-guided third application. The aggregate field-collection estimate for the sensor-guided third split was 100.92 kg urea ha−1, which was 25.92 kg urea ha−1 greater than the uniform third split; the estimated seasonal total was 213.42 kg urea ha−1, or 5.1% less than the prescribed uniform seasonal total because of the two lower early manual splits. Harvest measurements adjusted to 14% grain moisture showed mean grain yields of 7.35 and 8.02 t ha−1 for the uniform and NDVI-guided split-management treatments, respectively. Treatment-level partial factor productivity, calculated from treatment-mean yield and estimated seasonal N input, was 71.0 and 81.7 kg grain kg−1 N, respectively. These results show the effectiveness of the applicator within the tested split-management comparison; however, the retained records do not verify rate-class frequency, spatial as-applied delivery, or complete strip coverage, and the yield and partial-factor-productivity differences should not be attributed solely to NDVI sensing or variable-rate actuation.