A Study on Significance of Forward Speed of Tractor and Peripheral Speed of Rotavator for Optimal Field Performance

2021-26-0099

09/22/2021

Authors Abstract
Content
The trace of rotavator blade is trochoidal path which depends both on tractor forward speed and rotational speed of rotavator. Since this path plays an important role in Pulverization, hence pulverization also depends on both factors. In present days system, Rotavator an active tillage implements drawn by tractor is operated by drivers experience and driver set up the speed by throttling the tractor to reach the rated 540 PTO RPM mark in instrumentation cluster. Thus, there is no indication system available to farmer/ Tractor driver to operate the tractor connected rotavator at optimal forward tractor speed and rotational speed of rotavator. Thus, leading to decrease in field quality and performance. This problem statement was taken up in this research and an indicative system was developed to indicate the optimal region of rotavator operation which depends on forward speed of tractor and rotational speed of rotavator for different soil conditions namely soft, medium and hard to be selected by farmer by defining a kinematic parameter( Ratio of both speeds) and displayed the optimum zone on the Mobile App. Hall effect speed sensors were used to calculate the speed and controller processes both the speeds to define the kinematic parameter. The system developed was validated and tested which gave 10% increase in field quality and performance compared to present day operated rotavators concluding the significance of forward speed of tractor and peripheral speed of rotavator for better field performance. Keywords: Rotavator, Pulverization, Speed, Field quality & Mobile App.
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Citation
Saravanan, N., soni, R., Arjun, P., singha, P. et al., "A Study on Significance of Forward Speed of Tractor and Peripheral Speed of Rotavator for Optimal Field Performance," SAE Technical Paper 2021-26-0099, 2021, .
Additional Details
Publisher
Published
Sep 22, 2021
Product Code
2021-26-0099
Content Type
Technical Paper
Language
English