Design and Implementation of Modified Zeta Converter for Solar Water Pumping Application

Main Article Content

Vineeth Kumar P K
Jijesh J J
Niranjana C
Lakshmi Manasa B
Divakara M
Manju D

Abstract

The linear increase in the growth of the population demands a requisite for energy resources. Knowing the loathsome truth that non-renewable sources will ultimately exhaust, the significance of renewable sources cannot be undervalued. Considering various factors, many work areas are reliant upon fossil fuels for the generation of electricity. The use of fossil fuels will increase the quality of power production but will drain one day, and industries must change to renewable sources. The earliest system that strikes a chord with regard to renewable energy is the photovoltaic (PV) energy system. In this specific circumstance, interest in solar systems is expanding step by step, and its installations are becoming broad. The implementation of the solar water pumping method used for irrigation purposes using a Zeta converter was best suited for small and minor farmers, but still, the efficiency of the system can be upgraded with the use of filters. The vantage of the ZETA converter has less result voltage ripple and smooth water pumping application. The PV-based system has reached the point where it is used in Electric vehicles by enhancing the standard operating condition of the converter under the steady and dynamic behavior of a PV system. Eventually, it can be worked considerably under minimum solar irradiance. Maximum power point tracking (MPPT) of the signal had dominant performance in a zeta converter circuit while sign levels ripple current, and voltage on the output side was compact.

Article Details

How to Cite
Kumar P K, V. ., J J, J., C, N. ., Manasa B, L. ., M, D. ., & D, M. . (2023). Design and Implementation of Modified Zeta Converter for Solar Water Pumping Application. International Journal on Recent and Innovation Trends in Computing and Communication, 11(8s), 01–09. https://doi.org/10.17762/ijritcc.v11i8s.7170
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