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Implementation of SPV-powered water pumping system using non-isolated SC converter topology
Electrical Engineering ( IF 1.6 ) Pub Date : 2021-01-03 , DOI: 10.1007/s00202-020-01170-9
K. Vamshi Krishna Varma , A. Ramkumar

Plentiful accessibility of fuels, non-erratic, reliable performance, low maintenance, low cost and high life are the significant factors for solar-PV-powered water pumping scheme for irrigation applications. It is highly used in irrigation system for cultivation where the utility-grid is non-available, hilly areas, forests, etc., by utilizing solar source with energy conversion methodology. However, the performance of overall irrigation scheme relies on energy conversion methodology by using feasible DC–DC converter. In this paper, a novel non-isolated switching cell type DC–DC converter has been proposed for acquiring greater performance of Brushless-DC motor to lift the water from ponds or canal through submersible pump. This observation is clearly presented and validated under steady-state condition by using Xilinx FPGA SPARTAN-6 hardware prototype; results are carried out and compared with various converter topologies.

中文翻译:

使用非隔离 SC 转换器拓扑实现 SPV 供电的抽水系统

充足的燃料可及性、稳定、可靠的性能、低维护、低成本和长寿命是用于灌溉应用的太阳能光伏供电抽水方案的重要因素。通过利用太阳能和能量转换方法,它在没有公用电网、丘陵地区、森林等的灌溉系统中得到了广泛的应用。然而,整体灌溉方案的性能依赖于使用可行的 DC-DC 转换器的能量转换方法。在本文中,提出了一种新型非隔离开关单元型 DC-DC 转换器,以获得更高的无刷直流电机性能,以通过潜水泵从池塘或运河中抽取水。通过使用 Xilinx FPGA SPARTAN-6 硬件原型,可以在稳态条件下清楚地呈现和验证这一观察结果;执行结果并与各种转换器拓扑进行比较。
更新日期:2021-01-03
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