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An Improved Control Technique for Grid Interactive 4-Phase SRM Driven Solar Powered WPS Using Three-Level Boost Converter

机译:一种使用三级升压转换器电网交互式4相SRM驱动太阳能WPS的改进控制技术

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This article aims to develop a unique configuration of a solar-powered water pumping system (SPWPS), which ensures an uninterruptable water supply along with the earning possibility for the consumer. This water pumping system utilizing the switched reluctance motor drive, needs no current sensor on the motor side to run the system. The concept of integrating the grid to the SPWPS as an electrical energy storage device, provides assistance against the fluctuations in power, minimum electricity cost and earns from excess of photovoltaic power. An efficient control logic for grid-side voltage source converter is developed in this article. It has multiple intends like to regulate the desired dc-link voltage, to maintain the power quality and to improve the dynamic responses. This controller incorporates the second- and third-order generalized integrator-based filter for fundamental component extraction of grid voltage and has the benefits of both the filters. Moreover, the new control logic for dual output boost converter as a maximum power point tracking converter is also proposed in this article. It helps to simultaneously maximize the solar power as well as to nullify the voltage asymmetry across both dc-link split capacitors of a mid-point converter under all operating modes. The applicability of the developed arrangement with designed control logic is verified by experimental results.
机译:本文旨在开发太阳能水泵系统(SPWP)的独特配置,可确保不间断供水以及消费者的盈利可能性。该水泵系统采用开关磁阻电机驱动,在电机侧不需要电流传感器以运行系统。将电网集成到SPWP作为电能存储装置的概念,为电力波动,最小电力成本和超越光伏电力提供辅助。本文开发了电网侧电压源转换器的有效控制逻辑。它有多次拟想来调节所需的直流电压,以保持功率质量并改善动态响应。该控制器采用了基于第二和三阶通用积分器的滤波器,用于电网电压的基本组件提取,并且具有滤波器的益处。此外,本文还提出了作为最大功率点跟踪转换器的双输出升压转换器的新控制逻辑。它有助于同时最大化太阳能,并在所有操作模式下都在中间点转换器的两个直流链路分离电容上无效的电压不对称。通过实验结果验证了开发布置与设计控制逻辑的适用性。

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