基于模糊逻辑控制的新型升压逆变器太阳能单相动态电压恢复器的设计

M. Bajaj, A. Singh
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引用次数: 15

摘要

本文提出了一种节能可靠的基于光伏的单相动态电压恢复器(DVR)模型,以减轻对低压配电侧接入的敏感设备造成的严重电压跌落、电压膨胀和中断的影响。在短时间或长时间中断的情况下,它可以作为UPS满足负载的功率需求。模糊逻辑控制的新型升压逆变器提高了DVR系统的整体效率和动态性能。通过对太阳能的优化利用,以最小的电网能耗和最有效的方式解决配电系统的电压质量问题。所提出的DVR系统模型包括两个具有低功率DC - DC转换器、可充电电池、开关、基于模糊逻辑控制的SPWM的升压逆变器的光伏系统,该升压逆变器由两个DC - DC升压转换器和一个注入变压器实现。仿真结果验证了所提出的DVR模型在恢复配电低压侧电压跌落/膨胀和中断方面的有效性。所提出的DVR模型能够恢复高达0.1 p.u.的电压凹陷,并膨胀到1.9 p.u.的预凹陷电压。
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Designing of a Solar Energy based Single Phase Dynamic Voltage Restorer using Fuzzy Logic Controlled Novel Boost Inverter
In this work, an energy-efficient and reliable model of photovoltaic based single phase Dynamic Voltage Restorer (DVR) is proposed in order to mitigate severe voltage sags, swells, and interruptions affecting the sensitive equipment connected in low voltage distribution side. In case of short or long duration interruption, it can fulfil the load power requirement acting as a UPS. Fuzzy logic controlled novel boost inverter improves overall efficiency and dynamic performance of the DVR system. Further, it is also designed to solve the voltage quality problem of distribution system with the minimum usage of energy from the utility grid and in the most efficient way by making optimal usage of solar energy. The proposed DVR system model involves two PV systems with low power DC to DC converter, chargeable batteries, switches, fuzzy logic controlled SPWM based boost inverter implemented by two DC to DC boost converters and one injection transformer for each phase under sag/swell. The results obtained after simulation verifies the effectiveness of the proposed model of DVR in recovering the voltage sag/swell and interruption on the low voltage side of the distribution. The DVR model proposed is found capable of recovering voltage sag up to 0.1 p.u. and swell up to 1.9 p.u. of pre-sag voltage.
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