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PV integrated universal active power filter for power quality enhancement and effective power management

机译:PV集成通用电力滤波器,用于电力质量增强和有效电源管理

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This paper presents a new control scheme for solar photo-voltaic (PV) integrated universal active power filter (PV-UAPF). Here, the instantaneous power balance theory (IPBT) is proposed to extract the reference signals for shunt active filter (ShAPF) and series active power filters (SeAPF). Thereby, ShAPF will act as a pure sinusoidal voltage source and SeAPF will act as a pure sinusoidal current source. In the IPBT control scheme, the frequency locked loop (FLL) based modified reduced order generalized integrator (MROGI) is proposed to extract positive and negative sequence components (PNSC) and phase angle during adverse grid conditions. Also, the PV integration at the DC link will reduce demand on the supply system thereby reduces the burden on the utility grid. Hence, the proposed system combines both the benefits of clean energy generation along with power quality improvement. To validate the performance of the proposed system, simulation is developed in MATLAB, and results are verified. Also, the system performance is then verified in the hardware setup under various disturbances such as voltage sag/swell, load distortion, and change in PV power.(c) 2021 International Energy Initiative. Published by Elsevier Inc. All rights reserved.
机译:本文介绍了太阳能光伏(PV)集成通用电力滤波器(PV-UAPF)的新控制方案。这里,提出了瞬时电力平衡理论(IPBT)以提取分流有源滤波器(SHAPF)和串联有源电力滤波器(SEAPF)的参考信号。因此,Shapf将充当纯正弦电压源,Seapf将充当纯正弦电流源。在IPBT控制方案中,提出了基于频率锁定的环(FLL)改进的减少顺序广义积分器(MROGI),以在不利的栅格条件下提取正序和负序列组分(PNSC)和相角。此外,DC链路上的PV集成将减少对供应系统的需求,从而降低了实用电网的负担。因此,所提出的系统结合了清洁能源的益处以及电力质量改进。为了验证所提出的系统的性能,在MATLAB中开发了模拟,并验证了结果。此外,在各种干扰下的硬件设置中验证了系统性能,例如电压凹槽/膨胀,负载失真,以及PV电源的变化。(c)2021国际能源倡议。由elsevier Inc.出版的所有权利保留。

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