Martínez-Figueroa Gerardo de J, Córcoles Felipe, Bogarra Santiago
Department of Electrical Engineering, Escola Superior d'Enginyeries Industrial, Aeroespacial i Audiovisual de Terrassa, Universitat Politècnica de Catalunya, 08222 Terrassa, Spain.
Sensors (Basel). 2024 Feb 8;24(4):1121. doi: 10.3390/s24041121.
This paper introduces an FPGA-based implementation of a smart switch designed to avoid inrush currents occurring during the connection of single-phase transformers utilized in grid-connected photovoltaic (PV) systems. The magnitude of inrush currents is notably impacted by the residual flux within the transformer core and the precise moment of energization relative to the wave cycle. Alternative methods frequently hinge on intricate procedures to estimate residual flux. This challenge is adeptly circumvented by the innovative smart control system proposed herein, rendering it a cost-effective solution for grid-connected PV systems. The proposed solution for mitigating inrush current remains effective, even in the face of challenges with current and voltage sensors. This resilience arises from the system's ability to learn and adapt by leveraging information acquired from the network.
本文介绍了一种基于现场可编程门阵列(FPGA)实现的智能开关,该开关旨在避免在并网光伏(PV)系统中使用的单相变压器连接过程中出现浪涌电流。浪涌电流的大小受变压器铁芯内的剩磁以及相对于波形周期的精确通电时刻的显著影响。替代方法通常依赖于复杂的程序来估计剩磁。本文提出的创新智能控制系统巧妙地规避了这一挑战,使其成为并网光伏系统的一种经济高效的解决方案。所提出的减轻浪涌电流的解决方案即使在面对电流和电压传感器的挑战时仍然有效。这种弹性源于系统通过利用从网络获取的信息进行学习和适应的能力。