Department of Electrical Engineering, College of Engineering, Prince Sattam Bin Abdulaziz University, Al-Kharj, Saudi Arabia.
Department of Electrical Power and Machines Engineering, Faculty of Engineering, Helwan University, Helwan, Egypt.
PLoS One. 2024 Apr 3;19(4):e0301516. doi: 10.1371/journal.pone.0301516. eCollection 2024.
The integration of renewable energy systems into electricity grids is a solution for strengthening electricity distribution networks (SEDNs). Renewable energies such as solar photovoltaics are suitable for reinforcing a low-voltage line by offering an electrical energy storage system. However, the integration of photovoltaic systems can lead to problems of harmonic distortion due to the presence of direct current or non-linear feedback in networks from other sources. Therefore, connection standards exist to ensure the quality of the energy before injection at a point of common coupling (PCC). In this work, particle swarm optimization (PSO) is used to control a boost converter and to evaluate the power losses and the harmonic distortion rate. The test on the IEEE 14 bus standard makes it possible to determine the allocation or integration nodes for other sources such as biomass, wind or hydrogen generators, in order to limit the impact of harmonic disturbances (LIHs). The evaluation of the harmonic distortion rate, the power losses as well as the determination of the system size is done using an objective function defined based on the integration and optimization constraints of the system. The proposed model performs better since the grid current and voltage are stabilized in phase after the photovoltaic source is injected.
将可再生能源系统集成到电网中是加强配电网(SEDN)的一种解决方案。太阳能光伏发电等可再生能源通过提供储能系统,非常适合增强低压线路。然而,由于网络中存在直流或来自其他源的非线性反馈,光伏系统的集成可能会导致谐波失真问题。因此,存在连接标准以确保在公共耦合点(PCC)注入之前的能源质量。在这项工作中,粒子群优化(PSO)用于控制升压转换器,并评估功率损耗和谐波失真率。对 IEEE 14 母线标准的测试使得能够确定生物质、风力或氢发电机等其他源的分配或集成节点,以限制谐波干扰的影响(LIHs)。使用基于系统集成和优化约束定义的目标函数来评估谐波失真率、功率损耗以及确定系统尺寸。由于在注入光伏电源后,电网电流和电压在相位上得到稳定,因此所提出的模型性能更好。