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Optimal Planning of a Stand-Alone Hybrid Energy Farm Encompassing Wind, PV, Diesel Generator and Storage Unit

机译:独立式混合动力电池包括风,光伏,柴油发电机和存储单元的最佳规划

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Continues supply of the microgrid is the main purpose of a power management system. A distinct approach to power generation planning of a stand-alone energy farm that consists of batteries, wind turbines, the PV system, and a diesel generator is presented in this work. At the first, the required energy of the microgrid is supplied by wind and PV systems. In the second phase, energy is supplied by an energy storage system (here batteries). The last priority is to use diesel generators to feed the microgrid in case of emergency. The presented planning considers uncertainties in power generation and aims to increase the reliability of planning and decrease installation costs over the project's lifetime. A Modified discrete harmony search (MDHS) and particle swarm optimization (PSO) algorithms are utilized in the optimization procedure. The system's components are modeled accurately, and the constraints are considered so far as possible. Real data of the load, wind, PV, battery, and diesel generator systems are used to provide a model for facing real-world situations. The charging process of the batteries is modeled realistically and is not modeled ideally. The proposed approach is tested on various operational scenarios to obtain the best results demonstrating the validity and efficiency of the proposed approach.
机译:继续供应MicroGrid是电源管理系统的主要目的。一个独特的方法,一个独立的能源农场由电池的发电规划,风力发电,光伏系统和柴油发电机在这项工作中提出。首先,通过风和光伏系统供应微电网的所需能量。在第二阶段,能量由能量存储系统(这里的电池)提供。最后的优先级是使用柴油发电机在紧急情况下馈送微电网。本计划考虑了发电的不确定性,旨在提高规划的可靠性,并降低项目的一生。在优化过程中使用了修改的离散和谐搜索(MDHS)和粒子群优化(PSO)算法。系统的组件精确地建模,并尽可能地考虑约束。负载,风,光伏,电池和柴油发电机系统的实际数据用于提供面向真实情况的模型。电池的充电过程是现实的建模的,并且无法理想地建模。在各种操作场景上测试了所提出的方法,以获得最佳结果,展示了所提出的方法的有效性和效率。

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