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Intelligent monitoring and controlling of the PV using hybrid controller system

机译:使用混合控制器系统智能监控和控制PV

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The capacity control of integrated technology systems by themselves now becomes an interesting area of research. The proposed management system for managing power transitions between the hybrid energy network and the power storage modules, which use the modified whale-based PID and fuzzy logic control systems, is configured to meet load requirements. A maximum power point (MPP) is obtained by using the optimizing the Iterative cuckoo optimization. The integrated controller is designed to move power from the hybrid system to the loading and release flows to optimize performance. To determine the efficiency of the management system, a hybrid system was developed, including the PV column, wind turbines, and proton exchange membrane fuel cell (PEMFC). A hybrid controller controls the stack temperature to improve the performance of hybrid power generation and boost its longevity. Throughout different organizational conditions, the complex actions of the theoretical model are observed. Real-time calculated parameters are used as inputs for the built method. The proposed model and its control strategy provide an effective method to improve the hybrid system efficiency of many intelligent applications.
机译:本身的集成技术系统的容量控制成为一个有趣的研究领域。建议用于管理混合能源网络与使用修改的鲸鱼的PID和模糊逻辑控制系统的电力存储模块之间的电力转换的管理系统,配置为满足负载要求。通过使用优化迭代杜鹃优化来获得最大功率点(MPP)。集成控制器旨在将电源从混合系统移动到加载和释放流以优化性能。为了确定管理系统的效率,开发了一种混合系统,包括PV柱,风力涡轮机和质子交换膜燃料电池(PEMFC)。混合控制器控制堆叠温度以提高混合动力发电的性能,提高其寿命。在不同的组织条件下,观察到理论模型的复杂行为。实时计算的参数用作构建方法的输入。所提出的模型及其控制策略提供了提高许多智能应用的混合系统效率的有效方法。

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