在健身微电网中使用模糊逻辑控制的高效能源管理,包括固定自行车、光伏发电和电池存储系统

IF 2.7 Q2 MULTIDISCIPLINARY SCIENCES
Abdelfattah El Azzab , Abdelmounime El Magri , Ilyass El Myasse , Rachid Lajouad
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引用次数: 0

摘要

本文介绍了一个健身房微电网的控制和能源管理系统,该系统集成了多辆固定自行车和一个光伏发电系统。这项工作的主要目的是研究通过并网逆变器使用直流母线为体育馆负荷供电的可行性,同时确保有效的能源管理和用户特定的操作。我们的方法的新颖之处在于实现模糊逻辑控制(FLC)策略,以在健身房微电网环境中实现多个控制目标,同时采用精细的能源管理算法,促进间歇性发电源和用户可变需求之间的能源流动。该系统包括几个子系统:(i)固定自行车通过交流/直流转换器连接到直流总线,作为间歇性电源;(ii)通过DC-DC升压变换器接口的光伏发电系统;(iii)健身房的负荷。主要控制目标如下:(a)每个固定自行车控制运动员所施加的速度以提取能量;(b)系统通过监测储能系统的电流和电压来确保对储能系统的保护;(c)从光伏系统中提取最大功率;(c)在将直流母线电压维持在指定参考值的情况下,达到所有目标。为了实现这些目标,采用了模糊逻辑控制方法,在管理系统的动态行为方面提供了适应性和鲁棒性。在MATLAB/Simulink环境下对系统的性能进行了验证,并进行了大量仿真,验证了所有控制目标的满足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient energy management using fuzzy logic control in a gym microgrid with stationary bikes, PV generation, and battery storage systems
This article presents the control and energy management system for a gym microgrid that integrates multiple stationary bikes and a photovoltaic (PV) generation system connected. The main objective of this work is to investigate the feasibility of powering gym loads using the DC bus through grid-tied inverters, while ensuring efficient energy management and user-specific operation. The novelty of our approach lies in the implementation of a fuzzy logic control (FLC) strategy to achieve multiple control objectives within the gym microgrid environment, alongside a refined energy management algorithm that facilitates the flow of energy between intermittent generation sources and the variable demand from users. The system comprises several subsystems: (i) stationary bikes connected to the DC bus via AC/DC converters acting as intermittent power sources; (ii) a PV generation system interfaced through a DC-DC boost converter; (iii) gym loads. The main control objectives are as follows: (a) each stationary bike control the speed applied by the athlete to extract energy; (b) the system ensures the protection of the energy storage system by monitoring its current and voltage; (c) Extract the maximum power available from the PV system; (c) all objectives are achieved while maintaining the DC bus voltage at a specified reference value. To achieve these objectives, a fuzzy logic control approach is employed, providing adaptability and robustness in managing the dynamic behavior of the system. The system’s performance is demonstrated using the MATLAB/Simulink environment, with numerous simulations confirming that all control objectives are met.
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来源期刊
Scientific African
Scientific African Multidisciplinary-Multidisciplinary
CiteScore
5.60
自引率
3.40%
发文量
332
审稿时长
10 weeks
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