Simulation and Analysis of Optimal Power Injection System Based on Intelligent Controller

Abdullah Sami Assaf, S. Kurnaz
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引用次数: 0

Abstract

Many countries are seeing significant improvements in the fields of building, urban planning, technology, network management, and the need for diverse forms of energy and different generating techniques, as well as the necessity for low and middle distributing voltage in all areas. Depending on the needs of the user, starting needs, capacity, intended usage, waste output, and economic efficiency, many methods are used to generate this energy. To solve the problems brought on by the suggested excessive voltage of the provided system, energy collection devices can be used, and they can be used efficiently with smart grid intelligent control systems. A mathematical model was developed with four main components: simulation, correlation, and evaluation following the solar the program was set of photovoltaic panels solar panels, An Adaptive Neuro-Fuzzy Inference System (ANFIS) controller based on Maximum Power Point Tracking (MPPT), as well as 600-volt electric network, in order to examine and analyze the viability of the proposed network collaboration and storage of electricity in private photovoltaic networks based on solar energy. This phase next looks at the output power impact on the network, as well as the influence of network temperature and coincident radiation. An analysis was conducted to ascertain the impact of these basic limitations on actual use. This section covers the computer simulation of the proposed system. The final section contains the created system's block diagram. The system's input light is transformed into electricity that circulates in this system's power. The main electrical system with a 600-volt capacity can use this energy. The suggested system was evaluated using MATLAB simulation tapes and graphing for each system component, and the simulation outcomes of the entire system were considered.
基于智能控制器的最佳动力喷射系统仿真与分析
许多国家在建筑、城市规划、技术、网络管理等领域都取得了重大进步,需要多种形式的能源和不同的发电技术,还需要在所有地区采用中低压配电。根据用户的需求、起始需求、容量、预期用途、废物产出和经济效益,可以使用多种方法来产生这些能源。为了解决所提供系统的建议电压过高所带来的问题,可以使用能量收集装置,这些装置可以与智能电网智能控制系统一起有效使用。开发的数学模型包含四个主要部分:仿真、相关性和评估,根据太阳能程序设置了光伏板太阳能电池板、基于最大功率点跟踪(MPPT)的自适应神经模糊推理系统(ANFIS)控制器以及 600 伏电网,以检查和分析拟议的网络协作的可行性,以及基于太阳能的私人光伏网络中的电力存储。下一阶段将研究输出功率对网络的影响,以及网络温度和重合辐射的影响。我们进行了一项分析,以确定这些基本限制对实际使用的影响。这一部分包括拟议系统的计算机模拟。最后一部分是创建的系统框图。系统的输入光被转化为电力,在系统的电源中循环。容量为 600 伏的主电力系统可以使用这些电能。建议的系统使用 MATLAB 仿真磁带和图表对每个系统组件进行了评估,并考虑了整个系统的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.70
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0.00%
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