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A Smart Adaptive Switching Module Architecture Using Fuzzy Logic for an Efficient Integration of Renewable Energy Sources. A Case Study of a RES System Located in Hulubești, Romania

机译:一种智能自适应交换模块架构,采用模糊逻辑,以实现可再生能源的高效集成。位于罗马尼亚Hulubeşti的RES系统的案例研究

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摘要

Electricity generation from renewable energy sources (RES) has a common feature, that is, it is fluctuating, available in certain amounts and only for some periods of time. Consuming this electricity when it is available should be a primary goal to enhance operation of the RES-powered generating units which are particularly operating in microgrids. Heavily influenced by weather parameters, RES-powered systems can benefit from implementation of sensors and fuzzy logic systems to dynamically adapt electric loads to the volatility of RES. This study attempts to answer the following question: How to efficiently integrate RES to power systems by means of sustainable energy solutions that involve sensors, fuzzy logic, and categorization of loads? A Smart Adaptive Switching Module (SASM) architecture, which efficiently uses electricity generation of local available RES by gradually switching electric appliances based on weather sensors, power forecast, storage system constraints and other parameters, is proposed. It is demonstrated that, without SASM, the RES generation is supposed to be curtailed in some cases, e.g., when batteries are fully charged, even though the weather conditions are favourable. In such cases, fuzzy rules of SASM securely mitigate curtailment of RES generation by supplying high power non-traditional storage appliances. A numerical case study is performed to demonstrate effectiveness of the proposed SASM architecture for a RES system located in Hulubești (Dâmbovița), Romania.
机译:来自可再生能源(RES)的发电具有一个共同的特征,即它的波动,有一定的时间,只有一段时间。在可用时消耗该电力应该是增强在微电网中特别操作的RES动力发电机单元的操作的主要目标。受天气参数的严重影响,RES供电系统可以从实施传感器和模糊逻辑系统的实施中受益,以动态调整电荷的RES的波动率。本研究试图回答以下问题:如何通过涉及传感器,模糊逻辑和负载分类的可持续能源解决方案有效地将res到电力系统集成到电力系统?提出了一种智能自适应切换模块(SASM)架构,其通过基于天气传感器逐步切换电器,电力预测,存储系统约束和其他参数,有效地使用本地可用res的发电。据证明,没有痉挛,在某些情况下,res生成应该缩减,例如,当电池充满电时,即使天气条件有利。在这种情况下,通过提供高功率非传统储物设备,SASM的模糊规则安全地减轻了RES代的削减。进行了数值案例研究以证明所提出的SASM架构的有效性,该架构为位于Hulubeşti(Dâmboviţa),罗马尼亚的Res系统。

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