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Modelling and simulation of grid power management with modified fuzzy logic based MPPT tracking with hybrid power energy system

机译:基于改进模糊逻辑的混合电力能源系统基于MPPT跟踪的电网电力管理建模与仿真

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The rapid use of distributed energy resources has increased as a supplement and also an alternative to large conventional grid power stations. However, the presence of non-linear loads in the utility grid will ultimately result to generation of the current and voltage harmonics and this in turn will hamper the power quality of the whole power system. Recently, the utility grids are accommodated with mixed energies which results in increase of complexities and various instabilities. The present paper is based on the improvement of power quality with hybrid power generating system comprising of both Wind and PV system. An improved fuzzy logic based MPPT is implemented for the hybrid system which provides maximum power and helps to attain a stable and reliable power from the generation system both for the loads and the utility grid, thus improving both the steady and dynamic behaviors of the whole generation system. A grid-connected control strategy is proposed keeping in view of the problems, which is based on the model of a hybrid system with load parallel in large system. The control strategy can not only make the full use of photovoltaic (PV) power, but can also maintain a synchronous voltage with a fluctuant reactive load. Two different P and Q based inverter control topologies are designed to provide a closed loop for both active and reactive power control for the hybrid system and maintaining an accurate synchronization of power quality of the utility grid. Thus, the inverter can be utilized as power converter which will inject the power generated from the renewable energy source to the grid and can also compensate the power quality disturbances and the load reactive power demand.
机译:作为大型常规电网电站的补充和替代,对分布式能源的快速利用已有所增加。但是,公用电网中非线性负载的存在最终将导致电流和电压谐波的产生,这反过来又会阻碍整个电力系统的电能质量。近来,公用电网容纳有混合能量,这导致复杂性和各种不稳定性的增加。本文基于包括风能和光伏系统的混合发电系统对电能质量的改进。为混合动力系统实现了一种改进的基于模糊逻辑的MPPT,该混合动力系统可提供最大功率,并有助于从发电系统获得负载和公用电网的稳定而可靠的功率,从而改善了整个发电系统的稳定和动态性能系统。针对这种问题,提出了一种并网控制策略,该策略基于大型系统中负载并行的混合系统模型。该控制策略不仅可以充分利用光伏(PV)功率,而且还可以在无功负载波动的情况下保持同步电压。设计了两种不同的基于P和Q的逆变器控制拓扑,以为混合系统的有功和无功控制提供闭环,并保持公用电网的电能质量的准确同步。因此,逆变器可以用作功率转换器,它将将从可再生能源产生的功率注入电网,并且还可以补偿功率质量扰动和负载无功功率需求。

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