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A New Hybrid BAT-ANFIS-Based Power Tracking Technique for Partial Shaded Photovoltaic Systems

机译:基于混合BAT-ANFIS基于混合蝙蝠的功率跟踪技术,用于部分遮蔽光伏系统

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摘要

Photovoltaic (PV) power has proved to be the most reliable and sustainable technology as a primary source of power. The intermittent and fragmentary nature of solar energy has its own shortcomings due to which the PV system fails to meet the continuous demand of power structure set-up. Hence, optimization algorithm such as maximum power point tracking (MPPT) has been implemented to augment and improve the power efficiency of the PV system. Conventional techniques such as Incremental conductance and perturb and observe based MPPT fail to tackle the non-linearity and oscillations issue in tracking the maximum power especially when the array is shaded. MPPT is incorporated to overcome these limitations. Modern techniques such as artificial neural network, evolutionary algorithms (EA) and Fuzzy logic, can be additionally integrated into the system to select the desired algorithm to obtain maximum optimized output. In this research work, a BAT EA trained Adaptive Neuro-Fuzzy Inference System (ANFIS) based MPPT is implemented for a partially shaded PV array. A modified SEPIC converter controlled by BAT ANFIS ensures maximum power delivery to the load. The suggested technique is tested for various patterns of shading and the results reveals that the BAT ANFIS MPPT is advantageous.
机译:光伏(PV)功率已被证明是最可靠且可持续的技术作为主要电源。太阳能的间歇性和局部性质具有自身的缺点,因为PV系统无法满足电力结构设置的不断需求。因此,已经实现了最大功率点跟踪(MPPT)的优化算法来增加和提高PV系统的功率效率。传统技术,例如增量电导和扰动和基于的MPPT,不能在跟踪最大功率时解决非线性和振荡问题,特别是当阵列阴影时。将MPPT注入克服这些限制。现代技术,如人工神经网络,进化算法(EA)和模糊逻辑,可以另外集成到系统中以选择所需的算法以获得最大优化输出。在该研究工作中,基于BAT EA培训的自适应神经模糊推理系统(ANFIS)的MPPT用于部分阴影的PV阵列。由BAT ANFI控制的改进的SEPIC转换器可确保对负载的最大功率输送。测试所建议的技术对于各种阴影模式,结果表明,BAT ANFIS MPPT是有利的。

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