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Journal ArticleDOI

Enhanced Power Generation From PV Array Under Partial Shading Conditions by Shade Dispersion Using Su Do Ku Configuration

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TLDR
In this paper, the physical location of the modules in a total cross-tied (TCT) connected PV array is arranged based on the Su Do Ku puzzle pattern so as to distribute the shading effect over the entire array.
Abstract
Partial shading of PV arrays reduces the energy yield of PV systems and the arrays exhibit multiple peaks in the P-V characteristics. The losses due to partial shading are not proportional to the shaded area but depend on the shading pattern, array configuration and the physical location of shaded modules in the array. This paper presents a technique to configure the modules in the array so as to enhance the generated power from the array under partial shading conditions. In this approach, the physical location of the modules in a Total Cross Tied (TCT) connected PV array are arranged based on the Su Do Ku puzzle pattern so as to distribute the shading effect over the entire array. Further, this arrangement of modules is done without altering the electrical connection of the modules in the array. The Su Do Ku arrangement reduces the effect of shading of modules in any row thereby enhancing the generated PV power. The performance of the system is investigated for different shading patterns and the results show that positioning the modules of the array according to “Su Do Ku” puzzle pattern yields improved performance under partially shaded conditions.

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Citations
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Control Issues in Single-Stage Photovoltaic Systems: MPPT, Current and Voltage Control

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Particle Swarm Optimization Based Solar PV Array Reconfiguration of the Maximum Power Extraction Under Partial Shading Conditions

TL;DR: In this paper, an alternative to physical relocation based on particle swarm optimization (PSO) connected modules is proposed, where the physical location of the modules remains unchanged, while its electrical connections are altered.
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Maximum power point tracking algorithms for photovoltaic system – A review

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Solar PV array reconfiguration under partial shading conditions for maximum power extraction using genetic algorithm

TL;DR: In this paper, an optimization based approach for total cross-tied (TCT) connected modules in a PV array is presented, where the physical locations of the modules remain unchanged while the electrical connections are altered.
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A comprehensive review on protection challenges and fault diagnosis in PV systems

TL;DR: An in depth analysis of various fault occurrences, protection challenges and ramifications due to undetected faults in PV systems is carried out.
References
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Journal ArticleDOI

Review of Nonisolated High-Step-Up DC/DC Converters in Photovoltaic Grid-Connected Applications

TL;DR: A general conceptual circuit for high-step-up, low-cost, and high-efficiency dc/dc conversion is proposed to derive the next-generation topologies for the PV grid-connected power system.
Journal ArticleDOI

MATLAB-Based Modeling to Study the Effects of Partial Shading on PV Array Characteristics

TL;DR: In this paper, a MATLAB-based modeling and simulation scheme is presented for studying the I-V and P-V characteristics of a PV array under a nonuniform insolation due to partial shading.
Journal ArticleDOI

Maximum Power Point Tracking Scheme for PV Systems Operating Under Partially Shaded Conditions

TL;DR: A novel algorithm to track the global power peak under partially shaded conditions and a feedforward control scheme for operating the DC-DC converter is proposed, which uses the reference voltage information from the tracking algorithm to shift the operation toward the MPP.
Journal ArticleDOI

High-Performance Adaptive Perturb and Observe MPPT Technique for Photovoltaic-Based Microgrids

TL;DR: In this article, a design example is presented by experimental implementation of the proposed technique and practical results for the implemented setup at different irradiance levels are illustrated to validate the proposed scheme.
Journal ArticleDOI

Implementation of a DSP-controlled photovoltaic system with peak power tracking

TL;DR: A simple method of tracking the maximum power points (MPPs) and forcing the system to operate close to these points is presented, and the principle of energy conservation is used to derive the large- and small-signal model and transfer function.
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