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Tracking method for maximum power point (MPP) of tandem photovoltaic modules

A technology of maximum power point and photovoltaic modules, which is applied in photovoltaic power generation, instruments, and regulation of electrical variables, etc. It can solve the problems that the MPPT algorithm cannot quickly and accurately find the maximum power point, loss, and power oscillation energy of series photovoltaic modules

Active Publication Date: 2016-06-01
浙江裕禾检测有限公司
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  • Abstract
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Problems solved by technology

[0005] The purpose of the present invention is to solve the problem that the existing MPPT algorithm cannot quickly and accurately find the maximum power point of the series photovoltaic module, especially in the case of local shading, the output power-voltage curve of the series photovoltaic module has multiple peak intervals, which is prone to local optimization and the MPP. Problems such as energy loss caused by power oscillations occur, and a method is proposed to divide the multi-peak output power-voltage curve into multiple single-peak output power-voltage (P-U) intervals, and quickly locate the voltage value near the maximum power point in each single-peak interval. The method of obtaining the global MPP through the final tracking of MPPT by the incremental conductance method with adaptive variable step size

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  • Tracking method for maximum power point (MPP) of tandem photovoltaic modules
  • Tracking method for maximum power point (MPP) of tandem photovoltaic modules
  • Tracking method for maximum power point (MPP) of tandem photovoltaic modules

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Embodiment Construction

[0043] The present invention will be further described below in conjunction with the drawings and embodiments. It should be understood that the embodiments described here are only used to illustrate and explain the present invention, and therefore the content of this specific embodiment should not limit the protection scope of the present invention.

[0044] figure 1 It is a schematic diagram of four series-connected photovoltaic modules and voltage sampling circuits under partial shading and no shading. Among them, PVM1-PVM4 are all 60W photovoltaic modules. Under standard test conditions, the light intensity is 1000W / m 2 , At a temperature of 25℃, the open circuit voltage, short circuit current, voltage and current values ​​at the maximum power point are 21.1V, 3.8A, 17.1V and 3.5A, respectively. D1-D4 are the opposite parallel connections between the two ends of the corresponding photovoltaic modules. For bypass diodes, the conduction voltage is 0.7V, Vd1-Vd4 represents the vo...

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Abstract

The invention discloses a tracking method for a maximum power point (MPP) of tandem photovoltaic modules. The tracking method comprises the following steps of globally scanning by taking open-circuit voltage as starting voltage; dividing a multi-peak P-U curve into single-peak P-U intervals according to output voltage of the tandem photovoltaic modules when bypass diodes are conducted; taking the P-U curve as a single-peak interval when no bypass diodes are conducted; introducing a formula delta U(n)=N*ln-dI(n+1) / dU(n+1) / [I(n+1) / U(n+1)] in absolute terms, calculating at 0.4 to 0.8 time of P-U intervals of all the single peaks to obtain a voltage value U0 when a linear equation value of delta U (n) about the output voltage U of the tandem photovoltaic modules is 0, and adopting an incremental conductance method to track the MPP by taking the U0 as starting voltage and the delta U (n) as a step length voltage value; comparing to obtain global MPP and working voltage. According to the tracking method disclosed by the invention, the quickness and the accuracy of tracking the MPP by the tandem photovoltaic modules can be guaranteed, and the effect of reducing power oscillation and loss of a circuit can be guaranteed.

Description

Technical field: [0001] The invention relates to a method for tracking the maximum power point of series photovoltaic modules. Background technique: [0002] In recent years, as environmental and ecological problems have become increasingly prominent, the development of clean energy has become an inevitable trend in today’s economic and social development. Solar energy has become more and more popular for its clean, pollution-free, noise-free, inexhaustible, and inexhaustible characteristics. Favored by countries all over the world, my country is investing more and more in the photovoltaic industry. Although the scale of the photovoltaic power generation industry is getting larger and larger, the utilization efficiency of photovoltaic power generation is not too high. The main problem is how to configure the photovoltaic array to maximize the output power, and then propose the photovoltaic power generation maximum power point tracking (MPPT) technology. [0003] In the process of p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05F1/67
CPCG05F1/67Y02E10/56
Inventor 卫东王央康李志勇徐创陶泽炎童鹏常亚文高志
Owner 浙江裕禾检测有限公司
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