Control system and control method for improving output efficiency of photovoltaic array under partial shadow

A photovoltaic array and partial shading technology, which is applied in control/regulation systems, output power conversion devices, photovoltaic power generation, etc., can solve the problems of cost increase, cost increase, and many DC-DC converters, so as to improve power generation efficiency, Easy to implement, the effect of maximum output power increase

Active Publication Date: 2017-05-31
GUANGXI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Later, some literatures proposed a reconfigurable photovoltaic power generation system, that is, the photovoltaic array is divided into a fixed part and a movable part. The constructed photovoltaic array does not have any shading, so as to achieve the purpose of improving efficiency, but in the absence of partial shading, the active part is idle, wasting resources and increasing costs
[0004] To sum up, the existing methods to improve the efficiency of photovoltaic systems under partial shading have their own shortcomings, and the method of only using parallel bypass diodes and blocking diodes is simple, but its effect is not obvious; Photovoltaic power generation systems require more DC-DC converters, which increases the cost sharply; and the reconstructed photovoltaic power generation system generates idle photovoltaic arrays under sunny conditions, which also increases the cost.

Method used

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  • Control system and control method for improving output efficiency of photovoltaic array under partial shadow
  • Control system and control method for improving output efficiency of photovoltaic array under partial shadow
  • Control system and control method for improving output efficiency of photovoltaic array under partial shadow

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0042] like figure 2 As shown, the TCT structure photovoltaic array of this embodiment is partially blocked by the shadow formed by clouds, and the shadow detection module detects that the photovoltaic module 2, photovoltaic module 3, photovoltaic module 7, and photovoltaic module 8 in the photovoltaic array are all blocked by the shadow, and the DSP According to the detection results of the shadow detection module, the controller controls the switching off of the switches in each switch group to realize the discretization of shadows. After discretization, it is necessary to ensure that even-numbered photovoltaic modules are not covered by shadows. Photovoltaic module 8 performs position exchange with other odd-numbered photovoltaic modules without shadows, that is, the independent switch S is turned off at the same time 1 , independent switch S 1 ′, independent switch S 2 and independent switch S 2 ’ and at the same time close the linkage switch S 21 , linkage switch S ...

Embodiment 2

[0045] The TCT structure photovoltaic array of this embodiment is partially blocked by the shadow formed by the mountain, and the shadow detection module detects that the photovoltaic module 3, photovoltaic module 4 and photovoltaic module 9 in the photovoltaic array are all blocked by the shadow, and the DSP controller according to the shadow detection module As a result of the test, the discretization of shadows is realized by controlling the switching on and off of the lights in each switch group. After discretization, it is necessary to ensure that even-numbered photovoltaic modules are not shaded, so at this time, it is only necessary to separate photovoltaic modules 4 and other odd-numbered modules that do not have shadows. Photovoltaic modules exchange positions, that is, open the independent switch S at the same time 4 , independent switch S 4 ′, independent switch S 5 and independent switch S 5 ’ and at the same time close the linkage switch S 51 , linkage switch S...

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PUM

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Abstract

The invention discloses a control system and a control method for improving the output efficiency of a photovoltaic array under partial shadow. The control system comprises a shadow detection module, a DSP (digital signal processing) controller, switch blocks and the photovoltaic array. The shadow detection module is connected with the DSP controller, the DSP controller is connected with the switch blocks, and the switch blocks are connected with the photovoltaic array. The control method includes detecting photovoltaic modules by the aid of the shadow detection module in real time to determine whether the photovoltaic modules are shielded by shadow or not; controlling the switch blocks by the aid of the DSP controller according to detection results of the shadow detection module; swapping the photovoltaic modules which are shielded by the shadow for the photovoltaic modules which are not shielded by the shadow so as to discretize the shadow. The control system and the control method have the advantages that the partial shadow can be discretized, accordingly, negative influence of the partial shadow on integral photovoltaic systems can be reduced, the maximum output efficiency of the photovoltaic array can be improved by 20% approximately, the power generation efficiency of the photovoltaic systems can be effectively improved, and the control system is effective and is easy to implement as compared with modular and reconstructive photovoltaic power generation systems.

Description

technical field [0001] The invention belongs to the technical field of photovoltaic power generation, and in particular relates to a control system and method for improving the output efficiency of a photovoltaic array under partial shadow. Background technique [0002] There are two major problems facing society today—environmental pollution and energy crisis. Environmental problems are clearly presented in front of each of us, such as water pollution around us, smog in Beijing and so on. Petroleum is the most used non-renewable energy by human beings. Due to excessive excavation and exploitation, the problems of surface subsidence and water pollution have been brought about. However, 75% of the energy consumed in our country comes from coal, which has been increasingly depleted and has brought various environmental pollution problems. , Various problems brought about by the massive exploitation and utilization of these non-renewable energy sources have sounded the alarm to...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M3/158
CPCH02M3/1584H02M1/007Y02E10/56
Inventor 韦雪菲卢泉胡立坤卢子广邓海华
Owner GUANGXI UNIV
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