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Maximum power tracking capture photovoltaic control method with self-adaptive search algorithm

A technology of maximum power tracking and search algorithm, which is applied in the direction of adaptive control, photovoltaic power generation, general control system, etc., and can solve problems such as the working point is far away from the maximum power point, power loss, search range and speed influence, etc.

Inactive Publication Date: 2007-11-28
SOUTH CHINA UNIV OF TECH
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Problems solved by technology

The perturbation observation method also has great shortcomings: the perturbation method makes the operating point only oscillate at the maximum power point of the array, resulting in partial power loss, and the given initial value and tracking step size have a large impact on the search range and speed. Influence; the perturbation method sometimes produces the vector sequence ("misjudgment") phenomenon of the program during operation, so that the operating point is far away from the maximum power point
The method of fixed ΔV search and tracking is simple in design and easy in calculation, but due to the nonlinearity of the output power of solar cells, the contradiction between tracking accuracy and tracking speed is difficult to solve better

Method used

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  • Maximum power tracking capture photovoltaic control method with self-adaptive search algorithm
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  • Maximum power tracking capture photovoltaic control method with self-adaptive search algorithm

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Embodiment 1

[0075]As shown in Figure 3, the controller voltage sensor model is CHV-25P, the current sensor model is PT-10P; the drive circuit 5 model is TLP-250; the microcontroller 6 model is 80C196KC; the EPROM memory 8 model is 2864A; the latch 7 The model number is 74LS373.

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Abstract

The invention discloses a maximal power tracing and catching photovoltaic controlled method with self-adaptive searching algorithm, which comprises the following steps: setting initial step-length; monitoring the voltage and the current of the i time solar battery array; evaluating the i time power; getting voltage change quantity delta Ui and power change delta Pi of the i time and the i-1 time; judging whether the delta Ui is 0; backing to sample if delta Ui=0; evaluating slope delta Pi / delta Ui of P-V curve if delta Ui is not equal to 0; judging whether delta Pi / delta Ui absolute value is not less than the setting accuracy E; un-changing dutycycle of buck circuit switching tube if |delta Pi / delta Vi|=E. This invention does not need device to test light intensity and temperature, which can decrease the cost of solar electric power generation system.

Description

Technical field [0001] The invention relates to a special control device in a solar photovoltaic power generation system, and belongs to the technical field of combining power electronic technology and control technology. Background technique [0002] With the development of society and economy, the consumption of energy and resources is getting faster and faster. Energy conservation and environmental protection have become a necessary condition for human sustainable development. People’s attention is shifting from conventional energy to the development and utilization of renewable energy. As a huge amount of renewable energy, solar power has become a global development issue. One of rapid technology. Solar cell is a device that uses photovoltaic effect to convert light energy into electrical energy. The basic structure is a large-area diode. The phenomenon that matter absorbs light energy to generate electromotive force is called photovoltaic effect...

Claims

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Application Information

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IPC IPC(8): G05F1/67G05B13/02
CPCY02E10/58Y02E10/56
Inventor 吴捷候聪玲张淼郭红霞
Owner SOUTH CHINA UNIV OF TECH
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