基于MPPT的光伏PMDC电机驱动系统

Chetanakumar Hadimani S, A. Raju, R. Radha, Rohini Jyoti
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引用次数: 3

摘要

在发电中,可再生能源扮演着重要的角色。随着能源需求的增加,我们需要一种既能满足需求又环保的可再生能源。当太阳光照射到光伏(PV)组件上时,产生直流电(dc),并且光伏组件几乎不需要维护。最大功率点跟踪器(MPPT)有助于确保最大功率被转移到负载。介绍了基于PIC数字信号处理器的光伏模块MPPT的设计、仿真和实现。降压/降压dc-dc变换器与适当的控制相结合,用于执行MPPT。MPPT算法有很多方法,其中一种是“扰动观察法(P&O)”,它通过周期性地增加或减少光伏组件端子电压或电流并进行比较来工作。在P&O方法中,将当前PV输出功率与前一组摄动周期进行比较。为实现最大功率点跟踪,提出了对降压/降压dc-dc变换器占空比步长进行调整的P&O控制算法。Buck变换器用作起动器,并满足驱动永磁直流(PMDC)电机所需的电压水平。由于该算法同时考虑了功率和电压的变化,使得MPPT能够更好地驱动PMDC电机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photovoltaic based PMDC motor drive system using MPPT
In power generation, renewable energy plays an important role. With the increase in the energy demand, there is a need for a renewable energy source that will fulfil the required demand and also which is environmental friendly. When sunlight falls on a Photovoltaic (PV) module, direct current (dc) is produced and little maintenance is required for PV modules. Maximum Power Point Tracker (MPPT) helps in ensuring that the maximum power is transferred to the load. Design, simulation and implementation of MPPT for PV module using PIC digital signal processor are mentioned in the presented work. A buck/stepdown dc-dc converter in conjunction with proper control is used to perform MPPT. Numerous methods of MPPT algorithm are available, one among them is “Perturb and Observe method (P&O)”, which operates by periodically incrementing or decrementing PV module terminal voltage or current and comparing. In P&O method present PV output power is compared with the previous set of perturbation cycle. For achieving maximum power point tracking, the P&O control algorithm for the adjustment of the step size of the duty ratio of the buck/stepdown dc-dc converter is made. Here Buck converter is used as starter as well as to meet voltage level required for driving Permanent Magnet Direct Current (PMDC) motor. Since both power and voltage variations are considered in this algorithm, it allows better performance of MPPT in driving PMDC motor.
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