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Double Integral Sliding Mode MPPT Control of a Photovoltaic System

机译:光伏系统的双积分滑模MPPT控制

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This brief proposes a new maximum power point tracker (MPPT) for a stand-alone photovoltaic (PV) system using the concept of double integral sliding mode controller (DISMC). Performance of a sliding mode controller (SMC) is greatly influenced by the choice of the sliding surface. A double integral SMC uses double integral of tracking voltage error term in its sliding surface to eliminate steady-state error apart from providing robust control actions in face of system uncertainties. However, there is still difficulty of increased chattering and slow transient response in DISMC. In this brief, the objective is to exploit the merits of the DISMC for designing an MPPT for PV system whilst the disadvantages of chattering and slow transient response are alleviated by choosing a new sliding surface. The design of this new DISMC-MPPT system considers the uncertainties in weather conditions and variations in load. This MPPT has been implemented using a pulsewidth modulator controlled dc/dc converter to keep the switching frequency constant. Thus, designing the control and filter circuits becomes simpler. The effectiveness of the proposed DISMC has been validated using simulation and experimental results using a prototype PV control system setup.
机译:本简介使用双积分滑模控制器(DISMC)的概念为独立光伏(PV)系统提出了一种新的最大功率点跟踪器(MPPT)。滑动模式控制器(SMC)的性能受滑动表面选择的影响很大。双积分SMC在其滑动表面中使用跟踪电压误差项的双积分,以消除稳态误差,除了在面对系统不确定性时提供强大的控制作用。然而,在DISMC中仍然存在增加的颤动和缓慢的瞬态响应的困难。在本文中,目的是利用DISMC的优势设计光伏系统的MPPT,同时通过选择新的滑动面来缓解抖动和瞬态响应慢的缺点。这种新的DISMC-MPPT系统的设计考虑了天气条件和负载变化的不确定性。使用脉宽调制器控制的dc / dc转换器来实现此MPPT,以保持开关频率恒定。因此,设计控制和滤波电路变得更加简单。拟议的DISMC的有效性已通过使用原型PV控制系统设置的仿真和实验结果得到验证。

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