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An improved MPPT algorithm to minimize transient and steady state oscillation conditions for small SPV systems

机译:一种改进的MPPT算法,可最大程度地减小小型SPV系统的瞬态和稳态振荡条件

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Small solar PV systems mostly residential PV systems are bounded to be low cost. So these systems are required low-cost processors, and these low-cost processors can only process simple algorithm efficiently. The conventional P&O MPPT algorithm is widely employed algorithm to control solar PV systems because of its simplicity, low cost, and ease of implementation. During rapid radiation change condition (RRC) the output voltage of conventional P&O MPPT algorithm is found unstable and suffers oscillations around MPP at transient and steady state conditions. This paper proposes a simple MPPT algorithm for small or residential solar PV systems to eliminate such above said drawbacks. The proposed MPPT controls the step size (dD) of the boost converter duty cycle (D) according to the system input conditions and have the ability to compensate the transient as well as steady-state oscillations around MPP and stabilize the output voltage under RRC and variable load conditions. To validate the proposed algorithm, a 1kW photovoltaic system model is simulated using MATLAB/Simulink, and the performance of the system is also investigated under RRC. The performance of proposed MPPT algorithm is found to be adequate under various insolation patterns. An experimental set-up comprising a boost converter, solar emulator with dSPACE controller is also used to investigate the performance of proposed MPPT algorithm further. Article History : Received October 4 th 2017; Received in revised form September 15 th 2018; Accepted November 1 st 2018; Available online How to Cite This Article : Javed, K. Ashfaq, H and Singh, R. (2018). An Improved MPPT Algorithm to Minimize Transient and Steady State Oscillation Conditions for Small SPV Systems.
机译:小型太阳能光伏系统(主要是住宅光伏系统)注定是低成本的。因此,这些系统是低成本处理器所必需的,并且这些低成本处理器只能有效地处理简单算法。常规的P&O MPPT算法具有简单,成本低,易于实现等优点,因此被广泛用于控制太阳能光伏系统。在快速辐射变化条件(RRC)期间,发现传统P&O MPPT算法的输出电压不稳定,并且在瞬态和稳态条件下会在MPP周围振荡。本文提出了一种适用于小型或住宅太阳能光伏系统的简单MPPT算法,以消除上述缺点。拟议的MPPT根据系统输入条件控制升压转换器占空比(D)的步长(dD),并具有补偿MPP周围的瞬态和稳态振荡并在RRC和RRC下稳定输出电压的能力。可变负载条件。为了验证所提出的算法,使用MATLAB / Simulink对1kW光伏系统模型进行了仿真,并在RRC下研究了系统的性能。发现所提出的MPPT算法在各种日射模式下的性能都足够。包括升压转换器,带有dSPACE控制器的太阳能仿真器的实验装置也用于进一步研究所提出的MPPT算法的性能。文章历史:于2017年10月4日收到;于2018年9月15日收到修订版; 2018年11月1日接受;在线提供如何引用本文:Javed,K.Ashfaq,H和Singh,R.(2018)。改进的MPPT算法,以最小化小型SPV系统的瞬态和稳态振荡条件。

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