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MPPT ALGORITHM EFFECTS ON THE PERFORMANCE OF A SMALL SCALE GRID-CONNECTED PV ARRAY SYSTEM

机译:MPPT算法对小型网格连接的PV阵列系统性能的影响

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Currently, the direct conversion of solar energy into electricity is being accepted as an important form of power generation. This electricity generated by a process known as the photovoltaic effect, using photovoltaic (PV) system. The operating power of PV system depends on the sun's intensity, the ambient temperature and the PV system output voltage (PV load). The maximum power point tracking (MPPT) algorithms usually are used in PV system in order to make the system operate with maximum efficiency. Many of MPPT algorithms/techniques for PV system have been proposed vary in complexity, sensors required, convergence speed and dynamic response, cost, range of effectiveness, implementation hardware, popularity, and in other respects. In this paper, some most widely-used of MPPT algorithm will be reviewed and studied, in order to develop a PV model with MPPT algorithm, refer to an existing a small scale grid-connected PV array system at Szent Istvan University (SIU). Simulation results of MPPT line characteristics, both for ASE-100 (polycrystalline technology) and DS-40 (amorphous silicon technology) modules, as main components of grid-connected PV array at Szent Istvan University, will be shown, as a preliminary step to understand the voltage critical values of each module at different weather conditions.
机译:目前,太阳能直接转化为电力被认为是一种重要的发电形式。使用光伏(PV)系统,通过称为光伏效果的过程产生的该电力。 PV系统的工作功率取决于Sun的强度,环境温度和光伏系统输出电压(PV负载)。最大功率点跟踪(MPPT)算法通常用于PV系统,以使系统以最大效率运行。许多MPPT算法/ PV系统的技术已经提出了复杂性,传感器所需的传感器,收敛速度和动态响应,成本,有效范围,实现硬件,流行度以及其他方面。在本文中,将进行一些最广泛使用的MPPT算法,以便使用MPPT算法开发PV模型,请参阅Szent Istvan大学(SIU)的现有小型网格连接的PV阵列系统。 MPPT线特性的仿真结果,用于ASE-100(多晶技术)和DS-40(非晶硅技术)模块,作为Szent Istvan大学网格连接的PV阵列的主要组成部分,将作为初步步骤在不同天气条件下了解每个模块的电压临界值。

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