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MPPT design on solar farm using perturb and observe technique considering tilt angle and partial shading in Giligenting Island

机译:考虑倾斜角度倾斜角度和局部遮蔽的扰动和观察技术,MPPT设计

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Giligenting Island is located in Sumenep, Madura. It is very potential for application the renewable energy. Based on the measurement, the maximum potential irradiance solar farm in the Island is accounted 610 W/m2. To convert the irradiance power to electricity, photovoltaic is applied. However, photovoltaic modules are drastically decrease their power output in case of the partial shading conditions. Therefore, perturb and obverse method (PnO) is introduced to track the point to establish the maximum power. In addition, the maximum power point tracking (MPPT) is employed to reduce the shading effects, thus by both method, the power generated is maximum. Besides, this technique is able to overcome the limitations in tracking efficiency, oscillation in steady state, and transient period. In this paper to maximize the irradiance observation, optimal site selection is undertaken by considering the tilt angles of PV and by approaching a sun path diagram model. Based on this study and experiment that have been taken in Giligenting Island, it is summed up that the proposed MPPT algorithm is superior to P&O technique with varies partial shading conditions. The results of the simulation yield that the power output of photovoltaic cover 99.4% of the load demand in Giligenting Island.
机译:Giligenting Island位于Madura的Sumenep。它是应用可再生能源的潜力。基于测量,岛上的最大潜在辐照区太阳能农场被占610W / m 2 。将辐照电力转换为电力,应用光伏。然而,在局部遮荫条件的情况下,光伏模块的功率输出大大降低。因此,引入了扰动和正常方法(PNO)以跟踪表格以确定最大功率。另外,采用最大功率点跟踪(MPPT)来降低阴影效果,从而通过两种方法,产生的功率最大。此外,这种技术能够克服跟踪效率,稳定状态振荡和瞬态时段的局限性。在本文最大化辐照度观察中,通过考虑PV的倾斜角度来进行最佳场地选择,并通过接近太阳路径图模型来进行。基于在吉莱格岛采取的研究和实验的基础上,它总结了所提出的MPPT算法优于P&O技术,具有不同的部分遮蔽条件。模拟结果的结果是,光伏盖的电力输出99.4 %负载需求在吉利格岛上。

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