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A comparative study of MPPT methods for distributed photovoltaic generation

机译:MPPT方法对分布式光伏发电的比较研究

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Photovoltaic (PV) energy generation is becoming an increasingly prevalent means of producing clean, renewable power. PV is renewable, reliable, and domestically secure. One of the most important components of PV systems is the inverter technology that converts the direct current (DC) power output from the PV panel or array to alternating current (AC) used on both the individual end-user and centralized grid levels. The large variety of inverters share the same general goal: to allow for the most efficient and stable transfer of as much power as possible. One specific means of accomplishing this goal is the inclusion of a Maximum Power Point Tracking (MPPT) DC-DC converter. The purpose of MPPT is to ensure that the PV panel or array is always producing power as near to the knee of its I-V curve as possible. This extracts the maximum amount of power at any given time. In constantly sunny situations, there is little impact on overall performance of a particular MPPT design on the PV system, as only small voltage differences due to the particular construction of each panel effects the overall voltage outputs. However, cloud cover changes the output from a PV panel drastically with reduced solar irradiation causing the current of the solar panel to drop. It is postulated herein that the stability and quality problems created by central MPPT during periods of differing solar irradiation on various panels could be solved with a system of MPPT distributed on each panel. These would then feed collectively to a central inverter. To test these systems, a PSCAD model was developed for both centralized and distributed MPPT systems, and the solar irradiation was randomly varied. This allowed for observation of the stability and quality of the output voltage for each system.
机译:光伏(PV)能量产生是产生清洁,可再生能力的越来越普遍的手段。 PV可再生,可靠,国内保护。 PV系统最重要的组件之一是逆变器技术,可将来自PV面板或阵列的直流(DC)电源转换为各个终端用户和集中电网级别的交替电流(AC)。各种逆变器共享相同的一般目标:允许尽可能高的功率最有效和稳定的转移。实现该目标的一种特定手段是包含最大功率点跟踪(MPPT)DC-DC转换器。 MPPT的目的是确保PV面板或阵列始终产生尽可能靠近其I-V曲线膝关节的电源。这在任何给定时间提取最大功率量。在不断阳光明媚的情况下,对PV系统的特定MPPT设计的整体性能几乎没有影响,因为由于每个面板的特定结构,因此只有小的电压差异影响了整体电压输出。然而,云盖在速度下变化了PV面板的输出,随着太阳能电池板的电流降低了太阳照射。本文假设在各个面板上的不同太阳能照射期间由中央MPPT产生的稳定性和质量问题可以用分布在每个面板上的MPPT系统来解决。然后这些将集体送入中央逆变器。为了测试这些系统,为集中式和分布式MPPT系统开发了PSCAD模型,太阳照射随机变化。这允许观察每个系统的输出电压的稳定性和质量。

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