用于电机供电的无电池光伏系统中两级模式和单级模式的比较分析

Wayan Sutaya, Ida Ayu, Dwi Giriantari, W. G. Ariastina, Nyoman Satya Kumara
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引用次数: 0

摘要

将光伏(PV)系统作为无需电池的电机直接电源是一个复杂的过程,需要复杂的控制机制。光伏系统的关键是最大功率点跟踪(MPPT)过程,它能确保安装的光伏系统产生最佳的能量输出。最近的一项研究分析了与向水泵电机供电的光伏系统有关的研究,结果成功地将这些系统分为两种主要模式:双级模式和单级模式。两阶段模型涉及单独的功率跟踪和负载消耗控制过程,而单阶段模型则将功率跟踪和负载消耗控制整合为一个过程。对这两种模式的比较分析表明,由于功率跟踪和负载消耗控制过程是分开的,因此两阶段模式具有更高的稳定性。本研究对 MPPT 过程、电机功耗和直流链路电容器的利用等方面进行了考察。这项比较研究的结果有助于深入了解光伏系统中为无电池电机供电的两级和单级模型的有效性和稳定性。研究结果将极大地激发从事光伏系统和电机控制的研究人员和从业人员的兴趣,为设计和实施更高效、更可靠的光伏系统提供有用的信息。
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Comparative Analysis of Two-Stage and Single-Stage Models in Batteryless PV Systems for Motor Power Supply
Implementing photovoltaic (PV) systems as direct power sources for motors without batteries is a complex process that requires a sophisticated control mechanism. The crucial aspect of PV systems is the Maximum Power Point Tracking (MPPT) process, which ensures that the installed PV system generates optimal energy output. A recent study has analyzed research related to PV systems supplying power to pump motors, and the results have successfully classified these systems into two main models: the two-stage and the single-stage. The two-stage model involves separate power tracking and load consumption control processes, while the single-stage model integrates power tracking and load consumption control into a single process. A comparative analysis of these two models has revealed that the two-stage model exhibits higher stability due to the separate power tracking and load consumption control processes. Aspects such as the MPPT process, motor power consumption, and the utilization of DC-link capacitors were examined in this study. The findings of this comparative study contribute valuable insights into the effectiveness and stability of two-stage and single-stage models in PV systems supplying power to motors without batteries. The results will significantly interest researchers and practitioners working in Photovoltaic systems and motor control, providing helpful information for designing and implementing more efficient and reliable PV systems.
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