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Generation, performance evaluation and control design of single-phase differential-mode buck–boost current-source inverters

机译:单相差模降压-升压电流源逆变器的产生,性能评估和控制设计

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摘要

Differential-mode inverter topologies are promising for renewable energy generation since they offer advantages such as passive elements sizes reduction, having decreased power losses and reduced total cost. Single phase buck-boost differential-mode current-source inverters (DMCSIs) can deliver wider range of output voltage above or below the input dc voltage, which is necessary for high-efficiency modern renewable energy applications. Since these inverters have continuous input currents, they are suitable for maximum power point tracking (MPPT) operation of photovoltaic systems. Yet, the investigation, operation and implementation of these types of inverters have not been extensively discussed. As a drawback, the total dc side input current of a single-phase inverter consists of a dc component and an undesirable ac component. This ac component frequency is double the output voltage frequency and thus it affects MPPT resulting in reduced total efficiency. In this study, five promising DMCSIs are proposed and compared in terms of their total efficiencies, high-frequency ripple current in the dc side, total harmonic distortion, devices sizes and ratings. Moreover, the sliding mode controller's design and possible methods of eliminating the input second harmonic current are discussed. 2.5 kW bidirectional inverters are implemented to confirm the design flexibility of the proposed DMCSIs.
机译:差模逆变器拓扑结构可用于可再生能源,因为它们具有无源元件尺寸减小,功耗降低和总成本降低等优点。单相降压-升压差分模式电流源逆变器(DMCSI)可以提供高于或低于输入dc电压的更宽范围的输出电压,这对于高效的现代可再生能源应用而言是必需的。由于这些逆变器具有连续的输入电流,因此它们适用于光伏系统的最大功率点跟踪(MPPT)操作。然而,尚未广泛讨论这些类型的逆变器的研究,操作和实现。缺点是,单相逆变器的总直流侧输入电流由直流分量和不良的交流分量组成。该交流分量频率是输出电压频率的两倍,因此会影响MPPT,从而导致总效率降低。在这项研究中,提出了五个有前途的DMCSI,并对其总效率,直流侧的高频纹波电流,总谐波失真,设备尺寸和额定值进行了比较。此外,还讨论了滑模控制器的设计以及消除输入二次谐波电流的可能方法。实施2.5 kW双向逆变器以确认所提议DMCSI的设计灵活性。

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