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One-Cycle-Controlled Single-Stage Single-Phase Voltage-Sensorless Grid-Connected PV System

机译:单周期控制的单阶段单相无电压传感器并网光伏发电系统

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摘要

Reforms in the electricity sector along with various renewable-energy-promotion policies have increased the importance of small grid-connected photovoltaic (PV) systems utilizing single-stage single-phase inverters. Ruggedness, reliability, and cost effectiveness are the desirable characteristics of such inverters used in distributed low-power applications. Schemes based on one-cycle control (OCC) which do not require the service of a phase-locked loop for interfacing the inverter to the grid are increasingly being employed for such applications. However, the OCC-based schemes reported earlier require sensing of the grid voltage which somewhat offsets one of the inherent strengths of OCC-based systems. In an effort to overcome the aforementioned limitation, an OCC-based grid-connected single-stage PV system is proposed in this paper which does not require to sense the grid voltage. Further, it requires less number of sensors (two) as compared to that required (four) in the earlier reported scheme for the implementation of the core controller comprising of OCC and maximum-power-point-tracking blocks. The viability of the proposed scheme is confirmed by performing simulation and experimental validation.
机译:电力行业的改革以及各种可再生能源促进政策已经提高了使用单级单相逆变器的小型并网光伏(PV)系统的重要性。耐用性,可靠性和成本效益是在分布式低功率应用中使用的此类逆变器的理想特性。在这样的应用中,越来越多地采用基于单周期控制(OCC)的方案,该方案不需要用于将逆变器连接到电网的锁相环。但是,较早报道的基于OCC的方案要求感测电网电压,这在一定程度上抵消了基于OCC的系统的固有优势之一。为了克服上述限制,本文提出了一种基于OCC的并网单级光伏系统,该系统不需要感测电网电压。此外,与早先报道的方案中实现由OCC和最大功率点跟踪模块组成的核心控制器所需的传感器数量(四个)相比,它需要较少的传感器数量(两个)。通过执行仿真和实验验证,证实了该方案的可行性。

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