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Integrated Autonomous Voltage Regulation and Islanding Detection for High Penetration PV Applications

机译:高穿透率光伏应用的集成式自主电压调节和孤岛检测

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This paper proposes an autonomous unified var controller to address the system voltage issues and unintentional islanding problems associated with distributed photovoltaic (PV) generation systems. The proposed controller features the integration of both voltage regulation (VR) and islanding detection (ID) functions in a PV inverter based on reactive power control. Compared with the individual VR or ID methods, the function integration exhibits several advantages in high PV penetration applications: 1) fast VR due to the autonomous control; 2) enhanced system reliability because of the capability to distinguish between temporary grid disturbances and islanding events; 3) negligible nondetection zone (NDZ) and no adverse impact on system power quality for ID; and 4) no interferences among multiple PV systems during ID. As the VR and ID functions are integrated in one controller, the controller is designed to fulfill the requirement of VR dynamic performance and ensure small ID NDZ simultaneously. The interaction among multiple PV systems during VR is also considered in the design procedure. Finally, the feasibility of the proposed controller and the controller design method is validated with simulation using a real-time digital simulator and a power hardware-in-the-loop testbed.
机译:本文提出了一种自主的统一无功控制器,以解决与分布式光伏(PV)发电系统相关的系统电压问题和无意孤岛问题。所提出的控制器具有基于无功功率控制的光伏逆变器中电压调节(VR)和孤岛检测(ID)功能的集成。与单独的VR或ID方法相比,功能集成在高PV渗透应用中显示出多个优势:1)由于具有自主控制功能,可实现快速VR; 2)由于能够区分临时电网干扰和孤岛事件,因此提高了系统可靠性; 3)可以忽略的非检测区(NDZ),并且对ID的系统电源质量没有不利影响; 4)ID期间多个光伏系统之间没有干扰。由于VR和ID功能集成在一个控制器中,因此该控制器旨在满足VR动态性能的要求,并同时确保较小的ID NDZ。设计过程中还考虑了VR中多个PV系统之间的交互。最后,通过使用实时数字仿真器和电源硬件在环测试台进行仿真,验证了所提出控制器和控制器设计方法的可行性。

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