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Design and Implementation of an Automatic Synchronizing and Protection Relay through Power-Hardware-in-the-Loop (PHIL) Simulation

机译:通过功率硬件在环(PHIL)仿真的自动同步和保护继电器的设计与实现

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This paper focuses on the design and implementation of an automatic synchronizing and protection relay. The relay automates the synchronization process of a Distributed Energy Resource (DER) to the Main Grid. The proposed design utilizes cost-effective data acquisition using Arduino in combination with LabVIEW software to implement the multipurpose synchronizing relay. The proposed synchronizing relay is capable of synchronizing a Distributed Generator (DG) to the power grid from black-start and fulfills the requirements imposed by the utility. The relay is implemented through voltage and frequency control of an actual lab-scale synchronous generator. In the synchronization process, frequency synchronization is completed using speed control of the stepper motor acting as the prime mover and voltage synchronization is accomplished using Excitation Control module through Power-Hardware-in-the-Loop (PHIL) simulation. In grid-connected mode, active and reactive power controls and protection schemes for the synchronous generator have also been implemented. The proposed multifunction relay has been deployed and tested on a lab-scale testbed to validate the proposed design and functionality.
机译:本文着重于自动同步与保护继电器的设计与实现。中继使分布式能源(DER)到主电网的同步过程自动化。拟议的设计利用结合Arduino软件和LabVIEW软件的经济有效的数据采集来实现多功能同步继电器。提出的同步继电器能够从黑启动开始将分布式发电机(DG)同步到电网,并满足公用事业公司提出的要求。该继电器通过实际实验室规模的同步发电机的电压和频率控制来实现。在同步过程中,通过使用作为原动机的步进电机的速度控制来完成频率同步,并通过励磁硬件(PHIL)仿真使用励磁控制模块来实现电压同步。在并网模式下,同步发电机的有功和无功功率控制以及保护方案也已实现。所提议的多功能继电器已经在实验室规模的测试平台上进行了部署和测试,以验证所提议的设计和功能。

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