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Converter-Based Power System Protection Against DC in Transmission and Distribution Networks

机译:基于转换器的传输和分配网络中的DC电力系统保护

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The dc in a power system may be caused by geomagnetic disturbances that are the result of solar storms and high-altitude nuclear detonations. Increased inverter-based generation is also contributing to small dc injection into the power systems. The resultant dc could have serious consequences for the power systems as it may drive power transformers into saturation, cause transformer internal heating, cause large draw of reactive power, and misoperation of protective relays. This letter proposes a novel power electronics-based dc mitigation approach that involves a transformerless series active filter integrated between the neutral point and ground of power transformers serving multiple purposes. The first objective is to surpass the effect of dc injection, the second goal is voltage regulation, and the third is to provide harmonic isolation or impedance balancing. The proposed device is currently being developed on a 7.2-kV/240-V single-phase transformer; however, the solution is also relevant for 24-500-kV networks. The system circuitry, operation, and control are implemented and verified for this letter in a controller hardware-in-the-loop (C-HIL) test setup using a Typhoon HIL-402 simulator. Results indicate that our approach is a promising alternative to traditional neutral capacitor-blocking strategies.
机译:电力系统中的DC可能是由太阳风暴和高空核爆炸的结果引起的。增加的基于逆变器的一代也有助于小型DC注入电力系统。所得到的DC可能对电力系统具有严重后果,因为它可能会驱动电力变压器进入饱和度,导致变压器内部加热,导致电力功率大的绘制和保护继电器的误操作。这封信提出了一种基于新型电力电子的直流缓解方法,涉及变形系列有源滤波器,该系列有源滤波器集成在提供多种用途的电力变压器的中性点和地面之间。第一个目标是超越DC喷射的效果,第二个目标是电压调节,第三个是提供谐波隔离或阻抗平衡。该提出的设备目前正在7.2 kV / 240 V单相变压器上开发;但是,该解决方案也与24-500 kV网络相关。使用台风HIL-402模拟器来实现和验证系统电路,操作和控制,在控制器硬件 - 环路(C-HIL)测试设置中实现和验证该字母。结果表明,我们的方法是传统中性电容阻止策略的有希望的替代品。

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