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Harmonic incursion at the point of common coupling due to small grid-connected power stations

机译:小型并网发电站在公共耦合点的谐波侵入

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The orthodox electric power distribution systems used to be generally radial and direction of flow of power was often from grid towards consumer. Sometimes, the transmission of power generated from newly set small power stations by using transmission network is not feasible due to the transmission losses, service cost on transmission lines and other related issues. That is why, in many cases, small power stations are connected directly to the local distribution network. These small power stations inject active and reactive power to the existing network, badly disturbing the flow of power hence injecting harmonics in the system at the point of common coupling (PCC). This harmonic injection at PCC due to a direct grid-connection of small power stations to the existing large electric power systems is identified. Also, the impact of harmonic incursion by these small generation units is analysed using a straightforward and an effortless method. This simulation based method uses power system components simplified to basic inductive and capacitive elements and can be very helpful for a fast assessment of harmonic incursion at PCC if extended to the practical large inter-connected electric power systems.
机译:正统的电力分配系统通常呈放射状,并且电力流动的方向通常是从电网流向用户。有时,由于传输损耗,传输线路上的服务成本和其他相关问题,使用传输网络传输新设置的小型电站产生的电力是不可行的。因此,在许多情况下,小型电站直接连接到本地配电网络。这些小型发电站向现有网络注入有功和无功功率,严重干扰了功率流,因此在公共耦合点(PCC)处向系统注入了谐波。可以识别出由于小电站直接与现有大型电力系统并网而在PCC产生的谐波注入。同样,使用简单,轻松的方法分析了这些小型发电单元谐波侵入的影响。这种基于仿真的方法使用简化为基本电感和电容元件的电源系统组件,如果扩展到实际的大型互连电源系统,则对快速评估PCC的谐波侵入非常有帮助。

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