首页> 外文会议>IEEE Power & Energy Society General Meeting >Avoiding the non-detection zone of passive loss-of-mains (islanding) relays for synchronous generation by using low bandwidth control loops and controlled reactive power mismatches
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Avoiding the non-detection zone of passive loss-of-mains (islanding) relays for synchronous generation by using low bandwidth control loops and controlled reactive power mismatches

机译:通过使用低带宽控制环路和受控的无功功率失配,避免用于同步发电的无源市电(孤岛)继电器的非检测区域

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Generation connected to electrical distribution systems requires reliable and timely detection of loss of-mains (islanding). Passive loss of mains detection relays typically use measurements of parameters such as frequency, phase, and the magnitudes of voltage and current. If a part of the power network becomes islanded and there is a very close match between generation and demand of both active and reactive power, there is a risk that the relay will not be able to detect the loss of mains (LOM) event quickly, or perhaps at all. This is the “non-detection zone” or NDZ. This paper proposes a combination of 2 generator control techniques which allow the NDZ to be avoided even when the generator has significant inertia. Firstly, the natural instability (when islanded) of a grid-connected control scheme consisting of integral and droop controls is recognized and exploited. Secondly, a simple strategy is added which makes occasional small, steady-state adjustments to the reactive power output of the generator. The scheme has been tested in the laboratory and shows that the 2 second detection time required by IEEE 1547 can be achieved, even when an exact match of active power generation and demand is initially configured, and the generator has a significant inertia.
机译:连接到配电系统的发电需要可靠,及时地检测市电损耗(孤岛)。电源检测继电器的无源损耗通常使用参数的测量,例如频率,相位以及电压和电流的大小。如果电网的一部分变成孤岛,并且有功和无功的发电量和需求量之间都非常接近,则存在继电器无法快速检测到市电丢失(LOM)事件的风险,或完全没有。这是“非检测区域”或NDZ。本文提出了两种发电机控制技术的组合,即使发电机具有很大的惯性,也可以避免使用NDZ。首先,识别并利用了由积分和下垂控制组成的并网控制方案的自然不稳定性(当出现孤岛时)。其次,添加了一种简单的策略,该策略偶尔会对发电机的无功功率输出进行小的稳定状态调整。该方案已经在实验室进行了测试,结果表明,即使最初配置了有功功率和需求的精确匹配,并且发电机具有显着的惯性,也可以达到IEEE 1547要求的2秒检测时间。

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