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Impact of load frequency dependence on frequency response of a power system with high non-synchronous penetration

机译:负载频率依赖性对具有高非同步穿透力的电力系统的频率响应的影响

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Due to significant development of renewable energy sources, such as wind and photovoltaic (PV), conventional synchronous generators are being economically replaced from the traditional generation mix. Modern wind turbine and PV generators are non-synchronous machines, which usually do not provide inherent inertia and governor control to arrest frequency excursion after a major disturbance. Thus, presence of such high non-synchronous generation may introduce a challenge to maintain system frequency within the satisfied limits following a large generator or an interconnection trip. In addition to non- synchronous penetration level, frequency response of a power system may have significant reliance on frequency dependent loads. These loads, for example induction motors consume less power when there is a fall in system frequency. It facilitates faster arrest of frequency decline after a contingency. As a result, frequency response of a power system may enhance. This paper investigates the effects of load frequency dependence on frequency response of a power system in presence of high non- synchronous generation. It also quantifies the amount of load relief and under frequency load shedding, which a system may encounter after a severe disturbance. In this context, a low inertia power system that loosely resembles the South Australian network is investigated and reported.
机译:由于风能和光伏(PV)等可再生能源的显着发展,传统的同步发电机已从传统的发电方式中经济地替代。现代的风力涡轮机和PV发电机是非同步电机,通常不提供固有的惯性和调速器控制以在发生重大干扰后阻止频率偏移。因此,这种高的非同步发电的存在可能带来挑战,以在大型发电机或互连跳闸之后将系统频率维持在满足的限制之内。除了非同步渗透水平之外,电力系统的频率响应可能还非常依赖于频率相关的负载。这些负载(例如感应电动机)在系统频率下降时消耗的功率更少。这有助于在突发事件之后更快地阻止频率下降。结果,电力系统的频率响应可以增强。本文研究了在存在高非同步发电的情况下,负载频率依赖性对电力系统频率响应的影响。它还量化了系统在严重干扰后可能会遇到的负载减轻量和低频负载减少量。在这种情况下,研究并报道了一个与南澳大利亚电网大致相似的低惯性电力系统。

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