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Identifying Challenging Operating Hours for Solar Integration in the NV Energy System

机译:在NV能量系统中识别太阳能集成的具有挑战性的工作时间

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In this paper, the ability of the Nevada (NV) Energy generation fleet to meet its system balancing requirements under different solar energy penetration scenarios is studied. System balancing requirements include capacity, ramp rate, and ramp duration requirements for load following and regulation. If, during some operating hours, system capability is insufficient to meet these requirements, there is certain probability that the balancing authority’s control and reliability performance can be compromised. These operating hours are considered as "challenging" hours. Five different solar energy integration scenarios have been studied. Simulations have shown that the NV Energy system will be potentially able to accommodate up to 942 MW of solar photovoltaic (PV) generation. However, the existing generation scheduling procedure should be adjusted to make it happen. Fast-responsive peaker units need to be used more frequently to meet the increasing ramping requirements. Thus, the NV Energy system operational cost can increase.
机译:在本文中,内华达州(NV)能源发电船队,以满足在不同的太阳能普及率场景的系统平衡要求的能力进行了研究。系统平衡要求包括能力,斜坡率和斜坡负载下和监管工期要求。如果,在一些运行时间,系统能力不足以满足这些要求,有一定的概率平衡权力的控制和可靠性性能可能会受到影响。这些运行时间被视为“挑战”小时。五种不同的太阳能集成方案进行了研究。模拟已经表明,NV能源系统将潜在地能够容纳多达942兆瓦的太阳能光伏(PV)发电的。然而,现有的发电调度程序应进行调整,以使之成为现实。快速响应调峰单位需要更加频繁地使用,以满足日益增长的斜坡要求。因此,该NV的能量系统的操作成本可以增加。

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