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Impact analysis of large power networks with high share of renewables in transient conditions

机译:瞬态条件下可再生能源高电网的影响分析

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With the growth of distributed generators in the power grid, replacing the fossil-fuel-based conventional generation sources with renewable power resources, namely photovoltaics (PVs) or wind turbines, is inevitable. However, when rotating-kind synchronous machines that usually possess high inertia are replaced by PVs that have an inherent static nature, grid stability issues such as reduced system inertia, lack of reactive power, and decreased system damping may arise. This study investigates the stability impacts with high-PV penetration in the Texas 2000-bus network. From the impact analysis conducted under transient conditions, it is observed that high-PV penetration could negatively adversely affect the voltage and frequency stability of the system which is mainly due to the replacement of conventional generators that results in reduced network inertia and lack of reactive power support. Hence, to alleviate the adverse stability implications of PVs on power systems with reduced inertia, a long-term generator scheduling strategy is proposed considering the criticality of synchronous generators for optimally decommitting and scheduling the generators. Extensive case studies are conducted to determine the ideal dispatch strategy for the test system based on transient stability criterions.
机译:随着电网中分布式发电机的增长,用可再生电力资源代替化石燃料的常规发电来源,即光伏(PVS)或风力涡轮机不可避免。然而,当通常具有高惯性的旋转种类同步机被具有固有静态性质的PVS取代时,可能出现诸如减少系统惯性,无功功率缺乏和减少的系统阻尼的电网稳定性问题。本研究调查了德克萨斯2000总线网络中高光伏渗透的稳定性影响。从瞬态条件下进行的影响分析,观察到,高光伏渗透可能会对系统的电压和频率稳定产生负面影响,这主要是由于更换了导致网络惯性和缺乏无功功率的传统发电机支持。因此,为了减轻PVS对具有减少惯性的电力系统的不利稳定性影响,提出了一种考虑到同步发电机的临界性以最佳地解放和调度发电机的长期发电机调度策略。进行广泛的案例研究以确定基于瞬态稳定标准的测试系统的理想调度策略。

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