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Transmission Hosting Capacity of Distributed Energy Resources

机译:分布式能源的传输托管能力

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Distributed energy resources (DERs) are transforming the operation and planning of both distribution and transmission grids. Stability impacts from the increasing generation contribution of DERs have been widely recognized in distribution systems and are emerging in transmission systems. There is a need for the development of transmission hosting capacity studies of DERs so utilities will be able to predict and prevent instabilities, reductions in reliability on the electrical grid, and create planning methodologies that enable the continued growth of DERs. This paper evaluates the impact of different modeling considerations for assessing hosting capacity of DERs in transmission systems through analysis on a 2,000-bus synthetic grid test system. The modeling considerations include transient and steady state contingencies, use of dynamic load and DER models with voltage support control, dynamic load composition, and seasonal and loading scenarios. The results demonstrate that transient stability evaluations are more limiting than steady state analysis, the use of voltage support control in DERs can increase hosting capacity in the system, and large variations in hosting capacity can be found when assessing between seasonal variations. From comparing system factors the amount of wind generation in the system was a critical factor for hosting capacity in this study.
机译:分布式能源资源(DERS)正在转换分布和传输网格的操作和规划。稳定性影响来自DER的增加贡献已被广泛认可在分销系统中,并在传输系统中涌现。需要开发DERS的传输托管能力研究,因此公用事业公司将能够预测和预防不稳定,在电网上降低可靠性,并创建能够持续增长的规划方法。本文通过对2,000总线合成网格测试系统分析,评估不同建模考虑因素评估传输系统中DER托管能力的影响。建模考虑因素包括瞬态和稳态的恒星,使用动态负载和具有电压支持控制,动态载荷组成和季节性和加载方案的DER模型。结果表明,瞬态稳定性评估比稳态分析更加限制,使用电压支撑控制在DER中可以增加系统中的托管能力,并且在评估季节变化之间时可以找到托管能力的大变化。从比较系统因素,系统中的风力产生量是托管本研究能力的关键因素。

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