由于风力发电的渗透水平更高,系统惯性减少的影响

Oleksandra B. Dudurych, M. Conlon
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引用次数: 13

摘要

由于电力系统上风力发电水平的提高,由于采用较新的变速发电机,传统同步发电机所提供的惯性减少了。这包括双馈感应发电机(DFIG)和全额定变流器发电机(FRCG)。随着系统惯性的减少,响应主要系统事件的更高频率变化率(RoCoF)水平的可能性增加。较高的RoCoF可能对传统发电产生影响,并可能导致防孤岛保护系统的意外跳闸。本文给出了具有不同风力发电渗透水平的模型电力系统的仿真结果,并探讨了增强惯性的可行措施。特别地,本文考虑了风力发电机提供模拟惯性能力的控制系统要求。
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Impact of reduced system inertia as a result of higher penetration levels of wind generation
As a consequence of higher levels of wind generation on power systems, the inertia which has been provided by conventional synchronous generators is reduced as a result of the introduction of newer, variable speed generators. This includes double-fed induction generators (DFIG) and fully rated converter generators (FRCG). With reduced system inertia, the likelihood of higher rate of change of frequency (RoCoF) levels in response to major system events is increased. Higher RoCoF has possible implications for conventional generation and can cause inadvertent tripping of anti-islanding protection systems. This paper presents the simulation results of a model power system with varying levels of wind generation penetration and examines the possible measures available to enhance inertia. In particular, the paper considers the control system requirements for wind generators providing emulated inertia capabilities.
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