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Options for emergency control of power grids with high penetration of renewables

机译:具有高可再生能源渗透率的电网应急控制选项

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Power systems are experiencing a historical transformation in their paradigm and architecture. As such, the classical methods ensuring secure operation of power grids, which are largely developed several decades ago, need to be reassessed. At the same time, new generations of smart electronic devices provide fast actuation to smart power grids. Also, transmission resources are continuously installed into the system and will be ubiquitously available in the future. These assets provide new opportunities for power grids' operation controls. In this paper, we sketches the ideas of viable alternatives for traditional remedial actions of power grids with high penetration of renewables, in which the renewables are integrated with synchronverters to mimic the dynamics of conventional generators and transmission lines are equipped with FACTS devices. In these novel emergency control schemes, the power electronics resources are exploited to control the inertia/damping of the imitated generators as well as the susceptances of transmission lines in order to quickly stabilize the power system under emergency situations. The proposed controls are designed by solving convex optimization problems, making them scalable to large scale power grids. Also, these emergency control schemes can be implemented with minor investment by exploiting the plentiful transmission facilities ubiquitously available on the existing power grids.
机译:电力系统正在经历其范式和体系结构的历史性转变。因此,几十年前大量开发的确保电网安全运行的经典方法需要重新评估。同时,新一代的智能电子设备为智能电网提供了快速启动。而且,传输资源不断安装到系统中,并且将来将无处不在。这些资产为电网的运行控制提供了新的机会。在本文中,我们草绘了具有高可再生能源渗透率的传统电网补救措施的可行替代方案的想法,其中可再生能源与同步变频器集成在一起,以模仿传统发电机的动力,并且输电线路配备了FACTS设备。在这些新颖的应急控制方案中,电力电子资源被用来控制仿制发电机的惯性/阻尼以及输电线路的电纳,以便在紧急情况下快速稳定电力系统。通过解决凸优化问题设计建议的控件,使其可扩展到大型电网。而且,通过利用现有电网上无处不在的大量传输设施,可以用少量投资来实施这些应急控制方案。

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