一个更快、更智能、可控、更环保、分布式的电网——这是一个能产生更高电能质量的先进电网的关键

L. Casey, S. Lasher, Steve Rhoades, C. Schauder, B. Semenov
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引用次数: 6

摘要

电网电能质量的显著改善需要对电网的物理层进行根本性的改变,而电网是我们的电力产生、传输和利用的地方。向电网添加“智能”是必不可少的;然而,虽然这是一个必要条件,但不足以提供我们的负载日益增长的数字质量功率。网格的根本问题不是缺乏智能,而是缺乏速度。大量电源远离负载,现有的控制被应用于笨拙的执行器和开关设备。这里所描述的未来电网要求通过电子设备耦合发电的最低渗透率。这可以很容易地通过并网的可再生能源实现,理想情况下,高度分布式,对瞬态事件进行自主控制,对较慢的时间尺度进行集中区域控制。快速响应生成的部分渗透使性能能够实现更高的功率质量。对于一个真正强大的电网来说,另一个额外的要求是对源和负载进行非常高水平的高带宽控制,或者在输配电(T&D)系统中进行高速故障限制和高速阀,以控制损坏并防止级联停电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A faster, smarter, controllable, greener, distributed Grid - the keys to an advanced Grid that yields higher power quality
Dramatic improvements in Grid power quality require fundamental changes to the physical layer of the Grid, where our electric power is generated, transported and utilized. The addition of “Smarts” to the Grid is essential; however, while it is a necessary condition, it is insufficient to provide the digital quality power that our loads increasingly demand. The fundamental problem of the Grid is not lack of intelligence, but lack of speed. Bulk power sources are remote from loads, and existing controls are applied to clumsy actuators and switchgear. The Future Grid, described here, requires a minimum penetration of generation coupled through electronics. This can easily be achieved through Grid-connected renewables, ideally highly distributed, with autonomous controls for transient events and centralized regional controls for slower time scales. Partial penetration of fast response generation enables performance which can achieve substantially higher quality of power. An additional requirement for a truly robust Grid is either a very high level of high bandwidth control of sources and loads or high-speed fault-limiting and high-speed valves in the Transmission and Distribution (T&D) system, to contain damage and prevent cascading blackouts.
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