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Distributed monitoring and control of future power systems via grid computing

机译:通过网格计算分布式监控和控制未来电力系统

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It is now widely accepted within the electrical power supply industry that future power systems operates with significantly larger numbers of small-scale highly dispersed generation units that use renewable energy sources and also reduce carbon dioxide emissions. In order to operate such future power systems securely and efficiently it will be necessary to monitor and control output levels and scheduling when connecting such generation to a power system especially when it is typically embedded at the distribution level. Traditional monitoring and control technology that is currently employed at the transmission level is highly centralized and not scalable to include such significant increases in distributed and embedded generation. However, this paper proposes and demonstrates the adoption of a relatively new technology 'grid computing' that can provide both a scalable and universally adoptable solution to the problems associated with the distributed monitoring and control of future power systems.
机译:现在普遍的电电源产业未来的电源系统的显著更大的使用可再生能源,并且还减少二氧化碳排放的小规模高度分散的生成单元的数字操作内接受。为了可靠地操作这种未来电力系统和有效地将需要这种产生连接到特别是当它通常嵌入在配电级的电源系统时,以监测和控制输出电平和调度。当前在传输电平采用传统的监控和控制技术是高度集中和不可扩展到包括在分布式和嵌入式发电这样显著增加。然而,本文提出并演示了通过一个相对较新的技术,“网格计算”,可以与分布式监控和未来的电力系统的控制有关的问题既提供可扩展的和普遍收养的解决方案。

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