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Power Quality Assessment via Physically Based Modelingand Statistical Methods

机译:通过基于物理的建模和统计方法进行电能质量评估

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Power quality at the consumer site is affected by (a) temporary disturbances that may originate anywhere in the system and (b) waveform distortion from nonlinear loads. The sources of disturbances are multiple and with varying parameters. For example in many places of the world, the most frequent disturbances originate from lightning activity near electric installations. Lightning may result in flashover causing voltage sags to some portion of the distribution system, voltage swell to other areas, as well as interruption of power. The number of customers affected depends on the design of the system and placement of interruption devices, while the level of voltage sags or swells may depend on the grounding system, size of neutral, etc. To properly capture these effects, the system model should explicitly represent these design details of the system. This paper presents a model that quantifies the impact of grounding system design on the power quality. It is also pointed out that many of the causes are statistically distributed both in time and in space. Statistical methods represent the best way for meaningful assessment of their effects on power quality. When these methods are combined with physically based models of the system, they provide an excellent tool for correlating design options to power quality performance. Examples of this approach are presented in this paper using Monte Carlo simulation techniques. The approach is suitable for cost-benefit analysis.
机译:消费者网站上的电力质量受到(a)临时干扰的影响,可能源于系统中的任何位置和(b)来自非线性负载的波形失真。扰动源是多个和不同参数的。例如,在世界的许多地方,最常见的干扰源于电气装置附近的雷电活动。闪电可能导致闪光灯导致电压落下到分配系统的某些部分,电压膨胀到其他区域,以及电力的中断。受影响的客户数量取决于系统的设计和中断器件的放置,而电压凹槽或膨胀的水平可能取决于接地系统,中性大小等,以适当地捕获这些效果,系统模型应该明确代表系统的这些设计细节。本文提出了一种模型,量化了接地系统设计对电力质量的影响。还指出,许多原因在统计上和空间中都在统计上分发。统计方法代表了对其对电能质量影响的有意义评估的最佳方式。当这些方法与系统的物理模型组合时,它们提供了一种优异的工具,用于将设计选项与电能质量性能相关联。本文使用Monte Carlo仿真技术提出了这种方法的实例。该方法适用于成本效益分析。

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