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Reduction of power fluctuation in grid connected SPV plant through aggregate distributed generation

机译:通过总分布式发电减少并网SPV电厂的功率波动

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This paper aims to analyze the reduction of power fluctuation in the main grid by the generation of distributed solar power through several small micro grids connected into main grid. These fluctuations are mainly due to seasonal condition and cloud passing over the solar plant. There are several methods available to predict the power fluctuation due to seasonal variation but fluctuation due to cloud passing is very unpredictable. In this paper, a novel method is proposed where the power generated from SPV using several small micro grids which are geographically distributed in a 100 km radius are integrated. All of the five stations which are generating x amount of power individually are connected to the main grid at a common point, the collective fluctuation is monitored and compared for each of the sites against a system generating 5x power at a single location. It is found that the geographically distributed generation (neglecting transmission losses) produces less fluctuation in the grid. The proposed system gives less fluctuation because it is unlikely that all the sites have cloud cover at a particular time simultaneously. The advantage of the proposed system is that a lesser capacity battery bank will be required and the excess power generated during clear weather will be injected into the grid which will generate extra income. This is aptly suitable for the Indian power sector where grid is always operating at lower frequency.
机译:本文旨在分析通过连接到主电网中的几个小型微电网产生分布式太阳能来减少主电网中的功率波动。这些波动主要是由于季节性条件和云层在太阳能发电厂上空传播所致。有几种方法可以预测由于季节变化而引起的功率波动,但是由于云通过而引起的波动是非常不可预测的。在本文中,提出了一种新颖的方法,该方法将使用几个地理范围分布在100 km半径内的小型微电网从SPV产生的功率进行整合。分别产生x电量的所有五个站点都在公共点连接到主电网,监视每个站点的集体波动并将其与在单个位置生成5倍功率的系统进行比较。发现地理分布的发电(忽略输电损耗)在电网中产生的波动较小。提议的系统波动较小,因为所有站点都不可能在特定时间同时被云覆盖。所提出的系统的优点在于,将需要较少容量的电池组,并且在晴朗天气期间产生的过量电力将被注入电网,这将产生额外的收入。这非常适用于电网始终以较低频率运行的印度电力部门。

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