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SIMULATION OF GLOBAL SOLAR RADIATION BASED ON CLOUD OBSERVATIONS

机译:基于云观测的全球太阳辐射模拟

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A stochastic model for simulating global solar radiation on a horizontal surface has been developed for use in power systems reliability calculations. The importance of an appropriate model for global solar radiation has increased with the increased use of photovoltaic power generation. The global solar radiation shows not only regular yearly and daily variations but also a random behavior. The yearly and daily variations can be described in a deterministic way while the random behavior has a high correlation with the state of the atmosphere. The astronomic effects can easily be described mathematical with only some minor simplifications but the atmospheric effects are more complicated to describe. The transmittivity of solar radiation in the atmosphere depends on various factors, e.g. humidity, air pressure and cloud type. By using cloud observations as input for the simulations, the local meteorological conditions can be accounted for. The model is usable for any geographical location if cloud observations are available. This is especially useful for development countries where long-term solar radiation measurement can be hard to obtain. Cloud observations can be performed without any expensive equipment and have been a standard parameter for many years throughout the world. Standard observations are done according to the Oktas-scale. It is the interval between observations that sets the resolution of the simulation: the observations are normally only every hour or every third hour. The model can easily be combined with cloud coverage simulations for a more general model. For some calculations higher resolution could be needed. This can be obtained by including a stochastic model for the short-term variations. Simulations have been verified by using measured data.
机译:已开发出一种用于模拟水平面上的整体太阳辐射的随机模型,可用于电力系统的可靠性计算。随着光伏发电的使用越来越多,为全球太阳辐射建立适当模型的重要性日益提高。全球太阳辐射不仅显示每年和每天都有规律的变化,而且还表现出随机的行为。年度和每日变化可以用确定性的方式描述,而随机行为与大气状态高度相关。只需稍作简化,就可以很容易地用数学方式描述天文学的影响,但大气影响的描述则更为复杂。太阳辐射在大气中的透射率取决于各种因素,例如:湿度,气压和云型。通过使用云观测作为模拟的输入,可以考虑当地的气象条件。如果可以使用云观测,则该模型可用于任何地理位置。这对于难以获得长期太阳辐射测量值的发展中国家特别有用。无需任何昂贵的设备就可以进行云观测,并且多年来一直是全球的标准参数。根据Oktas量表进行标准观察。观察之间的间隔决定了模拟的分辨率:观察通常仅每小时一次或每三小时一次。该模型可以轻松地与云覆盖模拟相结合,以获得更通用的模型。对于某些计算,可能需要更高的分辨率。这可以通过包含短期变化的随机模型来获得。通过使用测量数据验证了仿真。

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