基于MEMS的电网微气象测量方法研究
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中北大学 信息探测与处理山西省重点实验室 太原 030000

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TN710;TN92

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Research on micro meteorological measurement method of power grid based on MEMS
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Shanxi Key Laboratory of information detection and processing, North China University, Taiyuan 030000

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    摘要:

    针对现有的电网微气象测量方法的缺陷,利用风速和风压间的关系,提出一种基于MEMS的新型微气象测量方法,并通过实验验证其可行性。实验结果表明,当风速低于6m/s时,误差大于2m/s,在风速大于6m/s(和风)条件下,本设计的准确度较高,且误差不超过2m/s,可满足在较强风条件下使用的需求。并对风速取样器的结构进行了研究,研究表明,风速取样器的结构对于采集的风速数据的精确性有很大的影响,通过实验对风速取样器的结构经行了研究,实验结果表明:采用孔径与壁厚为3×5mm,长度为30cm的硅胶采集管风速取样器获得的数据最为接近用来对比的风速采集装置。

    Abstract:

    Aiming at the defects of the existing power grid micro meteorological measurement methods, a new micro meteorological measurement method based on MEMS is proposed by using the relationship between wind speed and wind pressure, and its feasibility is verified by experiments. The experimental results show that when the wind speed is lower than 6m / s, the error is greater than 2m / s. when the wind speed is greater than 6m / s (soft breeze), the accuracy of the design is high, and the error does not exceed 2m / s, which can meet the needs of use under strong wind conditions. The structure of the wind speed sampler is studied. The research shows that the structure of the wind speed sampler has a great impact on the accuracy of the collected wind speed data. The structure of the wind speed sampler is studied through experiments, the data obtained by using a silica gel sampling tube with an aperture and wall thickness of 3×5mm and a length of 30cm is the closest to the wind speed sampling device used for comparison.

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刘振家,张丕状,沈坤,倪沛东.基于MEMS的电网微气象测量方法研究[J].电子测量技术,2021,44(19):36-39

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  • 在线发布日期: 2024-08-05
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