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SF6 density-and-viscosity sensing in Gas Insulated Switchgear using MEMS resonator

机译:使用MEMS谐振器的气体绝缘开关装置中的SF6密度和粘度感测

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SF6 based Gas Insulated Switchgear (GIS) are widely used for High Voltage (HV) applications. Due to the environmental impact of SF6 gas, strict regulations have been laid to monitor their use and to restrict their emission from switchgears. Quartz based resonant density sensor is the best technology commercially available today for SF6 monitoring. Frequency response of the sensor is a function of both density and viscosity. However, each sensor contains a matched pair of quartz crystals for temperature compensation. The accuracy of the density sensor is limited by the extent of mismatch between the quartz crystals which determines the minimum detectable change in SF6 density. Calibration makes the sensor gas-specific and dependent on the environmental conditions. We propose a MEMS based resonator for in-situ SF6 viscosity measurement that can be used as an input to the existing gas density sensor. It will make the matched pair of quartz crystal redundant resulting in more accuracy.
机译:SF6基于基于的气体绝缘开关设备(GIS)广泛用于高压(HV)应用。由于SF6天然气的环境影响,已经奠定了严格的法规来监测其使用,并限制他们从开关柜的排放。基于石英的谐振密度传感器是今天可商购的最佳技术,用于SF6监控。传感器的频率响应是密度和粘度的函数。然而,每个传感器包含匹配的一对石英晶体,用于温度补偿。密度传感器的精度受到石英晶体之间的错配的限制,该晶粒之间的错配,该晶体之间的不匹配决定了SF6密度的最小可检测变化。校准使传感器的气体特异性和取决于环境条件。我们提出了一种基于MEMS的谐振器,用于原位SF6粘度测量,可用作对现有气体密度传感器的输入。它将使得匹配的一对石英晶晶冗余导致更准确。

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