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Lightning Surge Response Improvement by Combinations of Varistors and Gas Discharge Tubes

机译:压敏电阻和气体放电管的组合可改善雷电冲击响应

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This paper proposes a new methodology for protecting power apparatuses against overvoltage or overcurrent caused by lightning surge. Surge Protective Devices (SPDs) are used for protecting apparatuses against overvoltage or overcurrent caused by lightning surge. SPDs are mainly divided into two categories. One is clamping type and the other is switching type. Typical clamping type SPD is a variable resitor (varistor). Typical switching type SPD is a Gas-filled Discharge Tube (GDT). Both varistors and GDTs have problems when using them alone. Therefore both a GDT and a varistor are normally connected in series or parallel. However these simple connections of them have still problems. This paper proposes a lightning surge response improvement by combinations of both varistors and GDTs in order to solve the problems of them. It is that three or more GDTs are connected in series and two or more varistors are connected in parallel. This new methodology has already beeing filed as patents in many countries. The proposed methodology could solve the problems of conventional combinations of a GDT and a varistor.
机译:本文提出了一种保护电力设备免受雷电浪涌引起的过电压或过电流影响的新方法。电涌保护器(SPD)用于保护设备免受雷电浪涌引起的过电压或过电流。 SPD主要分为两类。一种是夹紧型,另一种是开关型。典型的钳位型SPD是可变电阻器(压敏电阻)。典型的开关式SPD是充气放电管(GDT)。压敏电阻和GDT单独使用时都存在问题。因此,GDT和压敏电阻通常都串联或并联连接。但是,它们之间的这些简单连接仍然存在问题。为了解决它们的问题,本文提出了通过压敏电阻和GDT的组合来改善雷电浪涌响应的方法。这是三个或更多的GDT串联连接,两个或更多的压敏电阻并联。这种新方法已在许多国家/地区申请专利。所提出的方法可以解决GDT和压敏电阻的常规组合的问题。

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