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Safety issues and damage to equipment with both Smart Grid and home network connections

机译:使用智能电网和家庭网络连接的安全问题和设备损坏

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Equipment getting power from the Smart Grid often has connections to the home network, a configuration which during a lightning storm is prone to safety issues and damage. Lightning can occur as direct strikes to a service, or as nearby strikes which induce currents in a service. Protection against these events is important, and existing standards deal with these. But there is a situation that existing standards have not considered, and it can result in a shock hazard and equipment failure. This potential failure is caused by Ground Potential Rise (GPR), in a site which has two or more ground references; for example AC power grounded at the service entrance at one side of a house, and a phone line grounded via a surge protector at the opposite side. The GPR produces a voltage gradient between the two ground references. This high voltage is a potential shock hazard. It can also cause a breach of basic or enhanced insulation, with damage and potential exposure to hazardous voltages resulting. This paper discusses GPRs; how to test an equipment to see if a GPR will cause a problem; and what to do if it does.
机译:从智能电网获得电力的设备通常具有与家庭网络的连接,这种配置在雷雨天气时很容易发生安全问题和损坏。雷击可能是对服务的直接打击,也可能是附近的感应,在服务中感应出电流。防止这些事件的发生很重要,现有的标准可以解决这些问题。但是有一种情况,现有的标准没有考虑,这可能会导致电击危险和设备故障。此潜在故障是由具有两个或多个地面参考的站点中的地面电位上升(GPR)引起的。例如,交流电源在房屋一侧的服务入口处接地,电话线在另一侧通过电涌保护器接地。 GPR在两个接地参考之间产生电压梯度。此高压有潜在的电击危险。它还可能会破坏基本绝缘或增强绝缘,从而造成损坏并可能承受危险电压。本文讨论了GPR。如何测试设备以查看GPR是否会引起问题;以及如何处理。

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