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Using the Dynamic Behavior of Superimposed Fields for Point-Field-Based Current Sensing

机译:使用叠加场的动态行为进行基于点场的电流感测

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摘要

The dynamic behavior of magnetic fields surrounding adjacent current-carrying conductors is investigated for the purpose of point-field-based current sensing. The influence of eddy currents on magnetic field distribution over the useful spectrum (dc to 1 MHz) is quantified by using a spatially dependent metric, the 5% flat bandwidth (FBW). A comparison of field distributions at dc and 1 MHz shows the origin of the FBW function, which is unique to each conductor''s cross section and nearby environment. The FBW fields for several different conductor geometries are analyzed. Superposition is used for conductor geometries that have multiple currents. A method for determining optimal field detector placement using optimization functions is introduced.
机译:为了基于点场的电流感应,研究了相邻载流导体周围磁场的动态行为。涡电流对有用频谱(直流到1 MHz)上的磁场分布的影响通过使用空间相关的度量标准(5%平坦带宽(FBW))进行量化。直流和1 MHz处的场分布比较显示了FBW函数的起源,该函数对于每个导体的横截面和附近环境都是唯一的。分析了几种不同导体几何形状的FBW场。叠加用于具有多个电流的导体几何形状。介绍了一种使用优化函数确定最佳场检测器放置的方法。

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