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Influence of magnetic concentrator on Hall effect based current sensor

机译:磁选机对基于霍尔效应的电流传感器的影响

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PurposeThe purpose of the paper is to clarify the influence of introducing magnetic concentrators on the performance of Hall effect based current sensors and to obtain dependencies of the sensor characteristics on the conductor position.Design/methodology/approachThe finite element method and Comsol software are used for analysis of the three-dimensional magnetic field of the constructions of Hall effect based current sensor with different types of magnetic concentrators closed-core (of rectangular and toroidal type) and open-core of toroidal type with additional larger air gap. The Hall plate is also included in the model with its real dimensions and the magnetic flux density is obtained by integrating over its volume.FindingsIt has been found that there is dependence of the output signal (proportional to the magnetic flux density) of Hall effect based current sensor with both closed- and open-core magnetic concentrators on the position of the current carrying conductor. Distribution of the magnetic flux density and dependencies of its value in the Hall plate on the conductor position and on the additional air gap have been obtained. Optimization is carried out with respect to the additional air gap and cross-section dimensions of the concentrator.Originality/valueEstimation of the influence of the introducing magnetic concentrators is made with respect to relationships between the output signal and conductor position for different constructions of the magnetic core of the concentrators.
机译:目的 n本文的目的是阐明引入磁性集中器对基于霍尔效应的电流传感器性能的影响,并获得传感器特性对导体位置的依赖性。 n设计/方法/方法 n有限元方法和方法Comsol软件用于分析基于霍尔效应的电流传感器结构的三维磁场,该电流传感器具有不同类型的磁选器,闭合磁芯为矩形(环形和环形),环形磁芯为开放式,另外还有较大的气隙。霍尔板还包含其实际尺寸,并且通过在其体积上积分获得磁通密度。 n发现 n已经发现,输出信号与磁通密度成正比。基于霍尔效应的电流传感器,在载流导体的位置上具有闭芯和开芯磁集中器。已经获得了霍尔板中的磁通密度分布及其在导体位置和附加气隙上的依赖性。针对附加的气隙和集中器的横截面尺寸进行了优化。 n原始值/ n针对不同结构的输出信号与导体位置之间的关系,对引入的磁性集中器的影响进行了估算集中器的磁芯。

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