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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Circuit Modeling and Signal Transmission Analysis of Inductive Coupler in Wired Drill Pipe
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Circuit Modeling and Signal Transmission Analysis of Inductive Coupler in Wired Drill Pipe

机译:有线钻杆电感耦合器的电路建模与信号传输分析

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The telemetry drill string transmits the measured drilling and formation parameters near the bit to the ground at high speed through the transmission line in the wired drill pipe and the inductive coupler formed by the coil embedded in the drill pipe joint. The voltage transfer function of the inductive coupler seriously affects the signal transmission characteristics of the telemetry drill string. Present research methods cannot accurately and quantitatively describe the influence of the electromagnetic parameters of the inductive coupler on its voltage transfer function. This paper quantitatively analyzes the effects of the electromagnetic parameters of the inductive coupler on signal transmission through reasonable high-frequency circuit modeling. The generation mechanism of eddy current in the magnetic core and the interaction mechanism between eddy current and coupling coils are studied using the electromagnetic detection analysis method of nondestructive testing (NDT) technology. Then, the high-frequency circuit model of the coupler containing eddy current loss is established. The mathematical model of input impedance and signal transmission characteristics of the inductive coupler is established through circuit analysis. The influence of the electromagnetic parameters of the magnetic core and the load resistance of the coupler on the voltage transmission characteristics and power transmission characteristics of the coupler is studied. The research results show that the relative permeability of the magnetic core, load resistance of the coupler, and signal frequency seriously affect the signal voltage transmission. When the relative permeability of the magnetic core material reaches 50, the voltage transmission of the inductive coupler is effectively improved. The electromagnetic simulation results are consistent with the theoretical analysis of the circuit model, which proves the correctness of the circuit model. This paper provides theoretical guidance for the electromagnetic design of inductive couplers and the improvement of signal transmission characteristics of telemetry drill string.
机译:遥测钻串以高速通过有线钻管中的传输线和由嵌入钻管接头中的线圈形成的电感耦合器,将测量的钻孔和形成参数传递到地面到地。电感耦合器的电压传递函数严重影响遥测钻串的信号传输特性。目前的研究方法不能准确地和定量地描述电感耦合器的电磁参数对其电压传递函数的影响。本文通过合理的高频电路建模定量分析电感耦合器电磁参数对信号传输的影响。研究了磁芯中涡流的产生机制和涡流和耦合线圈之间的相互作用机制,采用无损检测技术(NDT)技术的电磁检测分析方法研究。然后,建立了包含涡流损耗的耦合器的高频电路模型。通过电路分析建立了电感耦合器的输入阻抗和信号传输特性的数学模型。研究了磁芯的电磁参数和耦合器的负载电阻对耦合器的电压传输特性和电力传输特性的影响。研究结果表明,磁芯的相对渗透率,耦合器的负载电阻和信号频率严重影响信号电压传输。当磁芯材料的相对磁导率达到50时,电感耦合器的电压传递得到有效地改善。电磁仿真结果与电路模型的理论分析一致,这证明了电路模型的正确性。本文为电感耦合器的电磁设计和遥测钻柱信号传输特性的改进提供了理论指导。

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