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Novel Method for Selective Nonlinear Flux Guide Switching for Contactless Inductive Power Transfer

机译:非接触式感应电能传输的选择性非线性磁通向导切换的新方法

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摘要

Efficient inductive power transfer has become an area of increasing scientific interest as it can solve some problems associated with traditional wired or contact power transmission. These include but are not limited to corrosion, mechanical friction, clutter and impracticality in places like underwater and subterranean applications. This wireless energy transfer is made possible by the optimization of electromagnetic induction, circuit frequency resonance all achieved with advanced power electronics. One of the components of this technology is the precise delivery of the incident electromagnetic fields to the precise location to which they are converted to power via induction, without indiscriminate emission of these electromagnetic fields inefficiently into the surrounding areas. This paper presents a method in achieving bounded spatial freedom using flux-guide saturation for flux delivery to one or more secondary coils for contactless inductive power transfer. The experiments demonstrate the principle of using the nonlinearity of a ferrite flux shield in order to “open up” a flux path from the primary to the secondary coil to achieve inductive power transfer.
机译:高效的感应式功率传输可以解决与传统的有线或接触式功率传输相关的一些问题,已成为科学界日益关注的领域。这些包括但不限于腐蚀,机械摩擦,混乱和在水下和地下应用等场所的不实用性。通过先进的电力电子设备可以实现电磁感应,电路频率谐振的优化,从而实现无线能量传输。该技术的组成部分之一是将入射的电磁场精确地传递到精确的位置,通过感应将其转换为电能,而不会将这些电磁场无误地散发到周围区域。本文提出了一种使用磁通量导引饱和度实现有界空间自由度的方法,该方法用于将磁通量传递到一个或多个次级线圈以进行非接触式感应功率传输。实验证明了使用铁氧体磁通屏蔽的非线性原理以“打开”从初级线圈到次级线圈的磁通路径以实现感应功率传输的原理。

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