炉磁控管的粒子池(PIC)模拟研究进展

A. Andreev, S. Birla
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引用次数: 2

摘要

拥有2.45 GHz磁控管的传统微波炉,其微波输出功率为0.7-1.0千瓦,已经成为美国每个家庭或办公室日常使用的各种厨房电器中事实上的“必备”之一。然而,在过去10年中,随着众多无线系统的兴起,出现了一个问题,其中最值得注意的是IEEE 802.11/WiFi系统,它以2.45 GHz的相同频率工作,靠近工作的微波炉。这个问题被称为电磁干扰(EMI),它使附近的无线计算机网络和许多家庭/办公室无线设备的生活变得非常复杂。EMI问题的一个可能解决方案是重新设计“炊具”磁控管,使其在Wi-Fi频谱外缘的频率上工作,例如2.48 GHz。该报告描述了传统双束十腔非相对论磁控管的现代计算机粒子池(PIC)模拟如何帮助人们设计和建造新的2.48 GHz“灶具”磁控管,减少家庭/办公室2.45 GHz无线设备的EMI问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of particle-in-cell (PIC) simulations of an oven magnetron
The conventional microwave oven with the 2.45 GHz “cooker” magnetron producing output microwave power of 0.7-1.0 kW has become de-facto one of the “must-have” from the long line of different kitchen appliances available for everyday use in every single US home or office. A problem has arisen, however, during the last 10 years with the rise of numerous wireless systems, most notable of which is the IEEE 802.11/WiFi system, operating at the same frequency 2.45 GHz in a close proximity to the working microwave oven. The problem is called the Electro-Magnetic Interference (EMI) and it is making life really complicated for nearby wireless computer networks and numerous home/office wireless devices. One of the possible solutions of the EMI problem is to redesign the “cooker” magnetron to operate at the frequency located at the outer edge of the Wi-Fi spectrum, 2.48 GHz for example. The presentation describes how the modern computer particle-in-cell (PIC) simulations of a conventional double-strapped ten-cavity non-relativistic magnetron may help one to design and build the new 2.48 GHz “cooker” magnetron with the reduced EMI problem to home/office 2.45 GHz wireless devices.
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