基于电路模型和粒子模拟的射频滤波器多载波信号多因子击穿阈值估计

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Miguel Rodríguez;Raúl Cervera;Carlos Alcaide;Pablo González;Pablo Soto;José V. Morro;Vicente E. Boria;César Miquel España;David Raboso
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引用次数: 0

摘要

多因素是一种有害的影响,它可能会限制卫星通信系统的功率处理能力,从而限制其整体性能,从而挑战卫星通信系统的正确运行。因此,多因子阈值预测技术的发展具有重要的实际意义。对于窄带分量,可以从实验图中得到粗略的估计,通常导致阈值保守。用粒子模拟器可以得到更精确的预测,但要付出更高的计算代价。本研究提出了一种基于电路模型的方法,用于快速准确地预测多因子阈值,特别是解决窄带样本中多载波信号引起的短期放电问题。详细讨论了临界间隙区域的简化但具有代表性的电磁模型的使用。通过使用这些模型,可以避免模拟完整的结构,提高计算效率,并在早期设计阶段实现功率要求。通过商业粒子模拟器验证了所提出的技术,展示了其功效,效率和关键优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multipactor Breakdown Threshold Estimation Based on Circuital Models and Particle Simulations for Multicarrier Signals in RF Filters
Multipactor is a harmful effect that may challenge the correct operation of satellite communication systems by limiting the system power-handling capability, and hence its overall performance. Therefore, the development of techniques for predicting the multipactor threshold is of great practical interest. For narrowband components, rough estimations can be obtained from experimental charts, normally resulting in conservative thresholds. More accurate predictions can be obtained with particle simulators, at the expense of a much higher computational effort. This study proposes an approach based on circuital models for swift and accurate multipactor threshold predictions, specifically addressing short-term discharges induced by multicarrier signals in narrowband samples. The use of reduced, but representative, electromagnetic (EM) models of the critical gap region is discussed in detail. Through the use of these models, it is possible to avoid simulating the complete structure, increasing the computational efficiency and enabling the fulfillment of the power requirements at early design stages. The proposed technique is validated through commercial particle simulators, showcasing its efficacy, efficiency, and key benefits.
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来源期刊
CiteScore
10.70
自引率
0.00%
发文量
0
审稿时长
8 weeks
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