Advanced electron guns and depressed collectors design and optimization using the MICHELLE / ANALYST Environment

B. Held, J. Deford, J. Petillo, D. Panagos, E. Nelson, B. Levush
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引用次数: 4

Abstract

Next generation vacuum electron devices under development for millimeter and sub-millimeter wavelengths are often characterized by very small features that must be very precisely designed and manufactured for proper tube function and longevity. In this regime the need for automated physics-based optimization to aid the designer in meeting device performance specifications is much more critical than in larger, lower frequency devices where prototyping and experimentation are more readily performed. Recent work has been done on improving the ability of modeling and design simulation environments to aid the designer in finding optimum configurations. As the simulation tools have improved to enable first-pass design success in some cases, the potential benefits of optimization techniques become even more significant. This paper discusses methods for optimization of electron guns as well as multistage depressed collectors.
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使用MICHELLE / ANALYST环境设计和优化先进的电子枪和压抑收集器
正在开发的用于毫米波和亚毫米波波长的下一代真空电子器件通常具有非常小的特征,必须非常精确地设计和制造以确保适当的管功能和寿命。在这种情况下,需要基于物理的自动化优化来帮助设计师满足设备性能规格,这比在更大、更低频率的设备中更容易进行原型设计和实验更为重要。最近的工作是提高建模和设计仿真环境的能力,以帮助设计人员找到最佳配置。随着仿真工具的改进,在某些情况下可以实现首过设计的成功,优化技术的潜在好处变得更加显著。本文讨论了电子枪和多级压抑集热器的优化方法。
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