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TICRA CHAMP 3.2 x64

CHAMP 3.2发布,共实施了16项新功能,为用户提供了重要的设计增强功能,无论是关注馈源还是反射器终端。工作流程得到改善,设计优化速度提高,所有这些都可以提高整体设计流程的效率。

CHAMP现在扩展到馈电和单个反射器的同步设计优化。一个明显的应用是优化馈源 – 反射器相互作用,以减少由于反射器的反向耦合引起的回波损耗;另一项任务可能是通过调整进给轮廓和尺寸来优化峰值方向性,以提供最佳锥度,并在溢出损耗和孔径效率之间实现良好的折衷。这甚至可以在控制旁瓣包络的同时完成。

单反射器特征可以方便地与新的和改进的球形波输出组合:您使用CHAMP设计了位移轴反射器系统,并且想要分析非旋转对称物体对主盘的影响,例如制造公差或用于进给子反射器组件的支撑腿。在CHAMP中,您可以将进给子反射器视为单反射器系统,在所需的所有频率下进行分析,然后根据您的喜好创建球形波展开,并使用瞄准线指向主反射器。

将球面波展开导入另一个程序,例如GRASP允许您执行所需的分析,CHAMP中的新文件包含每个频段的所有频率以及有关扩展原点的信息。

当CHAMP在多核系统上运行时,运行时间显着减少。通过以更有效的方式利用CPU核来实现改进的性能。使用单个CPU内核,相对于使用CHAMP 3.1.1获得的运行时间显示加速比。

其他新功能:

  • 表达式的新内在函数
  • 复制,粘贴和标记表格中的所有内容
  • 改进了对现有优化目标的编辑
  • 在优化过程中自动保存最佳新解决方案
  • 更灵活的喇叭孔径效率限制

更多信息:CHAMP.


TICRA CHAMP 3.2 x64 (圆形波纹状馈源喇叭或圆形光滑馈源喇叭电磁性能分析)| 143 Mb

CHAMP 3.2 is released with a total of 16 new features implemented, providing the user with significant design enhancement capabilities, whether the focus is on feeds or reflector terminals. The work flow is improved and the speed of the design optimization increased, all of which leads to a more efficient overall design process.

CHAMP is now extended to simultaneous design optimization of feed and a single reflector.An obvious application is to optimize the feed-reflector interaction to reduce the return loss due to back-coupling from the reflector; another task could be to optimize the peak directivity by adjusting the feed profile and dimension to provide an optimum taper and realizing a good trade-off between spill-over loss and aperture efficiency. This may even be done whilst controlling the sidelobe envelope.

The single-reflector feature can be conveniently combined with the new and improved spherical wave export: you have designed a displaced-axis reflector system using CHAMP and want to analyze the impact of non-rotationally symmetric objects on the main dish, for example manufacturing tolerances or support-legs for the feed-subreflector assembly. In CHAMP you can consider the feed-subreflector as a single-reflector system, analyze it at all the frequencies you need and then create spherical wave expansion with the origin placed according to your preference and with the boresight pointed at the main reflector.

Importing the spherical wave expansion into another program, e.g. GRASP, allows you to perform the analyses you wish, and the new files from CHAMP contains all frequencies i each band as well as information about the origin of the expansion.

The run time has been significantly reduced when CHAMP is running on a multi-core system . The improved performance is achieved by utilizing the CPU cores in a more efficient manner. The speedup is shown relative to the runtime obtained with CHAMP 3.1.1 using a single CPU core.

Other new features:

  • New intrinsic functions for expressions
  • Copy, paste and mark all available in tables
  • Improved editing of existing optimisation goals
  • Automatic saving of best new solution during optimisation
  • More flexible limits for Horn Aperture Efficiency

More about CHAMP.

HomePage:https://www.ticra.com/
Language: English
Operating Systems: Windows 7/8.x 64Bit

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