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Semi-physical Simulation Test System for Electromagnetic Wave Imaging

机译:电磁波成像半物理仿真与测试系统

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In traditional R & D method of electromagnetic wave imaging equipment, testing the algorithm is only possible after the integration of their RF transceiver front-end and signal process & imaging back-end. This results in some problems and errors not being found in the early stages of design. In order to improve the development efficiency and reduce the risk, the semi-physical simulation & test including rapid prototyping and hardware-in-the-loop was introduced to the R & D procedure, and a V-mode based flow for the development of electromagnetic wave imaging equipment was proposed. Then an example system was implemented with multiple instruments for test and measurement integrated, by which the RF transceiver front-end and signal process & imaging back-end were designed and developed in parallel and most tests would have been done during their development. This led to early detection of problems and errors being achieved. The system has been applied to the R & D of ultra-wide band (UWB) microwave and terahertz (THz) wave imaging system.
机译:在电磁波成像设备的传统R&D方法中,只有在整合其RF收发器前端和信号过程和成像后端之后才能测试算法。这导致某些问题和未在设计的早期阶段发现的错误。为了提高开发效率并降低风险,将包括快速原型和硬件的半物理仿真和测试引入R&D过程,以及基于V模式的流动提出了电磁波成像设备。然后,使用多个用于测试和测量的仪器实现示例系统,其中RF收发器前端和信号过程和成像反向是并行设计和开发的,并且在开发过程中将进行大多数测试。这导致了早期发现问题和错误。该系统已应用于超宽带(UWB)微波和太赫兹(THz)波成像系统的研发。

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