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Behavioral VHDL-AMS model and experimental validation of a nuclear magnetic resonance sensor

机译:行为VHDL-AMS模型和核磁共振传感器的实验验证

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摘要

This paper describes the development for a model of a nuclear magnetic resonance spiral coil sensor using analog hardware description. Our procedure implies several steps with emphasis on model complexity reduction, identification of critical parameters and validation of experimental measurements. The proposed macro-model permits an extremely fast simulation while providing nearly finite element method accuracy. As a tool for coding the description of system level modeling we use analog hardware description language VHDL-AMS (Ashenden et al. in the system designer's guide to VHDL-AMS, Morgan Kauffmann, 2002). In order to obtain the behavioral computation results, SYSTEM VISION simulation environment from Mentor Graphics was employed. In our proposed model, the different parts of the sensor and the different effects involved (electrical parameters, physical and magnetic coupling, loss effects) can be modeled within the same tool, together with the sensor environment: electrical command and detection circuit, time dependent magnetic field, and so on.
机译:本文使用模拟硬件描述描述了核磁共振螺旋线圈传感器模型的开发。我们的程序包含几个步骤,重点在于降低模型复杂性,确定关键参数和验证实验测量值。所提出的宏模型允许极快的仿真,同时提供接近有限元的方法精度。作为对系统级建模的描述进行编码的工具,我们使用模拟硬件描述语言VHDL-AMS(Ashenden等在VHDL-AMS的系统设计指南中,Morgan Kauffmann,2002年)。为了获得行为计算结果,采用了Mentor Graphics的SYSTEM VISION仿真环境。在我们提出的模型中,可以在同一工具内对传感器的不同部分以及所涉及的不同影响(电参数,物理和磁耦合,损耗影响)以及传感器环境进行建模:电命令和检测电路,与时间有关磁场等等。

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