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Near-Field Communication Transceiver System Modeling and Analysis Using SystemC/SystemC-AMS With the Consideration of Noise Issues

机译:考虑噪声问题的使用SystemC / SystemC-AMS的近场通信收发器系统建模和分析

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SystemC, as a C++-based hardware description language, is used for system architecture design, large digital hardware, software, and their interaction. Its extension, SystemC-AMS, provides the capability of abstract modeling to deliver analog system-level simulation of “real-time” application scenarios. SystemC and SystemC-AMS help designers to analyze a whole mixed-signal system and further guide the circuit design to reduce the design cost. This paper presents SystemC (2.2.0) and SystemC-AMS (1.0 Beta2) modeling of a near-field communication (NFC) system working in passive mode, based on the proximity contactless identification cards ISO/IEC 14443 international standard. The NFC transceiver system includes reader and card analog blocks, digital blocks, and antennas. Problems caused by realistic imperfections are considered, simulated, and then solved by modifying the design at a system level, which is significant to high-level modeling. Systematic simulation is given to prove SystemC/SystemC-AMS is an accurate and efficient tool to model a heterogeneous mixed-signal system in an early-design stage.
机译:SystemC是基于C ++的硬件描述语言,用于系统体系结构设计,大型数字硬件,软件及其交互。它的扩展SystemC-AMS提供了抽象建模的功能,可以提供“实时”应用场景的模拟系统级仿真。 SystemC和SystemC-AMS帮助设计人员分析整个混合信号系统,并进一步指导电路设计以降低设计成本。本文基于ISO / IEC 14443国际标准非接触式识别卡,介绍了以被动模式工作的近场通信(NFC)系统的SystemC(2.2.0)和SystemC-AMS(1.0 Beta2)建模。 NFC收发器系统包括读取器和卡模拟模块,数字模块和天线。通过修改系统级别的设计来考虑,模拟和解决由实际缺陷引起的问题,这对高级建模很重要。通过系统仿真,证明SystemC / SystemC-AMS是在早期设计阶段建模异构混合信号系统的准确而有效的工具。

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