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Design of SINS/GPS integrated navigation system based on dual NiosII soft-core

机译:基于双NIOSII软核的SINS / GPS集成导航系统设计

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As an advanced integrated navigation system with excellent performance, the SINS/GPS system combines the advantages of strap-down inertial navigation system (SINS) and global positioning system (GPS) respectively. A new architecture of the SINS/GPS system is implemented on SOPC platform with dual NiosII soft-core, which is proposed as an alternative of the conventional implementation with FPGA plus DSP. The two NiosII soft-core, One CPU core is utilized for the central control, data acquisition and off-chip communication with the host computer, another core is for the implementation of real-time navigation. Moreover, the Kaiman filter is implemented as a specific IP embedded into the on-chip system, which possesses a higher efficiency than the conventional method by using C program on DSP. As a hardware filter, it's independent of NiosII. The experimental results show both excellent efficiency and real-time quality of the implemented system. Consequently, the proposed architecture with conspicuous advantages is more feasible and has a reduced resource usage, compared with the conventional method.
机译:作为具有出色性能的先进集成导航系统,SINS / GPS系统分别结合了带式惯性导航系统(SINS)和全球定位系统(GPS)的优势。 SINS / GPS系统的新架构在具有双NIOSII软核的SOPC平台上实现,该软芯提出了具有FPGA加DSP的传统实现的替代方案。两个NiosII软核,一个CPU内核用于中央控制,数据采集和与主机的芯片通信,另一个核心用于实现实时导航。此外,Kaiman滤波器被实现为嵌入到片上系统中的特定IP,它通过在DSP上使用C程序具有比传统方法更高的效率。作为硬件过滤器,它与NiosII无关。实验结果表明,实现系统的优异效率和实时质量。因此,与传统方法相比,具有显着优点的提出的架构更加可行并且具有降低的资源使用率。

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