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Design of hardware-in-the-loop simulation system for LTE-A system based on USRP

机译:基于USRP的LTE-A系统半实物仿真系统设计。

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The traditional LTE-A algorithm validation is limited to pure computer software simulation, which can't simulate the actual link scenes, missing scene parameters, the simulation results is invaluable in practice. Therefore, this paper designs LTE-A hardware-in-the-loop simulation system based on software-defined radio device USRP, and the physical layer real-time test level downlink is designed on the system. The downlink scheduled by the scheduling algorithm of the PC simulation platform, with scene parameters feedback to MAC layer in real time. The downlink designed with power interference between cells and users simulate the actual scene. Compare to current design of LTE hardware-in-the-loop simulation, this design presents data interaction between MAC layer and physical layer, implement of specific requirements for physical layer link, instead of generation of vector signal only. The results show that the system is running normally with easy scalability.
机译:传统的LTE-A算法验证仅限于纯计算机软件仿真,无法仿真实际的链接场景,缺少场景参数,仿真结果在实践中具有不可估量的价值。因此,本文设计了基于软件定义的无线电设备USRP的LTE-A硬件在环仿真系统,并在系统上设计了物理层实时测试级下行链路。由PC仿真平台的调度算法调度的下行链路,场景参数实时反馈到MAC层。在小区和用户之间具有功率干扰的下行链路设计模拟了实际场景。与目前的LTE硬件在环仿真设计相比,该设计提供了MAC层与物理层之间的数据交互,实现了对物理层链路的特定要求,而不是仅生成矢量信号。结果表明,该系统正常运行且具有易于扩展的特性。

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