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Orthogonal Pilot Channel Using Combination of FDMA and CDMA in Single-Carrier FDMA-Based Evolved UTRA Uplink

机译:在基于单载波FDMA的演进UTRA上行链路中结合FDMA和CDMA的正交导频信道

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In the evolved UTRA (UMTS terrestrial radio access) uplink, single-carrier frequency division multiple access (SC-FDMA) radio access was adopted owing to its advantageous low peak-to-average power ratio (PAPR) feature, which leads to wide coverage area provisioning with limited peak transmission power of a set of user equipment (UE). This paper proposes orthogonal pilot channel generation using the combination of FDMA and CDMA in the SC-FDMA-based evolved UTRA uplink. In the proposed method, we employ distributed FDMA transmission for simultaneous accessing users with different transmission bandwidths, and employ CDMA transmission for simultaneous accessing users with identical transmission bandwidths. Moreover, we apply a code sequence with a good auto-correlation property such as a constant amplitude zero auto-correlation (CAZAC) sequence employing a cyclic shift to increase the number of sequences. Simulation results show that the average packet error rate (PER) performance using an orthogonal pilot channel with the combination of FDMA and CDMA in a six-user environment, i.e., four users each with a 1.25-MHz transmission bandwidth and two users each with a 5-MHz transmission bandwidth, employing turbo coding with the coding rate of R = 1/2 and QPSK and 16QAM data modulation coincide well with those in a single-UE environment with the same transmission bandwidth. We show that the proposed orthogonal pilot channel structure using the combination of distributed FDMA and CDMA transmissions and the application of the CAZAC sequence is effective in the SC-FDMA-based evolved UTRA uplink.
机译:在演进的UTRA(UMTS地面无线电接入)上行链路中,由于其有利的低峰平均功率比(PAPR)特征,采用单载波频分多址(SC-FDMA)无线电接入,这导致宽覆盖范围区域供应具有一组用户设备(UE)的有限峰值传输功率。本文提出了使用FDMA和CDMA在基于SC-FDMA的演进UTRA上行链路中的组合的正交导频信道。在所提出的方法中,我们采用分布式FDMA传输来同时访问具有不同传输带宽的用户,并采用CDMA传输,用于同时访问具有相同传输带宽的用户。此外,我们应用具有良好自动相关性的代码序列,例如采用循环移位以增加序列数的恒定幅度零自动相关(Cazac)序列。仿真结果表明,在六个用户环境中使用正交导频通道的平均数据包错误率(每)性能,即六个用户环境中的FDMA和CDMA的组合,即四个用户,每个用户都有1.25-MHz传输带宽和两个用户5-MHz传输带宽,采用r = 1/2的编码率和QPSK和16QAM数据调制的Turbo编码与具有相同传输带宽的单个环境中的那些吻合良好。我们表明,所提出的正交导频信道结构使用分布式FDMA和CDMA传输的组合以及CAZAC序列的应用在基于SC-FDMA的演进UTRA上行链路中是有效的。

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