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On the peak-to-average power ratio reduction in mobile WiMAX: A discrete cosine transform matrix precoding based random-interleaved orthogonal frequency division multiple access uplink system

机译:关于移动WiMAX的峰均功率比降低:基于离散余弦变换矩阵预编码的随机交织正交频分多址上行链路系统

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Mobile worldwide interoperability for microwave access (Mobile WiMAX) is a broadband wireless solution that enables the convergence of mobile and fixed broadband networks through a common wide area radio-access (RA) technology and flexible network architecture. Since January 2007, the IEEE 802.16 working group (WG) has been developing a new amendment of the IEEE 802.16 standard i.e. IEEE 802.16 m as an advanced air interface to meet the requirements of STU-R/IMT-Advanced for 4 G systems. The mobile WiMAX air interface adopts orthogonal frequency division multiple access (OFDMA) as multiple access technique for its uplink (UL) and downlink (DL) to improve the muitipath performance. Al! OFDMA based networks, including mobile WiMAX experiences the problem of high peak-to-average power ratio (PAPR). This paper presents: Discrete-Cosine transform matrix (DCTM) precoding based random-interleaved OFDMA uplink system and selecting mapping (SLM) based DCTM precoded random-interleaved OFDMA uplink system respectively, for PAPR reduction in mobile WiMAX systems. PAPR of the proposed systems is analyzed with the root-raised-cosine (RRC) puise shaping to keep out of band radiation low and to meet the transmission spectrum mask requirement. Simulation results show that, the proposed systems have Sow PAPR than the Waisb-Badamard transform (WHT) precoded random-interleaved OFDMA uplink systems and the conventional random-interleaved OFDMA uplink systems. Symbol-error-rate (SER) performance of the proposed system is also better than the conventional random-interleaved OFDMA upiink systems and at par with WHT based random-interleaved OFDMA uplink systems. Good improvement in PAPR and SER offered by the proposed systems can notably reduce the cost and complexity of the transmitter.
机译:移动全球微波访问互操作性(Mobile WiMAX)是一种宽带无线解决方案,它可以通过通用的广域无线访问(RA)技术和灵活的网络架构来实现移动和固定宽带网络的融合。自2007年1月以来,IEEE 802.16工作组(WG)一直在开发IEEE 802.16标准的新修订版,即IEEE 802.16 m作为高级空中接口,以满足4G系统的STU-R / IMT-Advanced的要求。移动WiMAX空中接口的上行链路(UL)和下行链路(DL)采用正交频分多址(OFDMA)作为多址技术,以改善多径性能。啊!包括移动WiMAX在内的基于OFDMA的网络都遇到了峰均功率比(PAPR)高的问题。本文提出:基于离散余弦变换矩阵(DCTM)预编码的随机交织OFDMA上行链路系统和基于选择映射(SLM)的DCTM预编码的随机交织的OFDMA上行链路系统,分别用于降低移动WiMAX系统的PAPR。拟议系统的PAPR采用根升余弦(RRC)puise成形进行分析,以保持低带外辐射并满足传输频谱模板要求。仿真结果表明,与Waisb-Badamard变换(WHT)预编码随机交织的OFDMA上行链路系统和常规随机交织的OFDMA上行链路系统相比,所提出的系统具有Sow PAPR。所提出系统的符号错误率(SER)性能也优于常规随机交织的OFDMA上行系统,并且与基于WHT的随机交织的OFDMA上行链路系统相媲美。所提出的系统对PAPR和SER的良好改进可以显着降低发射机的成本和复杂性。

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