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Minimizing PAPR and Synchronization Errors in OFDM for WiMAX Using Software Defined Radio

机译:使用软件定义的无线电使WiMAX的OFDM中的PAPR和同步误差最小

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This paper addresses the reduction of peak-to-average power ratio (PAPR) and synchronization errors of an orthogonal frequency division multiplexing (OFDM) for Mobile-WiMAX physical layer (PHY) standard. In the process, the best achievable PAPR of 0 dB with efficient power amplification is found for the OFDM signal using phase modulation technique, which avoids the nonlinear distortion. Further, the constant modulus algorithm (CMA) and sign kurtosis maximization adaptive algorithm (SKMAA) equalizers are used in the system to reduce the synchronization errors. However, the experimental study is performed on a test platform for a practical proof of the concept. The test platform is based on the Ettus universal software radio peripheral (USRP) N210 hardware and the GNU Radio open source software. Several tests are carried out to observe the effect of equalizers on the system. The performance comparison of bit error rate/symbol error rate (BER/SER) values are tabulated for the system with and without equalization.
机译:本文针对移动-WiMAX物理层(PHY)标准解决了峰均功率比(PAPR)的降低和正交频分复用(OFDM)的同步误差。在此过程中,使用相位调制技术为OFDM信号找到了具有有效功率放大效果的,最佳的0 dB PAPR,可以避免非线性失真。此外,系统中使用了恒定模量算法(CMA)和符号峰度最大化自适应算法(SKMAA)均衡器来减少同步误差。但是,实验研究是在测试平台上进行的,以实际证明该概念。该测试平台基于Ettus通用软件无线电外围设备(USRP)N210硬件和GNU Radio开源软件。进行了几次测试,以观察均衡器对系统的影响。对于具有和不具有均衡的系统,将误码率/符号误码率(BER / SER)值的性能比较制成表格。

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