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首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >Development of 100 MHz Bandwidth Testbed toward IMT-Advanced and Experimental Results Including Rotational OFDM and Twin Turbo Decoder Transmission Performances
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Development of 100 MHz Bandwidth Testbed toward IMT-Advanced and Experimental Results Including Rotational OFDM and Twin Turbo Decoder Transmission Performances

机译:面向IMT-Advanced的100 MHz带宽测试平台的开发以及包括旋转OFDM和Twin Turbo解码器传输性能在内的实验结果

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Aiming at actual evaluation of IMT-Advanced system performance using field tests, this paper develops an IMT-Advanced testbed system with a transmission bandwidth of 100 MHz. Taking into account recent advances in research and development of an IMT-Advanced system, orthogonal frequency division multiplexing (OFDM) with multiple-input multiple-output (MIMO) are also promising technologies in IMT-Advanced. In addition, in order to meet the requirements for IMT-Advanced, the system seems to have a bandwidth of about 100 MHz with the aid of MIMO transmission. The developed system is based on the above more reliable prediction compared with previous studies, and the goals of this development are to provide a more realistic transmission performance, judgment criteria for operators introducing new air interfaces, and to explore new applications. This paper also presents the experimental results of rotational OFDM (R-OFDM) and twin turbo (T2) decoder implemented in the testbed and demonstrates that our proposals are better than the conventional schemes in actual radio transmission. Both physical layer technologies have been proposed by the authors, however, the previous works are only predicated on computer simulation. In this paper, the proposals are experimentally evaluated by distorting the transmitted signal on radio waves with a fading simulator and additional noise generator. When the packet error rate performance is measured, the measurement results are verified to be in good agreement with the simulation results. The experimental results also demonstrate that the R-OFDM can reduce the required carrier to the interference power ratio (CIR) of OFDM by about 1.1 dB in single-input single output (SISO) multi-path fading channel. In addition, it becomes clear that the T2 decoder is better than the turbo decoder in error correction, and the required CIR reduction achieves about 0.8 dB in SISO AWGN channel. The throughput performances are also measured with different modulation and coding conditions, and the measured forward throughput in the SISO AWGN channel achieves up to 373.6 Mbps. In addition, by use of 2 × 2 MIMO transmission, the measurements results substantiate that throughput of 512.7 Mbps can be realized even in the multi-path fading condition.
机译:针对使用现场测试对IMT-Advanced系统性能的实际评估,本文开发了一种传输带宽为100 MHz的IMT-Advanced测试平台系统。考虑到IMT-Advanced系统研究和开发的最新进展,具有多输入多输出(MIMO)的正交频分复用(OFDM)也是IMT-Advanced中有希望的技术。另外,为了满足IMT-Advanced的要求,借助于MIMO传输,系统似乎具有约100 MHz的带宽。与以前的研究相比,开发的系统基于上述更可靠的预测,并且该开发的目标是提供更现实的传输性能,为运营商引入新的空中接口提供判断标准并探索新的应用。本文还介绍了在测试平台上实现的旋转OFDM(R-OFDM)和双涡轮(T2)解码器的实验结果,并证明了我们的建议在实际无线电传输中比常规方案更好。这两种物理层技术都是作者提出的,但是,以前的工作仅基于计算机仿真。在本文中,通过使用衰落模拟器和附加噪声发生器使无线电波上的发射信号失真来对这些建议进行实验评估。在测量分组错误率性能时,验证测量结果与仿真结果吻合良好。实验结果还表明,在单输入单输出(SISO)多径衰落信道中,R-OFDM可以将所需的载波与OFDM的干扰功率比(CIR)降低约1.1 dB。另外,很明显,在纠错方面,T2解码器比Turbo解码器更好,并且所需的CIR降低在SISO AWGN信道中达到约0.8 dB。还通过不同的调制和编码条件测量吞吐量性能,并且在SISO AWGN信道中测得的前向吞吐量达到了373.6 Mbps。另外,通过使用2×2 MIMO传输,测量结果证实即使在多径衰落条件下也可以实现512.7 Mbps的吞吐量。

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