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A MIMO-OFDM Testbed, Channel Measurements, and System Considerations for Outdoor-Indoor WiMAX

机译:户外室内WiMAX的MIMO-OFDM测试平台,信道测量和系统注意事项

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摘要

The design, implementation, and test of a real-time flexible 2×2 (Multiple Input Multiple Output-Orthogonal Frequency Division Multiplexing) MIMO-OFDM IEEE 802.16 prototype are presented. For the design, a channel measurement campaign on the 3.5 GHz band has been carried out, focusing on outdoor-indoor scenarios. The analysis of measured channels showed that higher capacity can be achieved in case of obstructed scenarios and that (Channel Distribution Information at the Transmitter) CDIT capacity is close to (Channel State Information at the Transmitter) CSIT with much lower complexity and requirements in terms of channel estimation and feedback. The baseband prototype used an (Field Programmable Gate Array) FPGA where enhanced signal processing algorithms are implemented in order to improve system performance. We have shown that for MIMO-OFDM systems, extra signal processing such as enhanced joint channel and frequency offset estimation is needed to obtain a good performance and approach in practice the theoretical capacity improvements.
机译:提出了一种实时灵活的2×2(多输入多输出-正交频分复用)MIMO-OFDM IEEE 802.16原型的设计,实现和测试。对于设计,已经进行了3.5 GHz频段的信道测量,重点关注室外室内场景。对测量信道的分析表明,在受阻场景下可以实现更高的容量,并且(发射机处的信道分布信息)CDIT容量接近(发射机处的信道状态信息)CSIT,并且复杂度和要求要低得多。频道估算和反馈。基带原型使用(现场可编程门阵列)FPGA,其中实施了增强的信号处理算法,以提高系统性能。我们已经表明,对于MIMO-OFDM系统,需要额外的信号处理,例如增强的联合信道和频率偏移估计,以获得良好的性能,并在实践中提高理论上的容量。

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