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同时同频全双工LTE射频自干扰抑制能力分析及实验验证
引用本文:徐强, 全欣, 潘文生, 邵士海, 唐友喜. 同时同频全双工LTE射频自干扰抑制能力分析及实验验证[J]. 电子与信息学报, 2014, 36(3): 662-668. doi: 10.3724/SP.J.1146.2013.00717
作者姓名:徐强  全欣  潘文生  邵士海  唐友喜
作者单位:电子科技大学通信抗干扰技术国家级重点实验室;
基金项目:国家自然科学基金(61271164,U1035002/L05,61001087,61101034);国家科技重大专项(2014ZX03003001-002,2012ZX 03003010-003,2011ZX03001-006-01);中国航天科技集团公司卫星应用研究院创新基金资助课题
摘    要:同时同频全双工本地发射信号会对本地接收信号产生强自干扰,为了使信号能够通过射频接收通道及模数转换器件,需要在射频前端进行自干扰抑制。在自干扰为直射路径的条件下,该文采用直接射频耦合法,对长期演进(LTE)同时同频全双工自干扰抑制进行实验测试;分析推导了自干扰功率、带宽及线缆、幅度、相位调整误差对射频自干扰抑制能力的影响;得到了射频自干扰抑制能力的闭合表达式。分析表明对于20 MHz带宽,-10 dBm接收功率的LTE射频自干扰信号,理论上能抑制54 dB的射频自干扰,而实验测试结果表明能抑制51.2 dB。

关 键 词:无线通信   全双工   自干扰   射频抑制   长期演进(LTE)
收稿时间:2013-05-23
修稿时间:2013-09-03

Analysis and Experimental Verification of RF Self-interference Cancelation for Co-time Co-frequency Full-duplex LTE
Xu Qiang, Quan Xin, Pan Wen-Sheng, Shao Shi-Hai, Tang You-Xi. Analysis and Experimental Verification of RF Self-interference Cancelation for Co-time Co-frequency Full-duplex LTE[J]. Journal of Electronics & Information Technology, 2014, 36(3): 662-668. doi: 10.3724/SP.J.1146.2013.00717
Authors:Xu Qiang  Quan Xin  Pan Wen-Sheng  Shao Shi-Hai  Tang You-Xi
Abstract:Co-time Co-frequency Full-Duplex (CCFD) radio transmission will cause a strong self-interference in its receiver. To ensure the undistorted transmission in the Radio Frequency (RF) channel and effective sampling of the desired signal, the Self-Interference Cancellation (SIC) need to be applied to RF frontend. In this paper, the CCFD verification experiment is presented based on the Long Term Evolution (LTE) that adopts RF SIC with the coupled RF transmitted signal. Considering the direct path self-interference between transmit and receive antennas, the relationship among interference power, interference bandwidth, RF adjustment errors and SIC ability is analyzed. Consequently, the expression of SIC ability is derived. Analysis and experimental results show that the SIC abilities are 54 dB in theory and 51.2 dB in practice for a 20 MHz LTE signal with received power of -10 dBm.
Keywords:Wireless communication  Full-Duplex (FD)  Self-interference  RF cancellation  Long Term Evolution (LTE)
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