Digital Cancellation Scheme and Hardware Implementation for High-Order Passive Intermodulation Interference Based on Hammerstein Model  被引量:6

Digital Cancellation Scheme and Hardware Implementation for High-Order Passive Intermodulation Interference Based on Hammerstein Model

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作  者:Xiaqing Miao Lu Tian 

机构地区:[1]School of Information and Electronics,Beijing Institute of Technology,Beijing 100081,China [2]China Academy of Electronics and Information Technology,Beijing 100041,China

出  处:《China Communications》2019年第9期165-176,共12页中国通信(英文版)

基  金:financially supported by the Joint Fund of NSFC and the General Purpose Technology Research Program under the contract U1636125,NSFC under the contract U1836201

摘  要:Passive intermodulation(PIM)interference urgently needs to be solved in the satellite communication system,owing to degrading the whole performance.Mainstream research contributions to the cancellation method for PIM were focused on the analog domain,however,the PIM distortion cannot be eliminated completely with the approaches.Meanwhile,some researchers attempt to tackle the problem through digital signal processing,nevertheless,the proposed methods were not suitable for the practical satellite communication scenario.In this paper,we present a general scheme for the adaptive feedforward PIM cancellation.High-order PIM signals at baseband are estimated by modeling the PIM distortion with Hammerstein model in the digital domain.Based on the reconstructed PIM signal,we adopt the least mean square algorithm to adaptively mitigate the PIM interference for tracking the variation of PIM.The time and frequency synchronization of PIM are based on the correlation of the peak of received signals with the corresponding reconstructed PIM signal.Practical experimental results show that the scheme can effectively cancel the PIM interference,and achieve an interference suppression gain more than 20dB.Passive intermodulation(PIM) interference urgently needs to be solved in the satellite communication system, owing to degrading the whole performance. Mainstream research contributions to the cancellation method for PIM were focused on the analog domain, however, the PIM distortion cannot be eliminated completely with the approaches.Meanwhile, some researchers attempt to tackle the problem through digital signal processing,nevertheless, the proposed methods were not suitable for the practical satellite communication scenario. In this paper, we present a general scheme for the adaptive feedforward PIM cancellation. High-order PIM signals at baseband are estimated by modeling the PIM distortion with Hammerstein model in the digital domain. Based on the reconstructed PIM signal,we adopt the least mean square algorithm to adaptively mitigate the PIM interference for tracking the variation of PIM. The time and frequency synchronization of PIM are based on the correlation of the peak of received signals with the corresponding reconstructed PIM signal. Practical experimental results show that the scheme can effectively cancel the PIM interference, and achieve an interference suppression gain more than 20 dB.

关 键 词:satellite communication passiveintermodulation INTERFERENCE DIGITAL CANCELLATION HAMMERSTEIN model 

分 类 号:TN9[电子电信—信息与通信工程]

 

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