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Effects and suppression of signal correlation on radio frequency cancellation of full-duplex system

机译:信号相关性对全双工系统射频抵消的影响和抑制

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In a full-duplex system where correlation exists between self-interference signal and useful signal, direct radio frequency (RF) coupling cancellation structure, which is based on the minimum mean square error (MMSE) criterion, is adopted to conduct self-interference cancellation; however, such cancellation damages the useful signal. In regards to this problem, this paper designs a new RF cancellation scheme: (1) On the basis of cancellation structure, phase shifter controlled by error signal power is thereby introduced to shift the phases of transmitted signal, decreasing the correlation of self-interference signal and useful signal; (2) New Time-varying Step-size Normalized Least Mean Square (NTVSSNLMS) algorithm, which utilizes the auto-correlation and time parameters t of real-time error signal to cooperatively control the step factor μ(t), is proposed to adjust the attenuator weight vectors, in order to assure a high interference cancellation ratio (ICR) and satisfy the requirements of phase shifter on algorithm convergence performance at the same time. Simulation results indicate that the new RF cancellation scheme can increase the ICR, while effectively reducing the damages on the useful signal simultaneously.
机译:在自干扰信号和有用信号之间存在相关性的全双工系统中,采用基于最小均方误差(MMSE)准则的直接射频(RF)耦合消除结构来进行自干扰消除;但是,这样的取消会损坏有用的信号。针对这一问题,本文设计了一种新的射频消除方案:(1)在消除结构的基础上,引入了由误差信号功率控制的移相器来改变发射信号的相位,降低了自干扰的相关性。信号和有用信号; (2)提出了一种新的时变步长归一化最小均方(NTVSSNLMS)算法,该算法利用实时误差信号的自相关和时间参数t来共同控制步长因子μ(t),以进行调整为了确保较高的干扰消除率(ICR),同时满足移相器对算法收敛性能的要求,对衰减器权向量进行了优化。仿真结果表明,新的射频消除方案可以增加ICR,同时有效减少对有用信号的损害。

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