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Improvement of active interference cancellation: avoidance technique for OFDM cognitive radio

机译:主动干扰消除的改进:OFDM认知无线电的回避技术

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In cognitive radio (CR), a cognitive user must cease transmission or reduce the transmit power at the band where a primary system (PS) is detected. To this end, a popular method for orthogonal frequency division multiplexing (OFDM) based CR is the active interference cancellation (AIC) which tunes the modulation of some subcarriers to minimize the interference to PS. This paper focuses on complexity reduction and performance enhancement of AIC. The former relies on the findings that i) many matrices in AIC depend only on the PS bandwidth and are irrelevant to where PS resides, and ii) statistical relation among the data carried by subcarriers for interference suppression is available. For the latter, performance metric of AIC that minimizes the total residual power at the PS band is adjusted to minimizing the largest residual power, avoiding the undesirable situation that, although the total power is the least, part of the band is severely interfered. Spectrum overshoot problem occurred in an ultra-wideband (UWB)-CR system is also addressed. Simulation results demonstrate that complexity reduction of AIC induces negligible performance loss, and the new performance metric significantly reduces the number of subcarriers required to suppress the interference below a certain level.
机译:在认知无线电(CR)中,认知用户必须在检测到主系统(PS)的频段上停止传输或降低传输功率。为此,基于正交频分复用(OFDM)的CR的一种流行方法是有源干扰消除(AIC),它可以对某些子载波的调制进行调整,以最大程度地减小对PS的干扰。本文着重于降低AIC的复杂度和性能。前者基于以下发现:i)AIC中的许多矩阵仅取决于PS带宽,并且与PS所在位置无关,并且ii)可以利用子载波携带的数据之间的统计关系进行干扰抑制。对于后者,调整AIC的性能指标以使PS频段的总残余功率最小,以使最大的残余功率最小,从而避免了尽管总功率最小但部分频段受到严重干扰的不良情况。还解决了超宽带(UWB)-CR系统中发生的频谱超调问题。仿真结果表明,降低AIC的复杂度导致的性能损失可忽略不计,而新的性能指标可显着减少将干扰抑制在一定水平以下所需的子载波数量。

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