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Adaptive phase rotation of OFDM signals for PAPR reduction

机译:OFDM信号的自适应相位旋转以降低PAPR

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High peak-to-average power ratio (PAPR) of the orthogonal frequency division multiplexing (OFDM) signal causes signal distortion, due to nonlinear high power amplifier at the transmitter, and affects received signal quality at the receiver. To reduce the PAPR, various PAPR reduction schemes have been developed. Of these schemes, the tone reservation (TR) scheme and the active constellation extension (ACE) scheme are used for commercial OFDM systems such as the DVB-T2 system. This paper presents an adaptive allpass filter (AAPF)-based PAPR reduction scheme. The AAPF scheme does not incur mean power increment and spectral efficiency decrement unlike the TR scheme. The AAPF scheme can be used with constellation rotation whereas the ACE scheme has a fundamental limitation with it. Comparison of the PAPR performance and the computational complexity with the TR scheme is made and discussed. Bit error rate (BER) performance demonstrates that adoption of the AAPF scheme does not affect signal reception quality at the receiver.1.
机译:正交频分复用(OFDM)信号的高峰均功率比(PAPR)会导致信号失真,这是由于发射机处的非线性高功率放大器引起的,并影响了接收机处的接收信号质量。为了降低PAPR,已经开发了各种PAPR降低方案。在这些方案中,音调保留(TR)方案和有源星座扩展(ACE)方案用于诸如DVB-T2系统之类的商用OFDM系统。本文提出了一种基于自适应全通滤波器(AAPF)的PAPR降低方案。与TR方案不同,AAPF方案不会导致平均功率增加和频谱效率降低。 AAPF方案可以与星座旋转一起使用,而ACE方案具有基本限制。并讨论了TR方案对PAPR性能和计算复杂度的比较。误码率(BER)性能表明,采用AAPF方案不会影响接收机的信号接收质量。1。

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