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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Improved Nyquist-I Pulses to Enhance the Performance of OFDM-Based Systems
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Improved Nyquist-I Pulses to Enhance the Performance of OFDM-Based Systems

机译:改进的奈奎斯特-I脉冲以增强基于DM的系统的性能

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Pulse shaping is used in orthogonal frequency division multiplexing (OFDM) based systems to reduce inter-carrier interference (ICI) power and peak-to-average power ratio (PAPR), which are considered the major weaknesses in OFDM-based systems. A novel family of Nyquist-I pulses called sinc exponential pulse (SEP) is proposed, and it is characterized by two new design parameters that provide extra degrees of freedom for a certain roll-off factor, alpha. SEP effectively decreases the relative magnitude of the two largest side lobes of the SEP frequency function, which minimizes the ICI power and reduces the PAPR in OFDM systems. Furthermore, the SEP possesses a broader main lobe, which provides sufficient improvement in bit-error-rate (BER). The behavior of the SEP is examined in the time and frequency domain by tuning its design parameters to obtain the sub-optimum SEP. Theoretical and simulation results show that the sub-optimum SEP performs better than other existing pulses in terms of ICI power, signal-to-interference ratio (SIR) power, BER, and PAPR in OFDM-based systems.
机译:脉冲成形用于基于正交频分复用(OFDM)的系统,以减少载波间干扰(ICI)功率和峰值平均功率比(PAPR),其被认为是基于OFDM的系统中的主要弱点。提出了一种名为SINC指数脉冲(SEP)的新型奈奎斯特-I脉冲(SEP),其特点是两个新的设计参数,为某个滚动因子,alpha提供额外的自由度。 SEP有效地降低了SEP频率函数的两个最大侧瓣的相对幅度,这使ICI功率最小化并减少了OFDM系统中的PAPR。此外,SEP具有更广泛的主叶,这提供了足够的误码率(BER)的改进。通过调整其设计参数来在时间和频域中检查SEP的行为,以获得次最优SEP。理论和仿真结果表明,根据ICI功率,信号到干扰比(SIR)功率,BER和PAPR在基于OFDM的系统方面,所述次优先SEP比其他现有脉冲更好。

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