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Novel technique for PAPR reduction in OFDM system using π/4-shifted-DQPSK modulation turbo code

机译:使用π/ 4移位DQPSK调制和Turbo码的OFDM系统中降低PAPR的新技术

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The proposed SLM scheme transforms an input incoming symbol sequence into a set of OFDM symbols by multiplying the phase sequences to the symbol after a intermediate inverse fast Fourier transform (IFFT) stage. The peak-to-average power ratio (PAPR) of OFDM symbols is calculated & the symbol with least PAPR is sent for transmission. Turbo code is used with OFDM for forward error correction. To achieve better spectral efficiency and high capacity the combination of π/4-shifted DQPSK modulation is used along with Turbo coded OFDM. One of the major reasons behind the provision for differential detection is to achieve low complexity at the receiver. A selective-level-mapping type turbo coded OFDM scheme is proposed with the interleaver of turbo encoder to reduce the associated PAPR (peak to average power ratio) reduction. The current model is used to analyze bit error rate (BER) measurement with π/4-shifted-DQPSK modulation in presence of fading channels. The symbols are perturbed by additive white Gaussian noise (AWGN). The combination of DQPSK with SLM not only reduces the complexity at receiver but also results in reduction in PAPR of OFDM signal. The PAPR of the model is calculated with absence of SLM block initially and later with the addition of SLM block resulting in the difference of PAPR up to 3 dB. The simulink is used to model the performance of turbo encoder and decoder to achieve minimum symbol error rate at the receiver with varying iterations. The minimum symbol error rate of 10-6 is calculated using the principle of APP decoder.
机译:通过在中间快速傅里叶逆变换(IFFT)阶段之后,将相序乘以符号,将提出的SLM方案将输入的输入符号序列转换为OFDM符号集。计算OFDM符号的峰均功率比(PAPR),并发送PAPR最小的符号进行传输。 Turbo码与OFDM一起用于前向纠错。为了获得更好的频谱效率和高容量,将π/ 4移位DQPSK调制与Turbo编码OFDM结合使用。提供差分检测背后的主要原因之一是在接收机处实现低复杂度。提出了一种具有Turbo编码器交织器的选择级映射类型的turbo编码OFDM方案,以减少相关的PAPR(峰均功率比)降低。当前模型用于在存在衰落信道的情况下使用π/ 4移位DQPSK调制来分析误码率(BER)测量。这些符号会受到加性高斯白噪声(AWGN)的干扰。 DQPSK与SLM的结合不仅降低了接收机的复杂度,而且还降低了OFDM信号的PAPR。模型的PAPR最初是在没有SLM块的情况下计算的,之后又添加了SLM块,从而导致PAPR的差异高达3 dB。 simulink用于对Turbo编码器和解码器的性能进行建模,以实现具有可变迭代次数的接收器处的最小符号错误率。使用APP解码器的原理计算出10-6的最小符号错误率。

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