This work investigates the performance of various forward error correction codes, by which the MIMO-OFDM system is deployed. To ensure fair investigation, the performance of four modulations, namely, binary phase shif...This work investigates the performance of various forward error correction codes, by which the MIMO-OFDM system is deployed. To ensure fair investigation, the performance of four modulations, namely, binary phase shift keying(BPSK), quadrature phase shift keying(QPSK), quadrature amplitude modulation(QAM)-16 and QAM-64 with four error correction codes(convolutional code(CC), Reed-Solomon code(RSC)+CC, low density parity check(LDPC)+CC, Turbo+CC) is studied under three channel models(additive white Guassian noise(AWGN), Rayleigh, Rician) and three different antenna configurations(2×2, 2×4, 4×4). The bit error rate(BER) and the peak signal to noise ratio(PSNR) are taken as the measures of performance. The binary data and the color image data are transmitted and the graphs are plotted for various modulations with different channels and error correction codes. Analysis on the performance measures confirm that the Turbo + CC code in 4×4 configurations exhibits better performance.展开更多
Peak to Average Power Ratio (PAPR) is defined as the instantaneous power (maximum value) to the average power ratio. PAPR is considered to be a major problem in OFDM systems. This problem can cause radical unexpected ...Peak to Average Power Ratio (PAPR) is defined as the instantaneous power (maximum value) to the average power ratio. PAPR is considered to be a major problem in OFDM systems. This problem can cause radical unexpected behavior of the signal fluctuation. This fluctuation is constituted by a large number of power states. The enormous number of these states leads to an additional complexity of ADCs and DACs. This research addresses the previous problem in OFDM systems utilizing Turbo Codes. μLaCP technique is employed for the purpose of decreasing PAPR. Moreover, our OFDM system was simulated in the presence of an AWGN channel with four types of codes (without the presence of ADCs and DACs). These were constituted of PCCC (typical and new), SCCC, and Convolutional Codes. Our Turbo Coded OFDM exhibited unchanged BER performance before and after the use of μLaCP technique. This was accomplished by modifying our previous PAPR reduction technique without sacrificing greatly its attributes.展开更多
正交频分复用(orthogonal frequency division multiplexing,OFDM)信号是雷达通信一体化系统常用的发射波形之一,但是其峰均比较高,影响发射机的工作效率。传统的限幅法虽然可以降低系统OFDM信号的峰均比(peak-to-average power ratio,P...正交频分复用(orthogonal frequency division multiplexing,OFDM)信号是雷达通信一体化系统常用的发射波形之一,但是其峰均比较高,影响发射机的工作效率。传统的限幅法虽然可以降低系统OFDM信号的峰均比(peak-to-average power ratio,PAPR),但会造成误码率(bit error rate,BER)增大和带外频谱泄露的问题。对传统的限幅法进行改进,将高于门限的信号进行抑制,通过迭代滤波消除带外信号弥散造成的频谱效率下降的问题。将改进峰均比抑制方法与传统峰均比抑制方法进行比较,验证了所提方法的低峰均比性能、误码率性能和模糊函数性能。仿真实验表明,所提方法通过合理设置限幅门限和选择迭代滤波次数,可以有效降低OFDM信号的PAPR,并且对雷达探测性能和通信性能影响较小。展开更多
文摘This work investigates the performance of various forward error correction codes, by which the MIMO-OFDM system is deployed. To ensure fair investigation, the performance of four modulations, namely, binary phase shift keying(BPSK), quadrature phase shift keying(QPSK), quadrature amplitude modulation(QAM)-16 and QAM-64 with four error correction codes(convolutional code(CC), Reed-Solomon code(RSC)+CC, low density parity check(LDPC)+CC, Turbo+CC) is studied under three channel models(additive white Guassian noise(AWGN), Rayleigh, Rician) and three different antenna configurations(2×2, 2×4, 4×4). The bit error rate(BER) and the peak signal to noise ratio(PSNR) are taken as the measures of performance. The binary data and the color image data are transmitted and the graphs are plotted for various modulations with different channels and error correction codes. Analysis on the performance measures confirm that the Turbo + CC code in 4×4 configurations exhibits better performance.
文摘Peak to Average Power Ratio (PAPR) is defined as the instantaneous power (maximum value) to the average power ratio. PAPR is considered to be a major problem in OFDM systems. This problem can cause radical unexpected behavior of the signal fluctuation. This fluctuation is constituted by a large number of power states. The enormous number of these states leads to an additional complexity of ADCs and DACs. This research addresses the previous problem in OFDM systems utilizing Turbo Codes. μLaCP technique is employed for the purpose of decreasing PAPR. Moreover, our OFDM system was simulated in the presence of an AWGN channel with four types of codes (without the presence of ADCs and DACs). These were constituted of PCCC (typical and new), SCCC, and Convolutional Codes. Our Turbo Coded OFDM exhibited unchanged BER performance before and after the use of μLaCP technique. This was accomplished by modifying our previous PAPR reduction technique without sacrificing greatly its attributes.
文摘正交频分复用(orthogonal frequency division multiplexing,OFDM)信号是雷达通信一体化系统常用的发射波形之一,但是其峰均比较高,影响发射机的工作效率。传统的限幅法虽然可以降低系统OFDM信号的峰均比(peak-to-average power ratio,PAPR),但会造成误码率(bit error rate,BER)增大和带外频谱泄露的问题。对传统的限幅法进行改进,将高于门限的信号进行抑制,通过迭代滤波消除带外信号弥散造成的频谱效率下降的问题。将改进峰均比抑制方法与传统峰均比抑制方法进行比较,验证了所提方法的低峰均比性能、误码率性能和模糊函数性能。仿真实验表明,所提方法通过合理设置限幅门限和选择迭代滤波次数,可以有效降低OFDM信号的PAPR,并且对雷达探测性能和通信性能影响较小。