为了进一步提高通信系统的可靠性,提出一种联合信源信道译码(JSCD)方案。该方案利用一个软输入软输出(SISO)译码器对可变长码(VLC)实施软译码。SISO-VLC译码器利用信源符号的先验信息,采用BCJR算法,得到压缩比特的后验概率。该方案将VL...为了进一步提高通信系统的可靠性,提出一种联合信源信道译码(JSCD)方案。该方案利用一个软输入软输出(SISO)译码器对可变长码(VLC)实施软译码。SISO-VLC译码器利用信源符号的先验信息,采用BCJR算法,得到压缩比特的后验概率。该方案将VLC与低密度奇偶校验(LDPC)码串行级联,在译码端SISO-VLC译码器将外信息传递给LDPC译码器,实现信源信道联合译码。在加性高斯白噪声环境下,对该方案的误码率和误符号率进行评估,并与分离信源信道译码(SSCD)比较。仿真结果表明,在一定复杂度的情况下,该方案在低信噪比下具有很高的可靠性;与SSCD相比,能获得0.2 d B的编码增益。展开更多
In this paper we propose two iterative algorithms of joint channel estimation and symbol detection for Orthogonal Frequency Division Multiplexing (OFDM) systems. In which, superimposed pilot scheme is adopted and an i...In this paper we propose two iterative algorithms of joint channel estimation and symbol detection for Orthogonal Frequency Division Multiplexing (OFDM) systems. In which, superimposed pilot scheme is adopted and an initial Channel State Information (CSI) is obtained by employing a first-order statistic. In each subsequent iteration, we propose two algorithms to update the CSI. The Mean Square Error (MSE) of channel estimation and Bit Error Rate (BER) performance are given and simulation results demonstrate that the iterative algorithm using method B has good perform-ance approaching the ideal condition.展开更多
文摘为了进一步提高通信系统的可靠性,提出一种联合信源信道译码(JSCD)方案。该方案利用一个软输入软输出(SISO)译码器对可变长码(VLC)实施软译码。SISO-VLC译码器利用信源符号的先验信息,采用BCJR算法,得到压缩比特的后验概率。该方案将VLC与低密度奇偶校验(LDPC)码串行级联,在译码端SISO-VLC译码器将外信息传递给LDPC译码器,实现信源信道联合译码。在加性高斯白噪声环境下,对该方案的误码率和误符号率进行评估,并与分离信源信道译码(SSCD)比较。仿真结果表明,在一定复杂度的情况下,该方案在低信噪比下具有很高的可靠性;与SSCD相比,能获得0.2 d B的编码增益。
基金Supported by National "863" Project (No.2002AA123031).
文摘In this paper we propose two iterative algorithms of joint channel estimation and symbol detection for Orthogonal Frequency Division Multiplexing (OFDM) systems. In which, superimposed pilot scheme is adopted and an initial Channel State Information (CSI) is obtained by employing a first-order statistic. In each subsequent iteration, we propose two algorithms to update the CSI. The Mean Square Error (MSE) of channel estimation and Bit Error Rate (BER) performance are given and simulation results demonstrate that the iterative algorithm using method B has good perform-ance approaching the ideal condition.