Single-symbol maximum-likelihood (ML) decodable space-time block codes (SSDCs) can achieve a maximal symbol rate of 6/7 for multiple-input multiple-output (MIMO) communication system with five or six transmit an...Single-symbol maximum-likelihood (ML) decodable space-time block codes (SSDCs) can achieve a maximal symbol rate of 6/7 for multiple-input multiple-output (MIMO) communication system with five or six transmit antennas by using rate-efficient generalized coordinate interleaved orthogonal designs (RE-GCIODs). Unfortunately, there are many zero entries in the eodeword matrix of RE-GCIODs. The zero entries result in high peak-to-average power ratio (PAPR) and also impose a severe constraint on hardware implementation. In this paper, for MIMO communication systems with five or six transmit antennas and one receive antenna, a new SSDC is proposed. By combining Alamouti code and orthogonal space-time block code (OSTBC), desirable properties like RE-GCIODs can be achieved and are derived, including maximal symbol rate up to 6/7, full diversity and single-symbol ML decodability. Moreover, by reducing the number of zero entries in the codeword matrix, the peak-to-average power ratio (PAPR) of our proposed code is lower than RE-GCIODs. Simulation results show that the proposed codes outperform RE-GCIODs under peak power constraint while performing almost same under average power constraint.展开更多
An efficient method for blind classification of space time block codes (STBCs) based on fourth-order cumulants is proposed for a single receiver antenna. This paper presents a model of received STBCs signals in mult...An efficient method for blind classification of space time block codes (STBCs) based on fourth-order cumulants is proposed for a single receiver antenna. This paper presents a model of received STBCs signals in multiple input single output (MISO) communication systems and applies the characteristics of coding matrices to derive analytical expressions for the fourth-order cumu- lants to be used as the basis of an algorithm. The fourth-order cumulants at various delay vectors present non-null values that depend on the transmitted STBCs. Tests of nullity are accomplished by hypothesis testing. The proposed algorithm avoids the need for a priori information of modulation scheme, channel coefficients, and noise power. Consequently, it is well suited for non-cooperative scenarios. Simulations show that this method performs well even at low signal-to-noise ratios (SNRs).展开更多
基于STBC(space-tim e b lock cod ing)可以实现发射天线数确定的完全发射分集,并且仅仅对接收信号进行线性处理的非常简单的最大似然译码算法特点,文中将分布式STBC技术应用到UWB(u ltra w ideband)系统中,构建一个分布式STBC-UWB系统...基于STBC(space-tim e b lock cod ing)可以实现发射天线数确定的完全发射分集,并且仅仅对接收信号进行线性处理的非常简单的最大似然译码算法特点,文中将分布式STBC技术应用到UWB(u ltra w ideband)系统中,构建一个分布式STBC-UWB系统,以此来获得更好的系统性能。考虑只有单个中继节点的情况下,推导出该系统的误比特率表达式。在S-V信道模型环境下,利用MATLAB仿真了分布式STBC-UWB系统误码率性能,并与传统UWB系统进行比较,发现采用分布式STBC-UWB系统比传统系统在误码率性能上明显提高。展开更多
文摘Single-symbol maximum-likelihood (ML) decodable space-time block codes (SSDCs) can achieve a maximal symbol rate of 6/7 for multiple-input multiple-output (MIMO) communication system with five or six transmit antennas by using rate-efficient generalized coordinate interleaved orthogonal designs (RE-GCIODs). Unfortunately, there are many zero entries in the eodeword matrix of RE-GCIODs. The zero entries result in high peak-to-average power ratio (PAPR) and also impose a severe constraint on hardware implementation. In this paper, for MIMO communication systems with five or six transmit antennas and one receive antenna, a new SSDC is proposed. By combining Alamouti code and orthogonal space-time block code (OSTBC), desirable properties like RE-GCIODs can be achieved and are derived, including maximal symbol rate up to 6/7, full diversity and single-symbol ML decodability. Moreover, by reducing the number of zero entries in the codeword matrix, the peak-to-average power ratio (PAPR) of our proposed code is lower than RE-GCIODs. Simulation results show that the proposed codes outperform RE-GCIODs under peak power constraint while performing almost same under average power constraint.
基金co-supported by the Taishan Scholar Special Foundation of China(No.ts201511020)
文摘An efficient method for blind classification of space time block codes (STBCs) based on fourth-order cumulants is proposed for a single receiver antenna. This paper presents a model of received STBCs signals in multiple input single output (MISO) communication systems and applies the characteristics of coding matrices to derive analytical expressions for the fourth-order cumu- lants to be used as the basis of an algorithm. The fourth-order cumulants at various delay vectors present non-null values that depend on the transmitted STBCs. Tests of nullity are accomplished by hypothesis testing. The proposed algorithm avoids the need for a priori information of modulation scheme, channel coefficients, and noise power. Consequently, it is well suited for non-cooperative scenarios. Simulations show that this method performs well even at low signal-to-noise ratios (SNRs).
文摘基于STBC(space-tim e b lock cod ing)可以实现发射天线数确定的完全发射分集,并且仅仅对接收信号进行线性处理的非常简单的最大似然译码算法特点,文中将分布式STBC技术应用到UWB(u ltra w ideband)系统中,构建一个分布式STBC-UWB系统,以此来获得更好的系统性能。考虑只有单个中继节点的情况下,推导出该系统的误比特率表达式。在S-V信道模型环境下,利用MATLAB仿真了分布式STBC-UWB系统误码率性能,并与传统UWB系统进行比较,发现采用分布式STBC-UWB系统比传统系统在误码率性能上明显提高。