In this paper, the effect of channel estimation errors upon the Zero Forcing (ZF) precoding Multiple Input Multiple Output Broadcast (MIMO BC) systems was studied. Based on the two kinds of Gaussian estimation error m...In this paper, the effect of channel estimation errors upon the Zero Forcing (ZF) precoding Multiple Input Multiple Output Broadcast (MIMO BC) systems was studied. Based on the two kinds of Gaussian estimation error models, the performance analysis is conducted under different power allocation strategies. Analysis and simulation show that if the covariance of channel estimation errors is independent of the received Signal to Noise Ratio (SNR), imperfect channel knowledge deteriorates the sum capacity and the Bit Error Rate (BER) performance severely. However, under the situation of orthogonal training and the Minimum Mean Square Error (MMSE) channel estimation, the sum ca- pacity and BER performance are consistent with those of the perfect Channel State Information (CSI) with only a performance degradation.展开更多
基站协作系统中,基于正则化迫零波束赋形(regularized zero forcing beam-forming,RZFBF)的集中式协作预编码能够获得与脏纸编码近似的容量性能,然而随协作基站数目增多,集中式协作预编码对回程容量的要求变得极高.针对该问题,提出了基...基站协作系统中,基于正则化迫零波束赋形(regularized zero forcing beam-forming,RZFBF)的集中式协作预编码能够获得与脏纸编码近似的容量性能,然而随协作基站数目增多,集中式协作预编码对回程容量的要求变得极高.针对该问题,提出了基于广义近似消息传递(generalized approximate message passing,GAMP)的分布式预编码符号设计方案,通过相邻基站间的信息交互将全局计算开销分解成许多小的计算任务,极大地降低了系统对回程容量的要求.仿真结果表明,所提算法能够以较低的计算复杂度获得近似于集中式RZFBF预编码算法所能达到的系统吞吐量.展开更多
A structure was proposed for multiple-input-multiple-output multicarrier code divi- sion multiple access (MIMO MC-CDMA) uplink transmission system. Linear zero- forcing V-BLAST (ZF V-BLAST) algorithm and maximum r...A structure was proposed for multiple-input-multiple-output multicarrier code divi- sion multiple access (MIMO MC-CDMA) uplink transmission system. Linear zero- forcing V-BLAST (ZF V-BLAST) algorithm and maximum ratio combining (MRC) scheme was applied to the receivers. The average bit error rate (BER) expression was derived on condition that the number of receive antennas was larger than that of transmit antennas and it was verified by simulations. Numerical results show that the number of transmit and receive antennas, as well as the number of sub- carriers, all exert significant effects on the BER performance. The space diversity and frequency diversity show different abilities to improve the BER performance. The MIMO MC-CDMA system based on linear ZF V-BLAST algorithm is capable of achieving better BER performance than that of the conventional MC-CDMA system by reducing the number of transmit antennas or increasing the number of receive antennas.展开更多
基金by the National Natural Science Foundation of China (No.60496311).
文摘In this paper, the effect of channel estimation errors upon the Zero Forcing (ZF) precoding Multiple Input Multiple Output Broadcast (MIMO BC) systems was studied. Based on the two kinds of Gaussian estimation error models, the performance analysis is conducted under different power allocation strategies. Analysis and simulation show that if the covariance of channel estimation errors is independent of the received Signal to Noise Ratio (SNR), imperfect channel knowledge deteriorates the sum capacity and the Bit Error Rate (BER) performance severely. However, under the situation of orthogonal training and the Minimum Mean Square Error (MMSE) channel estimation, the sum ca- pacity and BER performance are consistent with those of the perfect Channel State Information (CSI) with only a performance degradation.
基金Supported by the National Natural Science Foundation of China (Grant Nos. 60572036 and 50534060)the National High Technology Project of China (Grant No. 2007AA01Z259)the Open Research Fund of National Mobile Communications Research Laboratory, Southeast University (Grant No. W200703).
文摘A structure was proposed for multiple-input-multiple-output multicarrier code divi- sion multiple access (MIMO MC-CDMA) uplink transmission system. Linear zero- forcing V-BLAST (ZF V-BLAST) algorithm and maximum ratio combining (MRC) scheme was applied to the receivers. The average bit error rate (BER) expression was derived on condition that the number of receive antennas was larger than that of transmit antennas and it was verified by simulations. Numerical results show that the number of transmit and receive antennas, as well as the number of sub- carriers, all exert significant effects on the BER performance. The space diversity and frequency diversity show different abilities to improve the BER performance. The MIMO MC-CDMA system based on linear ZF V-BLAST algorithm is capable of achieving better BER performance than that of the conventional MC-CDMA system by reducing the number of transmit antennas or increasing the number of receive antennas.