论文标题

使用广义空间调制的MIMO-OFDM双功能雷达通信系统的联合设计

A Joint Design of MIMO-OFDM Dual-Function Radar Communication System Using Generalized Spatial Modulation

论文作者

Xu, Zhaoyi, Petropulu, Athina, Sun, Shunqiao

论文摘要

提出了一种新型的双功能雷达通信(DFRC)系统,可实现高目标分辨率和高通信率。它由一个多输入多输出(MIMO)雷达组成,其中在每个通道中只有少数天线活跃。探测波形是正交频施加多路复用(OFDM)类型。 OFDM载体分为两组,一组由主动天线以共同的方式使用,另一个以独家方式(私人子载波)将每个子载波分配给主动天线。目标估计是根据接收和发送的符号进行的。该系统通过传输的OFDM数据符号和广义空间调制(GSM)方式传达信息。多端纳纳通信接收器可以通过稀疏信号恢复方法识别活动天线的指标。共享子载波的使用可以使高度通信率。私人子载波用于合成一个虚拟阵列以进行高角度分辨率,并改善对活动天线指数的估计。 OFDM波形允许通信接收器轻松减轻频率选择性褪色的效果,而在发射器上使用稀疏阵列会降低系统的硬件成本。通过模拟评估了所提出的DFRC系统的雷达性能,并提供了通信系统的位错误率(BER)结果。

A novel dual-function radar communication (DFRC) system is proposed, that achieves high target resolution and high communication rate. It consists of a multiple-input multiple-output (MIMO) radar, where only a small number of antennas are active in each channel use. The probing waveforms are orthogonal frequency division multiplexing (OFDM) type. The OFDM carriers are divided into two groups, one that is used by the active antennas in a shared fashion, and another one, where each subcarrier is assigned to an active antenna in an exclusive fashion (private subcarriers). Target estimation is carried out based on the received and transmitted symbols. The system communicates information via the transmitted OFDM data symbols and the pattern of active antennas in a generalized spatial modulation (GSM) fashion. A multi-antenna communication receiver can identify the indices of active antennas via sparse signal recovery methods. The use of shared subcarriers enables high communication rate. The private subcarriers are used to synthesize a virtual array for high angular resolution, and also for improved estimation on the active antenna indices. The OFDM waveforms allow the communication receiver to easily mitigate the effect of frequency selective fading, while the use of a sparse array at the transmitter reduces the hardware cost of the system. The radar performance of the proposed DFRC system is evaluated via simulations, and bit error rate (BER) results for the communication system are provided.

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