论文标题
具有分数间距采样方法的OTF的接收器设计
Receiver Design for OTFS with Fractionally Spaced Sampling Approach
论文作者
论文摘要
与传统的正交无线通信方案相比,正交时间频率空间(OTFS)的最新出现更适合于传统的正交频差(OFDM)。尽管多项研究已经使用理论和理想的基带脉冲样品分析了OTFS性能,但是一个具有挑战性的开放问题是开发有效的OTFS系统的有效接收器,必须依靠非理想的脉冲类用于传播。这项工作着重于OTF的实用接收器的设计。我们考虑一个分数间隔的采样(FSS)接收器,其中采样率是符号速率的整数倍数。对于OTFS传输中使用的矩形脉冲,我们在延迟多普勒域中的OTF的一般通道输入 - 输出关系,而没有共同依赖不切实际的假设,例如理想的双向异构脉冲和网格延迟/多普勒移位。我们提出了两种均衡算法:迭代组合消息传递(ICMP)和涡轮信息传递(TMP),通过利用延迟多普勒通道稀疏性和通过FSS的频率多样性获得来检测符号检测。我们分析了TMP接收器的收敛性能,并提出了简化的消息传递(MP)接收器,以进一步降低复杂性。我们的FSS接收器比传统接收器表现出更强的性能,并且对不完美的渠道状态信息知识的鲁棒性。
The recent emergence of orthogonal time frequency space (OTFS) modulation as a novel PHY-layer mechanism is more suitable in high-mobility wireless communication scenarios than traditional orthogonal frequency division multiplexing (OFDM). Although multiple studies have analyzed OTFS performance using theoretical and ideal baseband pulseshapes, a challenging and open problem is the development of effective receivers for practical OTFS systems that must rely on non-ideal pulseshapes for transmission. This work focuses on the design of practical receivers for OTFS. We consider a fractionally spaced sampling (FSS) receiver in which the sampling rate is an integer multiple of the symbol rate. For rectangular pulses used in OTFS transmission, we derive a general channel input-output relationship of OTFS in delay-Doppler domain without the common reliance on impractical assumptions such as ideal bi-orthogonal pulses and on-the-grid delay/Doppler shifts. We propose two equalization algorithms: iterative combining message passing (ICMP) and turbo message passing (TMP) for symbol detection by exploiting delay-Doppler channel sparsity and the frequency diversity gain via FSS. We analyze the convergence performance of TMP receiver and propose simplified message passing (MP) receivers to further reduce complexity. Our FSS receivers demonstrate stronger performance than traditional receivers and robustness to the imperfect channel state information knowledge.