Zak-OTFS is an emerging framework for integrated sensing & communication (ISAC) in high delay and Doppler spread environments. A critical enabler for ISAC with Zak-OTFS is the design of pulse shaping filters. For sensing, a localized pulse shaping filter enables ideal input-output (I/O) relation estimates close to the physical scattering channel. For communication, orthogonality of the pulse shape on the information lattice prevents inter-symbol interference, and no time and bandwidth expansion enables full spectral efficiency. A filter simultaneously meeting all three objectives is ideal for ISAC. Existing filter designs achieve two of the above objectives, but not all three simultaneously. For instance, the sinc filter is orthogonal and bandwidth/time-limited, but is not localized. The Gaussian filter is localized and bandwidth/time-limited, but not orthogonal. The RRC filter is localized and orthogonal, but not bandwidth/time-limited. A recently proposed hybrid Gaussian-sinc filter is more localized than the sinc filter and bandwidth/time-limited, but is not orthogonal. In this work, we design optimal pulse shaping filters meeting all three objectives via the Isotropic Orthogonal Transform Algorithm. The proposed pulse shaping filters offer improved data detection (communication) and I/O relation estimation (sensing) performance compared to existing filter choices in the literature.
翻译:Zak-OTFS是一种用于高时延和多普勒扩展环境下集成感知与通信的新兴框架。Zak-OTFS实现ISAC的关键在于脉冲成形滤波器的设计。对于感知任务,局部化的脉冲成形滤波器能够实现接近物理散射信道的理想输入输出关系估计。对于通信任务,信息格上脉冲波形的正交性可避免符号间干扰,且无时间和带宽扩展能实现完全的频谱效率。同时满足这三项要求的滤波器是ISAC的理想选择。现有滤波器设计仅能达成上述目标中的两项,无法同时满足全部三项。例如,sinc滤波器具有正交性且带宽/时间受限,但非局部化;高斯滤波器具有局部化特性且带宽/时间受限,但非正交;升余弦滤波器具有局部化和正交性,但带宽/时间非受限;近期提出的高斯-sinc混合滤波器比sinc滤波器更具局部化特性且带宽/时间受限,但同样不具备正交性。本研究通过各向同性正交变换算法,设计了能同时满足全部三项要求的最优脉冲成形滤波器。与现有文献中的滤波器方案相比,所提出的脉冲成形滤波器在数据检测(通信)和输入输出关系估计(感知)性能方面均有提升。