OTFS-MDMA: An Elastic Multi-Domain Resource Utilization Mechanism for High Mobility Scenarios

Jie Chen;Xianbin Wang;Lajos Hanzo
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Abstract

By harnessing the delay-Doppler (DD) resource domain, orthogonal time-frequency space (OTFS) substantially improves the communication performance under high-mobility scenarios by maintaining quasi-time-invariant channel characteristics. However, conventional multiple access (MA) techniques fail to efficiently support OTFS in the face of diverse communication requirements. Recently, multi-dimensional MA (MDMA) has emerged as a flexible channel access technique by elastically exploiting multi-domain resources for tailored service provision. Therefore, we conceive an elastic multi-domain resource utilization mechanism for a novel multi-user OTFS-MDMA system by leveraging user-specific channel characteristics across the DD, power, and spatial resource domains. Specifically, we divide all DD resource bins into separate subregions called DD resource slots (RSs), each of which supports a fraction of users, thus reducing the multi-user interference. Then, the most suitable MA, including orthogonal, non-orthogonal, or spatial division MA (OMA/ NOMA/ SDMA), will be selected with each RS based on the interference levels in the power and spatial domains, thus enhancing the spectrum efficiency. Then, we jointly optimize the user assignment, MA scheme selection, and power allocation in all DD RSs to maximize the weighted sum-rate subject to their minimum rate and various practical constraints. Since this results in a non-convex problem, we develop a dynamic programming and monotonic optimization (DPMO) method to find the globally optimal solution in the special case of disregarding rate constraints. Subsequently, we apply a low-complexity algorithm to find sub-optimal solutions in general cases.
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OTFS-MDMA:高移动性场景下的弹性多域资源利用机制
通过利用延迟多普勒(DD)资源域,正交时频空间(OTFS)通过保持准时不变信道特性大大提高了高移动场景下的通信性能。然而,面对多样化的通信需求,传统的多址(MA)技术无法有效地支持OTFS。近年来,多维移动通信(MDMA)作为一种灵活的信道接入技术,通过弹性地利用多域资源来提供量身定制的服务。因此,我们通过利用DD、功率和空间资源域的用户特定信道特性,为新型多用户OTFS-MDMA系统构想了一种弹性多域资源利用机制。具体来说,我们将所有DD资源箱划分为单独的子区域,称为DD资源槽(RSs),每个子区域支持一小部分用户,从而减少了多用户干扰。然后,根据功率域和空间域的干扰水平,对每个RS选择最合适的MA,包括正交、非正交或空间划分MA (OMA/ NOMA/ SDMA),从而提高频谱效率。然后,我们共同优化所有DD RSs中的用户分配、MA方案选择和功率分配,以在最小率和各种实际约束下最大化加权和率。由于这是一个非凸问题,我们开发了一种动态规划和单调优化(DPMO)方法来寻找不考虑速率约束的特殊情况下的全局最优解。随后,我们应用了一种低复杂度的算法来寻找一般情况下的次优解。
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