We consider a system that integrates positioning and single-user millimeter wave (mmWave) communication, where the communication part adopts wavelength division multiplexing (WDM) and orbital angular momentum (OAM). This paper addresses the multi-dimensional constellation design in shortrange line-of-sight (LOS) environment, with stable communication links. We propose a map-assisted method to quantify the system parameters based on positions and reduce real-time computing overhead. We explore the possibility of using a few patterns in the maps, and investigate its performance loss. We first investigate the features of OAM beams, and find that the link gain ratio between any two sub-channels remains unchanged at some postions. Then, we prove that a fixed constellation can be adopted for the positions where the link gain matrices are sufficiently close to be proportional. Moreover, we prove that the system can adopt a fixed power vector to generate a multidimensional constellation if the difference between fixed power vector and optimal power vector is small. Finally, we figure out that the constellation design for all receiver locations can be represented by a few constellation sets.
翻译:我们考虑的是整合定位和单用户毫米波(mmWave)通信的系统,其中通信部分采用波长分多倍和轨道角动力(OAM),本文论述短距离视觉环境中的多维星座设计,具有稳定的通信链接。我们提议了地图辅助方法,以根据位置量化系统参数并减少实时计算间接费用。我们探索了在地图中使用几个模式的可能性,并调查了其性能损失。我们首先调查了OAM光束的特征,发现任何两个子通道之间的连接增益率在某些恒星座中保持不变。然后,我们证明在链接增加矩阵足够接近比例的方位上可以采用固定星座。此外,我们证明如果固定动力矢量和最佳能量矢量之间的差异很小,那么系统可以采用固定动力矢量来生成一个多维星座。最后,我们发现所有接收器位置的星座设计可以用少数星座组合来代表。