论文标题
从不正确的高斯信号到不对称信号的旅程
A Journey from Improper Gaussian Signaling to Asymmetric Signaling
论文作者
论文摘要
连续和离散的复杂随机变量偏离了传统的适当和对称假设,分别引入了新的设计自由和各种潜在的优点。因此,不当理论在医学,地质,声学,光学,图像和模式识别,计算机视觉以及其他众多研究领域中具有广泛的应用,我们主要关注通信系统。旅程始于干扰有限的通信中不正确的高斯信号传导的设计,并导致更精致,实际上可行的不对称离散调制设计。例如,在编码/未编码的无线/光学通信系统中,理论上和实际上可实现的限制之间的差异是理论上和实际上可实现的限制之间的差距。有趣的是,根据某些设计标准引入不对称并调整传输参数,而不会影响系统的带宽或功率要求。这篇双重口味的文章最初介绍了教程基础内容,涵盖了现实/复杂性,专有性/不当和循环/非循环系统的相互作用,然后在这一巨大的旅程中调查了多数贡献。
The deviation of continuous and discrete complex random variables from the traditional proper and symmetric assumption to a generalized improper and asymmetric characterization (accounting correlation between a random entity and its complex conjugate), respectively, introduces new design freedom and various potential merits. As such, the theory of impropriety has vast applications in medicine, geology, acoustics, optics, image and pattern recognition, computer vision, and other numerous research fields with our main focus on the communication systems. The journey begins from the design of improper Gaussian signaling in the interference-limited communications and leads to a more elaborate and practically feasible asymmetric discrete modulation design. Such asymmetric shaping bridges the gap between theoretically and practically achievable limits with sophisticated transceiver and detection schemes in both coded/uncoded wireless/optical communication systems. Interestingly, introducing asymmetry and adjusting the transmission parameters according to some design criterion render optimal performance without affecting the bandwidth or power requirements of the systems. This dual-flavored article initially presents the tutorial base content covering the interplay of reality/complexity, propriety/impropriety and circularity/noncircularity and then surveys majority of the contributions in this enormous journey.