论文标题
非分散光纤的信号空间距离度量
A Signal-Space Distance Measure for Nondispersive Optical Fiber
论文作者
论文摘要
考虑了光纤通道的非分散每样本通道模型。在某些平稳性假设下,提出了发现两个不同输入点无法区分的噪声能量的问题。然后将此最小噪声能量作为输入字母中点之间的距离的量度。使用最佳控制理论的机制,描述最小能源噪声轨迹的必要条件被称为非线性微分方程系统。它显示了如何通过求解此微分方程系统之间的两个输入点之间的距离。设计具有最小最小距离的信号星座受峰值功率约束的问题的问题被提出为集团找到问题。例如,设计了一个16点星座,并将其与常规正交振幅调制调制进行了比较。提供了提出的距离度量的计算有效近似。它显示了如何使用此近似值来设计具有较大最小距离的大星座。根据本文的控制理论观点,提出了针对此类非线性通道的新解码方案。
The nondispersive per-sample channel model for the optical fiber channel is considered. Under certain smoothness assumptions, the problem of finding the minimum amount of noise energy that can render two different input points indistinguishable is formulated. This minimum noise energy is then taken as a measure of distance between the points in the input alphabet. Using the machinery of optimal control theory, necessary conditions that describe the minimum-energy noise trajectories are stated as a system of nonlinear differential equations. It is shown how to find the distance between two input points by solving this system of differential equations. The problem of designing signal constellations with the largest minimum distance subject to a peak power constraint is formulated as a clique-finding problem. As an example, a 16-point constellation is designed and compared with conventional quadrature amplitude modulation. A computationally efficient approximation for the proposed distance measure is provided. It is shown how to use this approximation to design large constellations with large minimum distances. Based on the control-theoretic viewpoint of this paper, a new decoding scheme for such nonlinear channels is proposed.