The bound of the information transmission rate of direct current biased optical orthogonal frequency division multiplexing (DCO-OFDM) for visible light communication (VLC) with finite-alphabet inputs is yet unknown, where the corresponding spectral efficiency (SE) and energy efficiency (EE) stems out as the open research problems. In this paper, we derive the exact achievable rate of {the} DCO-OFDM system with finite-alphabet inputs for the first time. Furthermore, we investigate SE maximization problems of {the} DCO-OFDM system subject to both electrical and optical power constraints. By exploiting the relationship between the mutual information and the minimum mean-squared error, we propose a multi-level mercury-water-filling power allocation scheme to achieve the maximum SE. Moreover, the EE maximization problems of {the} DCO-OFDM system are studied, and the Dinkelbach-type power allocation scheme is developed for the maximum EE. Numerical results verify the effectiveness of the proposed theories and power allocation schemes.
翻译:光谱效率(SE)和能源效率(EE)是开放研究问题的根源,本文首次得出了具有有限字母输入的 DCO-OFDM 系统的确切可实现率。此外,我们调查了受电力和光学电力限制的 DCO-OFDM 系统的最大化问题。通过利用相互信息与最小平均差错之间的关系,我们提出了一个多层次的装水能力分配计划,以实现最大SE。此外,我们研究了{DCO-OFDM 系统的 EEE最大化问题,为最大EE制定了Dinkelbach 型电力分配计划。数字结果核查了拟议的理论和电力分配计划的有效性。