We investigate joint power allocation and decoding order selection (PA-DOS) aimed at enhancing the outage performance of non-orthogonal multiple access (NOMA) systems. By considering the diverse target rates of users, new important properties of NOMA are revealed: When users' target rates satisfy certain conditions, the channel state information (CSI) is not required by PA-DOS to minimize the system outage probability, and different users' outage probabilities can be minimized simultaneously; When such conditions are not satisfied, the opposite situation occurs. Following these properties, two PA-DOS strategies are designed regarding distinct user priorities, which ensure the minimization of the system outage probability and the user outage probability of the high-priority user. Especially, these strategies do not require CSI or only require one-bit CSI feedback depending on users' target rates. Analytical and numerical results are provided to demonstrate that the proposed strategies significantly outperform the existing strategies in terms of both system and user outage performance. Furthermore, the results show that although under some target rates the minimum user outage probabilities cannot be simultaneously achieved, they can be closely approached at the same time in the high-signal-to-noise-ratio regime by the proposed strategies.
翻译:我们调查联合电力分配和解码订单选择(PA-DOS),目的是提高非横向多重接入系统(NOMA)的停用性能。通过考虑用户的不同目标率,可以发现NOMA的新的重要特性:当用户的目标率满足某些条件时,PA-DOS并不要求频道国家信息(CSI)以尽量减少系统出错概率,不同用户的出错概率可以同时最小化;当这些条件不能满足时,情况正好相反。这些特性之后,设计了两个PA-DOS战略,涉及不同的用户优先事项,确保系统出错概率最小化,高优先用户用户用户用户的用户超值概率也最小化。特别是,这些战略不需要CSI,或者只要求根据用户的目标率提供一比特的CSI反馈。提供了分析和数字结果,以证明拟议的战略在系统和用户出错性能两方面大大超出现有战略。此外,结果显示,虽然在某些目标率下,无法同时实现最低用户的概率,但是这些战略可以在高时间接近。