Cross-Layer Resource Allocation in NOMA Systems with Dynamic Traffic Arrivals

Huiyi Ding, Ka-Cheong Leung
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引用次数: 4

Abstract

Non-orthogonal multiple access (NOMA) has become a potential candidate to satisfy the heterogeneous demands in the fifth generation of wireless communication systems. With the optimization on the resource allocation, NOMA can further enhance the system performance. This paper proposes a cross-layer resource allocation framework for downlink NOMA systems. The problem is formulated as a stochastic problem to minimize the long-term total power consumption with dynamic traffic arrivals and time-varying channel under limited feedback. Then, this problem can be transformed to a rate control problem and a mixed-integer programming resource allocation problem solved at each time slot based on the Lyapunov optimization. To reduce the computational complexity, we devise an efficient suboptimal resource allocation algorithm with the dynamic penalty factor. The simulation results show that our proposed algorithms can reduce the power consumption compared with the two baseline algorithms while satisfying the QoS requirements.
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具有动态交通到达的NOMA系统的跨层资源分配
非正交多址(NOMA)已成为满足第五代无线通信系统异构需求的潜在候选者。通过对资源分配的优化,NOMA可以进一步提高系统性能。提出了一种用于下行NOMA系统的跨层资源分配框架。将该问题表述为在有限反馈条件下具有动态交通到达和时变信道的长期总功耗最小的随机问题。然后,将该问题转化为速率控制问题和基于Lyapunov优化求解的每个时隙的混合整数规划资源分配问题。为了降低计算复杂度,我们设计了一种具有动态惩罚因子的高效次优资源分配算法。仿真结果表明,与两种基准算法相比,所提算法在满足QoS要求的同时降低了功耗。
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