Pragmatic trellis coded modulation for adaptive multi-objective genetic algorithm-based cognitive radio systems

Ayman A. El-Saleh, M. Ismail, M. Ali
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引用次数: 7

Abstract

The cognitive radio (CR) has recently been proposed as one of the main opportunistic spectrum access solutions for dynamic spectrum allocation. In the CR context, an adaptive wireless node changes its transmission parameters to communicate efficiently and avoid interference with licensed users. In this paper, an adaptive pragmatic trellis coded modulation (TCM) scheme is proposed for CR systems. The proposed scheme employs the family of pragmatic TCM to combine different coded modulation modes to serve the CR node adaption while reducing the hardware complexity. The tradeoff of the error-throughput-power consumption performance is first analyzed using the so-called Pareto front concept. Then, the pragmatic TCM modes are implemented into a multi-objective genetic algorithm (MOGA) based CR decision engine. It is demonstrated that the proposed system is able to evolve to an appropriate transmission mode based on the wireless environmental conditions.
自适应多目标遗传算法认知无线电系统的实用栅格编码调制
近年来,认知无线电(CR)作为动态频谱分配的主要机会接入方案之一被提出。在CR环境下,自适应无线节点改变其传输参数以有效通信并避免对许可用户的干扰。提出了一种适用于CR系统的自适应实用网格编码调制(TCM)方案。该方案采用实用的TCM家族,结合不同的编码调制模式,在降低硬件复杂度的同时服务于CR节点的自适应。首先使用所谓的帕累托前沿概念分析了误差-吞吐量-功耗性能的权衡。然后,将实用的中医模式实现到基于多目标遗传算法(MOGA)的CR决策引擎中。结果表明,该系统能够根据无线环境条件进化为合适的传输模式。
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