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Ant colony optimization based dynamic subcarrier, bit and power allocation for OFDMA-based relay networks

机译:基于蚁群优化的基于OFDMA的中继网络的动态子载波,比特和功率分配

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Due to the performance improvement by flexible resource allocation approaches, the employment of Relay Stations (RSs) and the Orthogonal Frequency Division Multiple Access (OFDMA) have been extensively considered as a capable technique for future cellular infrastructure. The downlink of a cell is taken into consideration in an OFDMA based relay network. In the cell, a Base Station (BS) and fixed Relay Stations (RSs) are deployed. Multiple Subscriber Stations (SS) are positioned in the cell. A SS is served either by a direct or a two hop connection. A connection between BS and SS is present in a direct connection. In a two hop connection, a connection exists between BS and RS and between RS and SS. An approach for resource allocation is presented which dynamically assigns subcarriers, bits and power to the existing links depending on instant channel state information. This paper focuses on minimizing the power required for the transmissions of the BS and the RSs through an efficient optimization technique. Ant Colony Optimization (ACO) technique is formulated for providing the optimized results. The performance evaluation of the proposed ACO based resource allocation technique suggests that the essential power required is lower than the power required by other existing resource allocation techniques in a defined scenario of a relay network.
机译:由于通过灵活的资源分配方法提高了性能,因此中继站(RS)和正交频分多址(OFDMA)的使用已被广泛认为是未来蜂窝基础架构的一项有效技术。在基于OFDMA的中继网络中考虑小区的下行链路。在该小区中,部署了基站(BS)和固定中继站(RS)。多个用户站(SS)位于该单元中。通过直接连接或两跳连接来服务SS。 BS和SS之间存在直接连接。在两跳连接中,BS与RS之间以及RS与SS之间存在连接。提出了一种资源分配方法,该方法根据即时信道状态信息动态地将子载波,比特和功率分配给现有链路。本文致力于通过一种有效的优化技术来最小化BS和RS传输所需的功率。制定了蚁群优化(ACO)技术以提供优化结果。所提出的基于ACO的资源分配技术的性能评估表明,所需的基本功率低于中继网络在定义的场景中其他现有资源分配技术所需的功率。

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