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TDMA-based adaptive modulation with dynamic channel assignment for high-capacity communication systems

机译:用于大容量通信系统的基于TDMA的自适应调制和动态信道分配

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This paper proposes a time-division multiple-access (TDMA)-based adaptive modulation scheme with dynamic channel assignment (AMDCA) to achieve high-capacity communication systems under dynamically changing propagation path and traffic conditions. The proposed method measures the received carrier-to-noise plus interference power ratio (C/(N+I)) of each TDMA slot to search available slots as well as to find out the optimum modulation parameters for each terminal, thereby effectively combining the effect of mitigating both spatially distributed electric field strength variation by the slow adaptive modulation and spatially and temporally distributed traffic variation by the dynamic channel assignment (DCA). Computer simulation confirms that the proposed AMDCA system can achieve approximately three times higher system capacity than the conventional fixed channel assignment (FCA) using QPSK.
机译:本文提出了一种基于时分多址(TDMA)的具有动态信道分配(AMDCA)的自适应调制方案,以在动态变化的传播路径和流量条件下实现大容量通信系统。所提出的方法测量每个TDMA时隙的接收载波噪声加干扰功率比(C /(N + I)),以搜索可用时隙,并找出每个终端的最佳调制参数,从而有效地组合通过慢速自适应调制缓解空间分布的电场强度变化以及通过动态信道分配(DCA)缓解空间和时间分布的交通变化的效果。计算机仿真证实,与使用QPSK的常规固定信道分配(FCA)相比,拟议的AMDCA系统可实现大约三倍的系统容量。

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