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A Flexible Bit Allocation Algorithm Based on Adaptive Method for OFDM Channels

机译:一种基于OFDM通道自适应方法的灵活比特分配算法

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This paper presents a new bit and power allocation scheme for OFDM systems with low computational complexity in which the overall transmission power is minimized by constraining the fixed data rate and bit error rate. The algorithm and simulation include two stages. The first stage involves the application of a target BER and SNR of each sub-carrier for a variable-rate bit pre-allocation. The second stage applies greedy and Campello approach to achieve constant channel rate of bit allocation. In a word, bit allocation with constant rate performs variable rate bit allocation first, and then modifies the overall bits to a constant. The simulation results demonstrate that the scheme has significant computational advantages over the conventional algorithms while providing optimal performance. It also provides considerable universality and flexibility for both the fixed rate voice data and variable rate multimedia data of the broadband wireless communication.
机译:本文介绍了具有低计算复杂性的OFDM系统的新比特和功率分配方案,其中通过限制固定数据速率和误码率来最小化整体传输功率。算法和仿真包括两个阶段。第一阶段涉及应用每个子载波的目标BER和SNR以进行可变速率比特预分配。第二阶段适用于贪婪和坎佩洛的方法来实现比特分配的恒定信道速率。在一个单词中,具有恒定速率的比特分配首先执行可变速率比特分配,然后将整个比特修改为常数。仿真结果表明,该方案在传统算法上具有显着的计算优势,同时提供最佳性能。它还为宽带无线通信的固定速率语音数据和可变速率多媒体数据提供相当大的普遍性和灵活性。

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