Resource allocation and block coding within a three-stage collaborative broadband relay network

S. Kassim, N. Eltayeb, J. Chambers
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Abstract

In this work we propose a power control algorithm for a multi-input multi-output orthogonal frequency division multiplexing (MIMO-OFDM) multi-hop collaborative relaying network. Using orthogonal and quasi-orthogonal block codes with three stage processing our algorithm optimally distributes available transmission power based on the architecture and the channel condition at each stage so as to minimize the end-to-end bit error rate (BER) of the entire relay network. For high data rate applications with maximum throughput (as expected for future OFDM systems), we employ a regenerative relaying process, where the relays at each stage decode and through collaborative processing, re-encode the received data before onward transmission to the next stage and then to the destination. We provide simulation results 1 that confirm the performance improvement in the end-to-end bit error rate (BER) of the network using our explicit power allocation algorithm as compared with equal power distribution technique.
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三级协同宽带中继网络中的资源分配和分组编码
本文提出了一种多输入多输出正交频分复用(MIMO-OFDM)多跳协同中继网络的功率控制算法。该算法采用正交和准正交分组码,经过三级处理,根据各阶段的体系结构和信道条件对可用传输功率进行优化分配,使整个中继网络的端到端误码率(BER)最小。对于具有最大吞吐量的高数据速率应用(如未来OFDM系统所期望的),我们采用再生中继过程,其中中继在每个阶段解码并通过协作处理,在继续传输到下一阶段之前重新编码接收到的数据,然后再传输到目的地。我们提供的仿真结果1证实了与等功率分配技术相比,使用我们的显式功率分配算法在网络的端到端误码率(BER)方面的性能改进。
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