Subspace Coding for Error Control and Interference Mitigation in Routing Solutions with Cooperative Destination Nodes

M. Brahimi, Fatiha Merazka
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Abstract

Random Linear Network Coding (RLNC) is a transmission scheme that opts for linear combinations of the transmitted packets at a subset of the intermediate nodes. This scheme is usually considered when Network Coding (NC) is desired over non-coherent networks. In order to integrate error correction in RLNC, subspace codes have been proposed. The codewords in those codes are unchanged under rank-preserving row operations, making them convenient for RLNC. In this paper, we investigate the use of those codes for the interference channel in a system model consisting of an array of SISO communication systems with cooperative destination nodes. This system model is deemed as a simplified model of a network with a routing based transmission scheme. Results have indicated that the use of subspace codes have allowed for better performance in terms of the decoding failure probability.
基于子空间编码的目标节点合作路由方案的错误控制与干扰抑制
随机线性网络编码(RLNC)是一种选择在中间节点子集上传输数据包的线性组合的传输方案。当需要在非相干网络上进行网络编码(NC)时,通常考虑这种方案。为了在RLNC中集成纠错,提出了子空间码。这些代码中的码字在保秩行操作下是不变的,便于RLNC使用。在本文中,我们研究了在一个由具有合作目标节点的SISO通信系统阵列组成的系统模型中,这些代码用于干扰信道的使用。该系统模型是基于路由传输方案的网络的简化模型。结果表明,子空间码的使用在解码失败概率方面具有更好的性能。
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