Physical Layer Deterministic Network Coding Using PUM Turbo Codes over AWGN Channel, N Nodes through a Base Station Scenario

Hani H. Attar
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引用次数: 6

Abstract

Network Coding (NC) is a recent technique which is used to improve the transmission data rate and the power efficiency. These goals are obtained by combining data together before transmitting them, resulting to less transmitted data that carry the same amount of information. NC research work over the physical layer and the upper layers are popular and needed to be more investigated. In this paper, we propose a practical system of large-number of connected multi-source network coding (LMSNC), at the physical layer that exploits the broadcast nature of the wireless channel, using the practical and bandwidth-efficient schemes decode-and-forward (DF) and then compare it with Amplify and Forward (AF). The theoretical analysis and the simulation results show the effect of the noise when it cumulates in AF system and how DF is solving this severe default. Moreover, we consider the MSNC for Small-number of connected sources (SMSNC) and the two-way communication setup where two users exchange their information over an intermediate network node (ideally called Base Station), as two reference cases to compare with. With SMSNC, the number of necessary downlink transmissions from the intermediate node to the users is reduced, and thus the throughput is increased. Simulation results obtained using high-performance non-binary turbo codes, based on Partial Unit Memory (PUM) codes (4, 2, 1, 4) and (8, 4, 3, 8); confirm that combining PUM Turbo Code (PUMTC) and NC in the proposed MSNC setup gives almost the same BER performance as that for SMSNC at the small number of processing steps mainly when PUMTC (8, 4, 3, 8) is performed, which is required to retrieve the received coded messages. In the scenario of AF, combining packets results to cumulate the noise, which justifies the reason we decided to increase the number of transmitted coded messages in the network, i.e., the BER performance improves when sending extra coded messages. Finally, the possibility for a trade-off among BER, data rate and the number of transmitted coded messages is shown for LMSNC through graphics and simulation results.
通过基站场景,在AWGN信道、N节点上使用PUM Turbo码的物理层确定性网络编码
网络编码(NC)是一种用于提高传输数据速率和功率效率的新技术。这些目标是通过在传输之前将数据组合在一起,从而使传输的数据较少,但携带的信息量相同。在物理层和上层的数控研究工作是流行的,需要更多的研究。在本文中,我们提出了一个实用的系统,大量连接的多源网络编码(LMSNC),在物理层利用无线信道的广播性质,使用实用和带宽高效的解码和转发(DF)方案,然后与放大和转发(AF)进行比较。理论分析和仿真结果显示了噪声在自动对焦系统中积累时的影响,以及DF如何解决这种严重的默认情况。此外,我们考虑了用于少量连接源的MSNC (SMSNC)和双向通信设置,其中两个用户通过中间网络节点(理想情况下称为基站)交换他们的信息,作为两个参考案例进行比较。使用SMSNC,减少了从中间节点到用户的必要下行传输次数,从而提高了吞吐量。基于部分单元存储器(PUM)码(4,2,1,4)和(8,4,3,8)的高性能非二进制turbo码的仿真结果;在MSNC设置中,结合PUM Turbo Code (PUMTC)和NC,在少量处理步骤下,主要是在执行PUMTC(8,4,3,8)时,获得与SMSNC几乎相同的误码率性能,这需要检索接收到的编码消息。在AF场景中,将分组结果组合在一起会累积噪声,这就是我们决定增加网络中传输的编码消息数量的原因,即发送额外的编码消息会提高BER性能。最后,通过图形和仿真结果显示了LMSNC在误码率、数据速率和传输编码报文数之间进行权衡的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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