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Adaptive TTCM aided near-instantaneously adaptive dynamic network coding for cooperative cognitive radio networks

机译:自适应TTCm辅助近似瞬时自适应动态网络编码用于协作认知无线电网络

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摘要

An Adaptive Dynamic Network Coding (ADNC) scheme conceived for Cooperative Cognitive Radio (CCR) is proposed for devising a novel ADNC-CCR system. The system is designed for supporting communications between multiple Primary Users (PUs) and a common Base Station (BS), where the independent source information is transmitted from the PUs to the BS with the aid of multiple Cognitive Users (CUs) acting as Relay Nodes (RNs). In order to facilitate the recovery of the source information at the BS, the CUs invoke the ADNC technique, which is assisted by our cooperative protocol operating by exchanging the CCR-based control information between near-instantaneously Adaptive Turbo Trellis Coded Modulation (ATTCM) and network coding codec as well as between the CUs and the BS. More particularly, nearinstantaneously ATTCM is employed for appropriately adjusting both the modulation mode as well as the code rate of the channel coding itself and of the network coding, according to the nearinstantaneous channel conditions. As a result, our novel ADNCCCR system constructed on the basic of our holistic approach is capable of providing an increased throughput, despite reducing the transmission-period of the PU. This reduced transmissionperiod can also be directly translated into an increased duration for secondary communications of the CUs. In our proposed ADNC-CCR scheme, both the PUs and CUs employ our ATTCM scheme. As an additional novelty, the network encoder may also be activated in its adaptive mode for supporting the CUs, depending on the Boolean value of the feedback flags generated based on the success/failure of the ATTCM decoder and of the network decoder, which is evaluated and fed back by the BS. Quantitatively, it was found that the joint holistic design of our ATTCM-ADNC-CCR scheme is either capable of freeing up an approximately 40% of the PU’s bandwidth in comparison to its non-cooperative counterpart, or increasing the attainable throughput by 2 bit/symbol.
机译:为了设计一种新颖的ADNC-CCR系统,提出了一种为合作认知无线电(CCR)构想的自适应动态网络编码(ADNC)方案。该系统设计用于支持多个主要用户(PU)和公共基站(BS)之间的通信,在该系统中,借助充当中继节点的多个认知用户(CU),将独立的源信息从PU发送到BS (RNs)。为了促进在BS处源信息的恢复,CU调用了ADNC技术,这是通过我们的合作协议来实现的,该协议通过在近乎实时的自适应Turbo网格编码调制(ATTCM)和ATM之间交换基于CCR的控制信息来进行操作。网络编码编解码器以及CU和BS之间。更具体地,根据瞬时信道条件,采用近乎瞬时的ATTCM来适当地调节调制模式以及信道编码本身和网络编码的编码率。结果,尽管减少了PU的传输周期,但基于我们整体方法构建的新型ADNCCCR系统仍能够提供更高的吞吐量。减少的传输时间也可以直接转换为CU二次通信的持续时间。在我们提出的ADNC-CCR方案中,PU和CU均采用我们的ATTCM方案。作为附加的新颖性,网络编码器也可以根据其自适应模式激活,以支持CU,具体取决于根据ATTCM解码器和网络解码器的成功/失败而生成的反馈标志的布尔值,该布尔值会被评估并由BS反馈。从数量上发现,我们的ATTCM-ADNC-CCR方案的整体设计能够释放PU的带宽(相较于它的非合作伙伴,大约40%),或者将可达到的吞吐量提高2位/符号。

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