论文标题
时空和频率扩散,以最大程度地减少密集的物联网
Space-Time- and Frequency- Spreading for Interference Minimization in Dense IoT
论文作者
论文摘要
在本文中,我们提出了一个空间扩散的辅助框架,该框架利用时间或频率多样性,或者既减少干扰和信号损失,从而减少渠道障碍,并促进大规模密集的密集互联网(IOT)的有效运行。我们的方法采用从单个物联网设备(ST),空间频率(SF)或时空频率(STF)块上传递的数据流的分散。结果,没有两个设备在同一块上传输;当网络中的其余设备保持沉默,从而最大程度地减少了干扰发射侧的可能性,仅激活一个。在接收方中,在频道损伤的情况下,多种阵线阵列可以改善性能,同时利用阵列加工增益。由于由于多个数据流的叠加而引起的干扰在其根部被杀死,因此在打击干扰和其他损伤时不会浪费额外的能量,从而可以通过多个访问通道(MAC)从多个设备上进行节能传输。为了验证拟议的概念,我们以信号中断的概率来模拟在广义室内和室外场景中部署在室内和室外场景中的框架的性能。结果表明,我们的概念化框架受益于无干扰传输以及整体系统性能的增强。
In this article, we propose a space spreading-assisted framework that leverages either time or frequency diversity or both to reduce interference and signal loss owing to channel impairments and facilitate the efficient operation of large-scale dense Internet-of-Things (IoT). Our approach employs dispersion of data-streams transmitted from individual IoT devices over indexed space-time (ST), space-frequency (SF) or space-time-frequency (STF) blocks. As a result, no two devices transmit on the same block; only one is activated while the rest of the devices in the network is silent, thereby minimizing possibility of interference on the transmit side. On the receive side, multiple-antenna array ameliorates performance in presence of channel impairments while exploiting array-processing gain. As interference due to superposition of multiple data-streams is killed at its root, no extra energy is wasted in fighting interference and other impairments, thereby enabling energy-efficient transmission from multiple devices over multiple access channel (MAC). To validate the proposed concept, we simulate the performance of the framework against dense IoT networks deployed in generalized indoor and outdoor scenarios in terms of probability of signal outage. Results demonstrate that our conceptualized framework benefits from interference-free transmission as well as enhancement in overall system performance.