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ITFDS: Channel-Aware Integrated Time and Frequency-Based Downlink LTE Scheduling in MANET

机译:ITFDS:MANET中基于信道的集成基于时间和频率的下行链路LTE调度

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摘要

One of the crucial problems in Industry 4.0 is how to strengthen the performance of mobile communication within mobile ad-hoc networks (MANETs) and mobile computational grids (MCGs). In communication, Industry 4.0 needs dynamic network connectivity with higher amounts of speed and bandwidth. In order to support multiple users for video calling or conferencing with high-speed transmission rates and low packet loss, 4G technology was introduced by the 3G Partnership Program (3GPP). 4G LTE is a type of 4G technology in which LTE stands for Long Term Evolution, followed to achieve 4G speeds. 4G LTE supports multiple users for downlink with higher-order modulation up to 64 quadrature amplitude modulation (QAM). With wide coverage, high reliability and large capacity, LTE networks are widely used in Industry 4.0. However, there are many kinds of equipment with different quality of service (QoS) requirements. In the existing LTE scheduling methods, the scheduler in frequency domain packet scheduling exploits the spatial, frequency, and multi-user diversity to achieve larger MIMO for the required QoS level. On the contrary, time-frequency LTE scheduling pays attention to temporal and utility fairness. It is desirable to have a new solution that combines both the time and frequency domains for real-time applications with fairness among users. In this paper, we propose a channel-aware Integrated Time and Frequency-based Downlink LTE Scheduling (ITFDS) algorithm, which is suitable for both real-time and non-real-time applications. Firstly, it calculates the channel capacity and quality using the channel quality indicator (CQI). Additionally, data broadcasting is maintained by using the dynamic class-based establishment (DCE). In the time domain, we calculate the queue length before transmitting the next packets. In the frequency domain, we use the largest weight delay first (LWDF) scheduling algorithm to allocate resources to all users. All the allocations would be taken placed in the same transmission time interval (TTI). The new method is compared against the largest weighted delay first (LWDF), proportional fair (PF), maximum throughput (MT), and exponential/proportional fair (EXP/PF) methods. Experimental results show that the performance improves by around 12% compared with those other algorithms.
机译:工业4.0中的关键问题之一是如何增强移动自组织网络(MANET)和移动计算网格(MCG)内的移动通信性能​​。在通信中,工业4.0需要具有更高速度和带宽的动态网络连接。为了以高速传输速率和低丢包率支持多个用户进行视频呼叫或会议,3G合作伙伴计划(3GPP)引入了4G技术。 4G LTE是4G技术的一种,其中LTE代表长期演进,随后达到4G速度。 4G LTE支持多个用户使用高达64正交幅度调制(QAM)的高阶调制的下行链路。 LTE网络具有覆盖范围广,可靠性高,容量大等优点,广泛应用于工业4.0。但是,存在许多具有不同服务质量(QoS)要求的设备。在现有的LTE调度方法中,频域分组调度中的调度器利用空间,频率和多用户分集来针对所需的QoS等级实现更大的MIMO。相反,时频LTE调度关注时间和效用公平性。期望有一种新的解决方案,其结合了实时应用的时域和频域以及用户之间的公平性。在本文中,我们提出了一种基于信道的,基于时间和频率的集成下行链路LTE调度(ITFDS)算法,该算法适用于实时和非实时应用。首先,它使用信道质量指示符(CQI)计算信道容量和质量。此外,通过使用基于动态类的建立(DCE)来维护数据广播。在时域中,我们在传输下一个数据包之前计算队列长度。在频域中,我们使用最大的权重优先优先(LWDF)调度算法将资源分配给所有用户。所有分配将置于相同的传输时间间隔(TTI)中。将新方法与最大加权延迟优先(LWDF),比例公平(PF),最大吞吐量(MT)和指数/比例公平(EXP / PF)方法进行了比较。实验结果表明,与其他算法相比,性能提高了约12%。

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