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Improving Quality-Of-Service in LoRa Low-Power Wide-Area Networks through Optimized Radio Resource Management

机译:通过优化的无线电资源管理提高LORA低功耗广域网的服务质量

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摘要

Low Power Wide Area Networks (LPWAN) enable a growing number of Internet-of-Things (IoT) applications with large geographical coverage, low bit-rate, and long lifetime requirements. LoRa (Long Range) is a well-known LPWAN technology that uses a proprietary Chirp Spread Spectrum (CSS) physical layer, while the upper layers are defined by an open standard—LoRaWAN. In this paper, we propose a simple yet effective method to improve the Quality-of-Service (QoS) of LoRaWAN networks by fine-tuning specific radio parameters. Through a Mixed Integer Linear Programming (MILP) problem formulation, we find optimal settings for the Spreading Factor (SF) and Carrier Frequency (CF) radio parameters, considering the network traffic specifications as a whole, to improve the Data Extraction Rate (DER) and to reduce the packet collision rate and the energy consumption in LoRa networks. The effectiveness of the optimization procedure is demonstrated by simulations, using LoRaSim for different network scales. In relation to the traditional LoRa radio parameter assignment policies, our solution leads to an average increase of 6% in DER, and a number of collisions 13 times smaller. In comparison to networks with dynamic radio parameter assignment policies, there is an increase of 5%, 2.8%, and 2% of DER, and a number of collisions 11, 7.8 and 2.5 times smaller than equal-distribution, Tiurlikova’s (SOTA), and random distribution, respectively. Regarding the network energy consumption metric, the proposed optimization obtained an average consumption similar to Tiurlikova’s, and 2.8 times lower than the equal-distribution and random dynamic allocation policies. Furthermore, we approach the practical aspects of how to implement and integrate the optimization mechanism proposed in LoRa, guaranteeing backward compatibility with the standard protocol.
机译:低功耗广域网(LPWAN)实现具有大地理覆盖,低比特率和长寿命要求的越来越多的互联网(物联网)应用。洛拉(长距离)是使用一个专有的线性调频扩频(CSS)物理层的公知技术LPWAN,而上部层通过一个开放的标准-LoRaWAN定义。在本文中,我们提出了一个简单而有效的方法来提高由微调特定的无线电参数LoRaWAN网络的质量的服务质量(QoS)。通过混合整数线性编程(MILP)问题制定,我们发现扩频因子(SF)和载波频率(CF)无线参数的最佳设置,考虑到整个网络流量规范,以提高数据提取率(DER)并降低LORA网络中的数据包冲突率和能耗。使用Lorasim用于不同的网络尺度的Lorasim,通过模拟来证明优化过程的有效性。与传统的LORA无线电参数分配策略有关,我们的解决方案导致DER的平均增加6%,并且一些碰撞13倍。相比于具有动态无线电参数分配策略的网络,有增加的5%,2.8%,和DER的2%,和一些碰撞11,7.8和小于等于分配较小的2.5倍的,Tiurlikova的(SOTA),和随机分布,分别。关于网络的能耗指标,提出的优化获得与Tiurlikova的平均消费量,而且比同等分布和随机动态分配政策,降低2.8倍。此外,我们接近如何实现和集成Lora中提出的优化机制的实际方面,保证与标准协议的向后兼容性。

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