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Adaptive Latency Reduction in LoRa for Mission Critical Communications in Mines

机译:LoRa中的自适应延迟降低,用于矿山中的关键任务通信

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Reliable communication is essential to alleviate incidents and escalate rescue operations. However, wireless communication is very challenging in underground mine due to irregular confined shapes and rough environments. A recent wireless standard LoRa (Long Range) is promising in mine environments because of its ultralow power consumption, long range, and deep penetration capabilities. In underground mine, sensors are deployed for continuous monitoring the working environments as well as tracking objects and miners. Therefore, different types of traffic are generated with different QoS requirements. LoRaWAN, the standardized medium access control (MAC) protocol is based on pure ALOHA that can not meet the requirements of mission-critical communications. The mission-critical applications require very low latency and high reliability. In this paper, we evaluate the performance of LoRa and LoRaWAN technologies in an underground mine in the presence of different kinds of traffic; and subsequently we propose redundant retransmission aided adaptive latency reduction protocol for low latency communication. In this protocol the ACK-TIMEOUT is adjusted based on the air time of the previous uplink transmission and the contention stage. Simulation results demonstrate that the proposed protocol significantly improves the performance of the system and outperforms LoRaWAN in terms of data extraction ratio (DER) and average transmission delay.
机译:可靠的通信对于减轻事故和提升救援行动至关重要。然而,由于不规则的受限形状和恶劣的环境,在地下矿井中无线通信非常具有挑战性。最近的无线标准LoRa(远程)在矿山环境中很有希望,因为它具有超低的功耗,远距离和深穿透能力。在地下矿井中,部署了传感器以连续监控工作环境以及跟踪物体和矿工。因此,将生成具有不同QoS要求的不同类型的流量。 LoRaWAN,标准化的媒体访问控制(MAC)协议基于纯ALOHA,不能满足关键任务通信的要求。关键任务应用程序需要非常低的延迟和高可靠性。在本文中,我们评估了在存在各种流量的情况下,地下矿井中LoRa和LoRaWAN技术的性能。随后,我们提出了用于低延迟通信的冗余重传辅助自适应延迟减少协议。在此协议中,将根据先前的上行链路传输和争用阶段的广播时间来调整ACK-TIMEOUT。仿真结果表明,该协议在数据提取率(DER)和平均传输延迟方面,显着提高了系统性能,并优于LoRaWAN。

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