Pemanfaatan Modul Lora SX1278 Sebagai Sistem Telekontrol pada Robot Penjaga

Putra Wirayudha, Dekki Widiatmoko, Aguk Sridaryono, Mokhammad Syafaat, Kasiyanto Kasiyanto
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Abstract

The frequent armed conflicts in Papua have earned it the dubious distinction of being the number one region in Indonesia with the highest incidence of armed conflicts. These actions are claimed to be the work of the Armed Criminal Group (ACG) and often target military posts or guard stations. Given the conditions at these guard stations, there is a perceived need to introduce technology for better anticipating and countering attacks. In response to these challenges, the author envisions the introduction of a guard robot as a solution. This proposed guard robot is integrated with an SS2 weapon and has the capability for remote control of its firing. The remote control of the robot is facilitated by the LoRa Sx1278 module, which is purported to have a range of up to 500 meters. The researcher's proposed guard robot consists of components, including the Arduino Nano, LoRa SX1278 Module, L298N Motor Driver, DC Motors, Solenoid, 12-Volt LiPo Battery, Step-down module, and KY-023 Joystick. The research findings highlight the impact of the quantity of data on transmission delay. The lowest delay observed during the 10th test, with the transmission of 10 words, had an average delay of 531 ms, while the lowest delay during the first test, involving the transmission of a single word, had an average delay of 81 ms. In terms of data transmission range tests using the LoRa SX1278 module, under Line of Sight (LOS) conditions, the best range achieved was 350 meters, whereas under Non-Line of Sight (NLOS) conditions, the range was limited to 100 meters.
利用 Lora SX1278 模块作为警卫机器人的远程控制系统
巴布亚频繁发生的武装冲突使其成为印度尼西亚武装冲突发生率最高的地区之一。这些行动据称是武装犯罪集团(ACG)所为,目标往往是军事哨所或警卫站。鉴于这些哨所的条件,人们认为有必要引进技术,以便更好地预测和反击袭击。为应对这些挑战,作者设想采用警卫机器人作为解决方案。这种拟议的警卫机器人与 SS2 武器集成在一起,能够远程控制其发射。LoRa Sx1278 模块为远程控制机器人提供了便利,据称该模块的射程可达 500 米。研究人员提出的警卫机器人由多个组件组成,包括 Arduino Nano、LoRa SX1278 模块、L298N 电机驱动器、直流电机、电磁阀、12 伏锂电池、降压模块和 KY-023 操纵杆。研究结果凸显了数据量对传输延迟的影响。在第 10 次测试中观察到的最低延迟是传输 10 个字,平均延迟时间为 531 毫秒,而在第一次测试中的最低延迟是传输一个字,平均延迟时间为 81 毫秒。在使用 LoRa SX1278 模块进行的数据传输距离测试中,在视线(LOS)条件下,最佳传输距离为 350 米,而在非视线(NLOS)条件下,传输距离被限制在 100 米。
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