Efisiensi Daya Pada Smartlock Bike-Sharing Berbasis LoRaWAN Dengan Metode GPS Duty Cycle

Alfian Andi Nugroho, A. Ashari
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Abstract

Bike-sharing or commonly called Public-Use Bycycle (PUB), Bycycle Transit, or Smartbike is a short-term bicycle rental system that allows users to borrow bikes from a self-serve bike-sharing station to a point. Due to technological advances, the bike-sharing system that was once simple, now also utilizes technology in its operations. The modern bike-sharing system is equipped with IoT and GPS technology that is useful for sending data on the actual location of the bicycle, bicycle lock conditions, or even for M2M communication with other stations or bikes. However, this data transmission can cause the battery to run out quickly because of frequent sending and using GSM which requires a large enough power that is 200 mA when sending data and 80 mA when receiving, so that an alternative solution is needed to be able to save power. Therefore, the GPS Duty cycle is used as a method to increase power efficiency on the smartlock. In addition to using the GPS Duty cycle, this study also uses LoRa as a data delivery medium which has lower power usage compared to GSM technology. The results of this study are the duty-cycle algorithm can increase the efficiency of power usage up to 59% when compared to smartlocks that do not use the duty-cycle algorithm. It was also found that LoRa succeeded in sending data up to a distance of 750 meters with a successful delivery of 39.3 percent
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基于LoRaWAN智能锁与GPS任务周期共享系统的动力
共享单车或通常被称为公共使用自行车(PUB)、自行车运输或智能自行车是一种短期自行车租赁系统,允许用户从自助共享单车站借用自行车。由于技术进步,曾经简单的共享单车系统现在也在运营中使用了技术。现代共享单车系统配备了物联网和GPS技术,可用于发送自行车实际位置、自行车锁状态的数据,甚至用于与其他站点或自行车的M2M通信。然而,由于频繁发送和使用GSM,这种数据传输可能会导致电池快速耗尽,GSM需要足够大的功率,发送数据时为200mA,接收数据时为80mA,因此需要一种能够节省电力的替代解决方案。因此,GPS占空比被用作提高智能锁的功率效率的方法。除了使用GPS占空比,本研究还使用LoRa作为数据传输介质,与GSM技术相比,该介质的功耗更低。这项研究的结果是,与不使用工作循环算法的智能锁相比,工作循环算法可以将电力使用效率提高59%。研究还发现,LoRa成功地将数据发送到750米的距离,成功率为39.3%
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