论文标题
低功率飞机传感器的RF无线电力传输评估
Evaluation of RF Wireless Power Transfer for Low-Power Aircraft Sensors
论文作者
论文摘要
低功率传感器可以在许多用例中集成到飞机中。通常,这些传感器是通过电缆供电的,该电缆为飞机的整体效率带来了各种缺点。另外,可以使用电池。但是,这意味着需要额外维护以更换电池。卸下电源电缆的另一个选项是使用射频(RF)无线电源传输(WPT)系统。尽管文献中已经研究了一般的RF WPT技术,但其对航空用例的可行性尚未得到充分研究。在本文中,我们研究了RF WPT对无线功率低功率内部传感器的可行性。在机舱模型中,我们表明RF WPT TechOnology能够完全覆盖20个座位的面积,并使用接收的信号强度指标(最高$ 28 $ W)和数据包间隔率(最高$ 5.5 $ Hz)进行定量评估。此外,我们在实验室环境中对传输方案进行多色调正弦波实验,从而提高了提高接收器敏感性的潜在方法,从而增加机舱中的WPT覆盖率而不改变平均传输功率。总体结果表明,某些低功率机舱用例可以由已经存在的商业RF WPT系统支持。
Low-power sensors can be integrated into an aircraft for numerous use cases. Conventionally, these sensors are powered via cables, which introduces various disadvantages to the overall efficiency of the aircraft. Alternatively, batteries may be used. However, this implies the necessity of additional maintenance for battery replacement. Another option to remove power cables is to use Radio Frequency (RF) Wireless Power Transfer (WPT) systems. Although general RF WPT technology has been studied in the literature, its feasibility for aviation use cases is not fully investigated. In this paper, we study the feasibility of RF WPT to wirelessly power low-power in-cabin sensors. In a cabin mock-up we show that RF WPT techonology is capable of almost fully covering an area of 20 seats and quantitatively assess this using Received Signal Strength Indicators (up to $28$ mW) and packet interval rate (up to $5.5$ Hz). Furthermore, we perform multi-tone sinusoidal wave experiments for power transmission scheme in a lab environment and thereby present potential ways to improve receiver sensitivity and consequently increase the WPT coverage in the cabin without changing the average transmission power. The overall results show that certain low-power cabin use cases can be supported by already existing commercial RF WPT systems.