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The design of a wireless batteryless biflash installation with high power LEDs

机译:具有大功率LED的无线无电池双闪光灯安装的设计

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Adding flashlights at crosswalks may make these weak traffic points safer. Unfortunately plugging in traffic lights into the electrical grid is expensive and complex. This paper reports about the energetic, the electronic and the optical design and building of a wireless and batteryless biflash installation in the framework of a flemish SME supporting program. The energy is supplied by a small solar panel and is buffered by supercapacitors instead of batteries. This has the advantage of being maintenance free: the number of charge-discharge cycles is almost unlimited because there is no chemical reaction involved in the storage mechanism. On the other hand the limited energy storage capacity of supercapacitors requires a new approach for the system design. Based on the EN-12352 standard for warning light devices, all design choices were filled in to be as energy efficient as possible. The duty cycle and the light output of the high power led flashlights are minimized. The components for the electronic circuits for the led driver, the control and the RF communication are selected based on their energy consumption and power management techniques are implemented. A lot of energy is saved by making the biflash system active. The leds are only flashing on demand or at preprogrammed moments. A biflash installation is typically installed at both sides of a crosswalk. A call at one of the sides should result in flashing at both sides. To maintain the drag and drop principle, a wireless RF communication system is designed
机译:在人行横道上增加手电筒可以使这些交通不便的地方更加安全。不幸的是,将交通信号灯插入电网是昂贵且复杂的。本文报告了在一个轻薄的SME支持计划框架下的无线,无电池双闪存装置的能量,电子和光学设计以及构建。能量由一个小的太阳能电池板提供,并由超级电容器而不是电池缓冲。这具有免维护的优点:充电-放电循环的次数几乎是无限的,因为存储机制中不涉及任何化学反应。另一方面,超级电容器有限的储能能力要求系统设计采用新方法。基于警示灯设备的EN-12352标准,所有设计选择都被填充为尽可能节能。大功率led手电筒的占空比和光输出最小。基于LED驱动器,控制和RF通信的电子电路的组件根据其能耗进行选择,并实施电源管理技术。通过激活双闪存系统,可以节省大量能源。 LED仅在需要时或在预编程的时刻闪烁。通常在人行横道的两侧都安装了双闪存安装。一侧的通话应导致两侧闪烁。为了保持拖放原理,设计了无线射频通信系统

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