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Coexistence and interference tests on a Bluetooth Low Energy front-end

机译:低功耗蓝牙前端上的共存和干扰测试

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Over the last decade, impelled by the industry demand to achieve a technology capable of sending low amount of data payloads, but at the same time with a very low latency and ultra-low power consumption, several efforts in wireless network transmission standardization emerged, supporting new applications in health, sports and fitness, medical, sensor networking, and even the automotive industry field. Despite the competition from ANT+, ZigBee, Nike+, NFC and RF4CE, in 2010 the Bluetooth SIG (special interest groups) adopted a new wireless technology named Bluetooth Low Energy (BLE). BLE coexist with Bluetooth in the same chip (called dual mode) therefore assuring this technology a rapid growth among smartphones, iOS, tablets, laptops and PCs. In fact, Bluetooth SIG also announced that it shall be hard to find a smartphone or tablet-PC that does not integrate BLE in the near future. Despite this accelerated growth, BLE shares the same band with Wi-Fi and all other low power technologies, so in order to achieve QoS, a mandatory requirement in many systems, tests for interference and coexistence must be performed. This study analysis the impact of a BLE sensor network on a crowded 2.4GHz room, with multiple Wi-Fi routers, ZigBee sensors and Bluetooth technology. We also compare the results with the ones obtained inside an anechoic chamber on similar experiences.
机译:在过去的十年中,受到行业需求的推动,以实现一种能够发送少量数据有效载荷的技术,但同时具有非常低的延迟和超低的功耗,在无线网络传输标准化方面出现了一些努力,在健康,运动与健身,医疗,传感器网络乃至汽车行业领域的新应用。尽管有ANT +,ZigBee,Nike +,NFC和RF4CE的竞争,但蓝牙SIG(特殊兴趣小组)在2010年采用了一种名为蓝牙低功耗(BLE)的新无线技术。 BLE与蓝牙在同一芯片中共存(称为双模),因此确保了该技术在智能手机,iOS,平板电脑,笔记本电脑和PC中的快速增长。实际上,Bluetooth SIG还宣布,在不久的将来将很难找到不集成BLE的智能手机或平板电脑。尽管增长迅速,但BLE与Wi-Fi和所有其他低功耗技术共享相同的频带,因此,为了实现QoS,在许多系统中都是强制性要求,必须执行干扰和共存测试。这项研究分析了BLE传感器网络对拥挤的2.4GHz机房的影响,该机房配备了多个Wi-Fi路由器,ZigBee传感器和蓝牙技术。我们还将结果与在类似经验下在消声室内获得的结果进行比较。

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