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Cooperative Carrier Signaling: Harmonizing Coexisting WPAN and WLAN Devices

机译:协作运营商信令:协调共存的WPAN和WLAN设备

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The unlicensed ISM spectrum is getting crowded by wireless local area network (WLAN) and wireless personal area network (WPAN) users and devices. Spectrum sharing within the same network of devices can be arbitrated by existing MAC protocols, but the coexistence between WPAN and WLAN (e.g., ZigBee and WiFi) remains a challenging problem. The traditional MAC protocols are ineffective in dealing with the disparate transmit-power levels, asynchronous time-slots, and incompatible PHY layers of such heterogeneous networks. Recent measurement studies have shown moderate-to-high WiFi traffic to severely impair the performance of coexisting ZigBee. We propose a novel mechanism, called cooperative carrier signaling (CCS), that exploits the inherent cooperation among ZigBee nodes to harmonize their coexistence with WiFi WLANs. CCS employs a separate ZigBee node to emit a carrier signal (busy tone) concurrently with the desired ZigBee's data transmission, thereby enhancing the ZigBee's visibility to WiFi. It employs an innovative way to concurrently schedule a busy tone and a data transmission without causing interference between them. We have implemented and evaluated CCS on the TinyOS/MICAz and GNURadio/USRP platforms. Our extensive experimental evaluation has shown that CCS reduces collision between ZigBee and WiFi by 50% for most cases, and by up to 90% in the presence of a high-level interference, all at negligible WiFi performance loss.
机译:未经许可的ISM频谱正被无线局域网(WLAN)和无线个人区域网(WPAN)用户和设备拥挤。可以通过现有的MAC协议来仲裁同一设备网络内的频谱共享,但是WPAN和WLAN(例如ZigBee和WiFi)之间的共存仍然是一个具有挑战性的问题。传统的MAC协议在处理此类异构网络的不同的发射功率级别,异步时隙以及不兼容的PHY层方面无效。最近的测量研究表明,从中到高的WiFi流量会严重损害共存ZigBee的性能。我们提出了一种称为合作载波信令(CCS)的新颖机制,该机制利用ZigBee节点之间的固有合作来协调其与WiFi WLAN的共存。 CCS使用单独的ZigBee节点与所需ZigBee的数据传输同时发射载波信号(忙音),从而增强ZigBee对WiFi的可见性。它采用一种创新的方式来同时调度忙音和数据传输,而不会引起忙音和数据传输之间的干扰。我们已经在TinyOS / MICAz和GNURadio / USRP平台上实施和评估了CCS。我们的广泛实验评估表明,在大多数情况下,CCS可以将ZigBee和WiFi之间的冲突减少50%,而在存在高水平干扰的情况下,则最多可以减少90%,而WiFi性能损失可忽略不计。

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