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Facilitating Non-collocated coexistence for WiFi and 4G wireless networks

机译:促进WiFi和4G无线网络的非并置共存

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In this paper, we discuss the problem of non-collocated coexistence of WiFi and 4G technologies such as WiMAX and LTE due to adjacent channel interference. The existing literature has many solutions and schemes to address the problem of shared channel coexistence and adjacent channel coexistence on multi-radio platforms. Results for Non-collocated coexistence in adjacent channels in wireless remain very scattered and few. Radio devices operating on Broadband Wireless Access (BWA) 4G wireless technologies like IEEE 802.16 (WiMAX) and LTE-A require very low noise floor. BWA spectrum allocations in 2.3 GHz and 2.5GHz have resulted in these networks to be very close to 2.4 GHz ISM band used by WiFi. We show, with measurements on our test-bed and from existing results, that the low-cost filters on WiFi devices are not very effective in controlling the out-of-band emissions to satisfy the low noise floor requirements of 4G. We propose schemes to mitigate the problem of adjacent channel interference by a time sharing mechanism across technologies by protecting packet receptions on both IEEE 802.11 and the IEEE 802.16 side. We demonstrate the effectiveness of our scheme to protect WiMAX packets by ensuring a controlled silence zone in the WiFi network using a test-bed. We also show that there is very limited adverse impact, due to the use of our scheme, on the system throughput of the non-collocated WiFi network operating in the adjacent channel.
机译:在本文中,我们讨论了由于相邻信道干扰而导致的WiFi与4G技术(例如WiMAX和LTE)无法并存的问题。现有文献有许多解决方案和方案来解决多无线电平台上的共享信道共存和相邻信道共存的问题。无线相邻信道中非并置共存的结果仍然非常分散且很少。使用诸如IEEE 802.16(WiMAX)和LTE-A之类的宽带无线接入(BWA)4G无线技术运行的无线电设备要求本底噪声非常低。在2.3 GHz和2.5 GHz的BWA频谱分配中,这些网络非常接近WiFi使用的2.4 GHz ISM频段。通过在测试台上进行的测量和现有结果表明,WiFi设备上的低成本滤波器在控制带外发射以满足4G低本底噪声要求方面不是非常有效。我们提出了一种方案,该方案通过保护IEEE 802.11和IEEE 802.16端的数据包接收,通过跨技术的时间共享机制来减轻相邻信道干扰的问题。我们通过使用测试台确保WiFi网络中的受控静默区来证明我们的方案保护WiMAX数据包的有效性。我们还表明,由于使用我们的方案,对在相邻信道中运行的非并置WiFi网络的系统吞吐量的影响非常有限。

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