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[IEEE 2018 International Conference on Applied Electromagnetics, Signal Processing and Communication (AESPC) - Bhubaneswar, India (2018.10.22-2018.10.24)] 2018 International Conference on Applied Electromagnetics, Signal Processing and Communication (AESPC) - Temperature effect on a-SiCN:H waveguide for application of sensing

DOI:10.1109/aespc44649.2018.9033269 出版年份:2018 更新时间:2025-09-19 17:13:59
摘要: Long term evolution-wireless local area network (LTE-WLAN) aggregation (LWA) has recently emerged as a promising third generation partnership project (3GPP) Release 13 technology to efficiently aggregate LTE and WLAN at the packet data convergence protocol layer, allowing uplink traffic to be carried on LTE and downlink on both LTE and WLAN. This removes all the contention asymmetry problems of WLAN and allows an optimum usage of both licensed and unlicensed band for downlink. In this paper, we present a new feature of LWA, its flow control scheme, which controls how to aggregate downlink traffic in licensed and unlicensed bands. This aggregation technique exploits user equipment-based flow control feedback in the form of LWA status reports, and can be expanded to work with any number of frequency bands and radio technologies. The same concepts apply to 5G networks, although the performance evaluation provided here is in the context of LTE-Advanced Pro. Simulation results in a typical enterprise scenario show that LWA can enhance user performance up to 8 times over LTE-only, and 3.7 times over WLAN only networks, respectively. The impact of the file size and LWA status report frequency on network performance is also investigated.
作者: DAVID LóPEZ-PéREZ,DANIELA LASELVA,EUGEN WALLMEIER,P?IVI PUROVESI,PETTERI LUNDéN,ELENA VIRTEJ,PIOTR LECHOWICZ,ESA MALKAMAKI,MING DING
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To present a new feature of LTE-WLAN aggregation (LWA), its flow control scheme, which controls how to aggregate downlink traffic in licensed and unlicensed bands, and to evaluate its performance in enhancing user performance over LTE-only and WLAN only networks.

The paper concludes that LWA can significantly enhance user throughput performance over LTE-only and WLAN-only networks, with gains up to 8 times and 3.7 times, respectively. The impact of file size and LWA status report frequency on network performance is also highlighted, emphasizing the importance of proper setup to avoid queue starvation and long waiting times.

The study focuses on downlink traffic aggregation and does not consider uplink aggregation, which is a limitation of the current LWA technology as per 3GPP Release 13. The performance evaluation is conducted in a specific enterprise scenario, and the results may vary in other environments.

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