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Co-channel interference mitigation technique for mobile WiMAX downlink system deployed via Stratospheric Platform

机译:通过平坦平台部署的移动WiMAX下行链路系统的共同信道干扰减缓技术

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This paper aim at evaluating an interference mitigation technique proposed for Stratospheric Platform (SPF) WiMAX downlink system. Performance evaluation of mobile WiMAX system under impact of co-channels interfering from the SPF antennas operating in the same frequency band is proposed to be studied in this paper. Several frequency reuse pattern are simulated to find the best reuse pattern which means that they have a minimum interference level. Simulation results clearly demonstrate that the co-channel interference was dominant when delivering mobile WiMAX via SPF and its performance can be effectively improved using frequency reuse patterns. Results relative to co-channel interfering evaluation, showed an improvement on the system performance with increasing frequency reuse pattern (from 1 to 3, or from 3 to 4). The remaining results with respect to BER simulation indicate how K Rice factor which is governed by elevation angle, Doppler shifts due to mobility, and physical layer setting of broadband system can contribute to the overall performance. Finally, simulation results clarified that applying spatial diversity at transmitter side can improve the performance at low elevation angles.
机译:本文旨在评估建议为平滑板(SPF)WiMAX下行链路系统提出的干扰减轻技术。提出了在本文中研究了在同一频带中操作的SPF天线的影响下移动WiMAX系统的性能评估。模拟几种频率重用模式以找到最佳的重用模式,这意味着它们具有最小的干扰水平。模拟结果清楚地表明,当通过SPF提供移动WiMAX时,共信道干扰是显性的,并且可以使用频率重用模式有效地改善其性能。结果相对于共同信道干扰评估,对系统性能的提高,频率再利用模式增加(从1到3,或3到4)。关于BER模拟的剩余结果表明,由于迁移率,宽带系统的物理层设置具有升高角度,多普勒换档的K类因素如何有助于整体性能。最后,仿真结果澄清说,在发射器侧施加空间分集可以提高低升高角度的性能。

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