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Interference aware throughput measurements for mobile WiMAX over vehicular radio channels

机译:车载无线信道上移动WiMAX的干扰感知吞吐量测量

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Due to its advantageous properties in multipath propagation scenarios, the Orthogonal Frequency Division Multiple Access (OFDMA) radio transmission scheme is widely spread in current broadband wireless networks. Exemplary emerging systems based on this technology are the UMTS Long Term Evolution (LTE), Mobile WiMAX and some popular WiFi variants (e.g. IEEE 802.11n). Although analytical and simulative investigations have shown that the increased symbol time of OFDMA (compared with single carrier systems) allows for a wider delay spread without causing Inter Symbol Interference (ISI) it is quite hard to quantify this improvement under realistic circumstances. In this paper, we present the results of a measurement campaign in which we investigated the influence of multipath fading channels, interferences and velocity on the available User Datagram Protocol (UDP) data rate of an IEEE 802.16e conform Mobile WiMAX System. Therefore, a sophisticated laboratory setup was used which is based on a radio channel emulator. From that, optimum switching points for the Adaptive Modulation and Coding (AMC) scheme are derived. The results show, that for vehicular radio channels the choice of the most suitable modulation and coding scheme, and therefore the maximum available data rate, does strongly depend on the environmental parameter such as delay spread and user velocity. In particular, it can be seen that the use of a strong forward error correction is more important than a higher order modulation scheme if high data rates are required by real time multimedia applications.
机译:由于其在多径传播场景中的有利特性,正交频分多址(OFDMA)无线电传输方案在当前的宽带无线网络中得到了广泛的应用。基于该技术的示例性新兴系统是UMTS长期演进(LTE),移动WiMAX和一些流行的WiFi变体(例如IEEE 802.11n)。尽管分析和模拟研究表明,OFDMA(与单载波系统相比)增加的符号时间可以在不引起符号间干扰(ISI)的情况下实现更宽的延迟扩展,但是在实际情况下很难量化这种改进。在本文中,我们介绍了一项测量活动的结果,在该结果中,我们研究了多径衰落信道,干扰和速度对符合IEEE 802.16e的移动WiMAX系统的可用用户数据报协议(UDP)数据速率的影响。因此,使用了基于无线电信道仿真器的复杂实验室设置。由此得出用于自适应调制和编码(AMC)方案的最佳开关点。结果表明,对于车载无线电信道,最合适的调制和编码方案的选择以及因此最大可用数据速率的确很大程度上取决于环境参数,例如延迟扩展和用户速度。特别地,可以看出,如果实时多媒体应用需要高数据速率,则使用强前向纠错比高阶调制方案更为重要。

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