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Comparing frequency planning against 1/spl times/3 and 1/spl times/1 re-use in real frequency hopping networks

机译:将频率规划与实际跳频网络中1 / spl times / 3和1 / spl times / 1重用进行比较

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On the one hand, the potential of radio link control options like frequency hopping, power control and discontinuous transmission for capacity increase in GSM mobile radio networks has been extensively studied by several authors using computer simulations in homogeneous hexagonal networks. Unfortunately, some idealistic assumptions on these network models have a substantial drawback on the practical relevance of the simulation results. On the other hand, many field trials and regular network operation have proven very good results in terms of both network quality and capacity when applying radio link options in tight frequency re-use. But there, systematic investigations are hardly feasible. Therefore, we present results of close-to-reality simulations of FH networks showing that FH, PC and DTX can largely improve system capacity in real non-homogeneous networks by as much as 200%. We systematically investigate both advanced frequency assignments at varying re-use and frequency assignments in cluster 1/spl times/3 and 1/spl times/1. Our results reveal some aspects contrasting widely spread views on implementing FH in real networks. From our investigations we deduct recommendations concerning the optimum approach of using frequency hopping, power control and discontinuous transmission in GSM networks.
机译:一方面,几位作者在同质六边形网络中使用计算机模拟,已经广泛研究了GSM移动无线电网络中诸如跳频,功率控制和不连续传输之类的无线电链路控制选项对容量增加的潜力。不幸的是,对这些网络模型的一些理想假设在模拟结果的实际相关性上有很大的缺陷。另一方面,当在严格的频率复用中应用无线电链路选项时,在网络质量和容量方面,许多现场试验和常规网络运行都证明了非常好的结果。但是,在那里进行系统的调查几乎是不可行的。因此,我们提出了FH网络的逼真度仿真结果,结果表明FH,PC和DTX可以在实际的非均匀网络中最大程度地提高系统容量200%。我们系统地研究了在重复使用中的高级频率指配和群集1 / spl times / 3和1 / spl times / 1中的频率指配。我们的结果揭示了一些方面,与在实际网络中实施FH的广泛观点形成了鲜明对比。从我们的调查中,我们推断出有关在GSM网络中使用跳频,功率控制和不连续传输的最佳方法的建议。

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