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Convergence Analysis of Genetic Algorithm Applied for Dynamic Optimization of Terminal to Base Station Assignment in Satellite Fed BFWA Systems

机译:终端临界终端终端枢纽分配动态优化遗传算法的收敛性分析,BFWA系统

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In point-multipoint (PmP) systems the signal to interference and noise ratio (SINR) highly depends on the assignment of terminal stations (TS) to base stations (BS). The Broadband Fixed Wireless Access (BFWA) systems operate at high carrier frequencies, i.e. microwave domain. In this frequency range wave propagation is highly influenced by precipitation, especially rain. Feeding of base stations can be solved with fiber optic or e.g. with satellite. In this work satellite feeding is assumed, which avoids land demolition caused by fiber deployment, but its drawback is the precipitation attenuation of Earth-space links. Applying site diversity can mitigate rain attenuation effects; however, known site diversity methods are only considering downlink channel quality and during site diversity terminals do not consider decisions of each other. By site diversity when downlink signal level decreases below a threshold, terminal station can be assigned to an other base station, though in point-multipoint systems this base station re-assignment can raise uplink interferences at other terminals. Present contribution provides a special site diversity which adopts genetic algorithm (GA) to simultaneously optimize downlink and uplink SINR values in BFWA. A convergence analysis method of the applied genetic algorithm is provided using Markov chain model.
机译:在点多点(PMP)系统中,对干扰和噪声比(SINR)的信号高度取决于终端站(TS)到基站(BS)的分配。宽带固定无线接入(BFWA)系统在高载波频率下操作,即微波域。在这种频率范围的波动中,波动受到降水,尤其是雨水的影响。可以用光纤或例如,解决基站的喂养。用卫星。在这项工作中,假设卫星喂养,这避免了由光纤部署引起的土地拆除,但其缺点是地球空间链路的降水衰减。施用现场多样性可以减轻雨衰减效果;然而,已知的站点多样性方法仅考虑下行链路信道质量,并且在现场分集期间,终端不考虑彼此的决定。通过站点多样性,当下行链路信号电平降低阈值以下时,可以将终端站分配给其他基站,但在点多点系统中,该基站重新分配可以提高其他终端的上行链路干扰。目前的贡献提供了一种特殊的站点多样性,其采用遗传算法(GA)来同时优化BFWA中的下行链路和上行链路SINR值。使用马尔可夫链模型提供了应用遗传算法的收敛分析方法。

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