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Characterization of interfade duration for satellite communication systems design and optimization in a temperate climate

机译:温带气候下卫星通信系统设计和优化的干扰持续时间特性

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The characterization of the fade dynamics on Earth-satellite links is an important subject when designing the so called fade mitigation techniques that contribute to the proper reliability of the satellite communication systems and the customers' quality of service (QoS). The interfade duration, defined as the period between two consecutive fade events, has been only poorly analyzed using limited data sets, but its complete characterization would enable the design and optimization of the satellite communication systems by estimating the system requirements to recover in time before the next propagation impairment. Depending on this analysis, several actions can be taken ensuring the service maintenance. In this paper we present for the first time a detailed and comprehensive analysis of the interfade events statistical properties based on 9years of in-excess attenuation measurements at Ka band (19.7GHz) with very high availability that is required to build a reliable data set mainly for the longer interfade duration events. The number of years necessary to reach the statistical stability of interfade duration is also evaluated for the first time, providing a reference when accessing the relevance of the results published in the past. The study is carried out in Aveiro, Portugal, which is conditioned by temperate Mediterranean climate with Oceanic influences.
机译:在设计所谓的衰减缓解技术时,表征卫星地球链路上的衰减动力学是重要的课题,这些技术有助于卫星通信系统的适当可靠性和客户的服务质量(QoS)。衰落持续时间(定义为两个连续的衰落事件之间的时间间隔)仅使用有限的数据集进行了较差的分析,但是其完整的特性将通过估计系统需求来及时恢复,从而能够设计和优化卫星通信系统。下一个传播障碍。根据此分析,可以采取几种措施来确保服务维护。在本文中,我们首次基于在Ka频段(19.7GHz)进行9年的超额衰减测量以及非常高的可用性,对衰落事件的统计特性进行了详细而全面的分析,这主要是建立可靠数据集所必需的对于较长的干扰持续时间事件。首次评估达到间隔时间统计稳定性所需的年数,为访问过去发表的结果的相关性提供参考。这项研究是在葡萄牙的阿威罗(Aveiro)进行的,该地区受到地中海性温带气候和海洋的影响。

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