首页> 外文期刊>International Journal of Information Acquisition >SUPPORTING DISTRESS SIGNALS OVER LOW EARTH ORBIT MOBILE SATELLITE SYSTEMS FOR EMERGENCY INFORMATION ACQUISITION
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SUPPORTING DISTRESS SIGNALS OVER LOW EARTH ORBIT MOBILE SATELLITE SYSTEMS FOR EMERGENCY INFORMATION ACQUISITION

机译:在近地轨道移动卫星系统上支持遇难信号以获取紧急信息

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摘要

Low earth orbit (LEO) satellite systems allow a broad range of services to be provided using small, lightweight, cellular-like portable telephones. Exploiting LEO satellites to support distress signals for aircrafts, ships and international travelers is explored in the current paper. A multi-service priority-oriented algorithm is proposed for handling voice, data and emergency signals over LEO satellites. The emergency signal is privileged with service priority so that rescue operation can be carried out as soon as possible. The priority mechanism includes channel reservation as well as joining a queue if no free channel is available as long as the request is roaming in the handover area. In addition, a simplified but efficient approach is suggested for locating the object of an imminent danger situation. As LEO satellites are non-geostationary, the visible period of each spot-beam is small. Consequently, a teletraffic model, that accommodates the mobility of spot-beams as well as the resulting handover rate, is developed in order to gauge the performance of the proposed algorithm. Numerical results for access denying and service-dropping rates are presented for nominal system parameters.
机译:低地球轨道(LEO)卫星系统允许使用小型,轻便,类似蜂窝的便携式电话提供广泛的服务。本文探讨了利用LEO卫星来支持飞机,轮船和国际旅客的遇险信号。提出了一种面向多业务优先级的算法,用于处理LEO卫星上的语音,数据和紧急信号。紧急信号具有服务优先权,因此可以尽快执行救援操作。只要请求在切换区域中漫游,优先级机制就包括信道保留以及如果没有空闲信道可用则加入队列。另外,建议一种简化但有效的方法来定位即将发生的危险情况的对象。由于LEO卫星是非对地静止的,因此每个点波束的可见周期很小。因此,为了评估所提出算法的性能,开发了一种电信流量模型,该模型可适应点波束的移动性以及由此产生的切换率。给出了名义系统参数的拒绝访问和服务丢弃率的数值结果。

著录项

  • 来源
    《International Journal of Information Acquisition》 |2013年第4期|1350018.1-1350018.13|共13页
  • 作者单位

    Engineering Sector of Broadcast Egyptian Radio and Television Union, Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt,Computer Engineering Department College of Computer Science and Information Systems Taif University, Kingdom of Saudi Arabia;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt,Department of Electrical Engineering, Faculty of Engineering Albaha University, Kingdom of Saudi Arabia;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt;

    Electrical Engineering Department KACST-TIC in Radio Frequency and Photonics for the e-Society (RFTONICS) King Saud University, Kingdom of Saudi Arabia;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering, Menoufia University Menouf 32952, Egypt,KACST-TIC in Radio Frequency and Photonics for the e-Society (RFTONICS) King Saud University, Kingdom of Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LEO; satellite-cellular; telephone-distress; signal-voice-data-emergency;

    机译:狮子座卫星蜂窝电话遇险;信号语音数据紧急;

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