Acquisition and mobility operational scenarios in the MUOS system

Nicole Loomis, D. Bossler
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Abstract

The Mobile User Objective System (MUOS) is largely based on 3rd Generation Partnership Project (3GPP) standards, however, these standards are intended for terrestrial mobile communications networks. As a result of incorporating geosynchronous satellites into the design (e.g., extended propagation delays, power, cell size), modifications to the 3GPP procedures, such as moving control of cell selection, are needed. The operational scenarios related to acquisition and mobility are dictated by the operational mode of a MUOS radio - point-to-point, group, or Emissions Control (EMCON) - as well as whether a MUOS service (e.g., ‘voice call’) is currently active. This paper describes the operational implications of mobility and acquisition on MUOS radios, and the design challenges that are met to satisfy Customer anticipated levels of service. In order to support the three operational modes with common procedures, the MUOS design for acquisition and mobility has moved control of the mobility event from the radio (standard 3GPP operation) to the Ground Segment (GS); resulting in message and data flow modifications specific to MUOS. Additionally, whereas 3GPP operation does not notify users of a mobility event, the MUOS does provide that knowledge for the user involved in a mobility event as well as other users impacted (e.g., the talker in a group call informs the listeners of its mobility event).
MUOS系统中的获取和移动操作场景
移动用户目标系统(MUOS)主要基于第三代合作伙伴计划(3GPP)标准,然而,这些标准是为地面移动通信网络设计的。由于将地球同步卫星纳入设计(例如,扩展传播延迟、功率、小区大小),需要对3GPP程序进行修改,例如小区选择的移动控制。与获取和移动性相关的操作场景取决于MUOS无线电的操作模式——点对点、组或发射控制(EMCON)——以及MUOS服务(例如“语音呼叫”)当前是否处于活动状态。本文描述了MUOS无线电的移动性和获取的操作含义,以及满足客户预期服务水平的设计挑战。为了用通用程序支持三种操作模式,用于采集和机动的MUOS设计已将机动事件的控制从无线电(标准3GPP操作)转移到地面段(GS);导致特定于MUOS的消息和数据流修改。此外,尽管3GPP操作不会将移动事件通知用户,但MUOS确实为参与移动事件的用户以及受影响的其他用户提供了相关知识(例如,组呼叫中的通话者将其移动事件通知侦听器)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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