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Method for Evaluation of Outage Probability on Random Access Channel in Mobile Communication Systems

机译:移动通信系统中随机接入信道中断概率的评估方法

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Method for Evaluation of Outage Probability on Random Access Channel in Mobile Communication Systems In order to access the cell in all mobile communication technologies a so called random-access procedure is used. For example in GSM this is represented by sending the CHANNEL REQUEST message from Mobile Station (MS) to Base Transceiver Station (BTS) which is consequently forwarded as an CHANNEL REQUIRED message to the Base Station Controller (BSC). If the BTS decodes some noise on the Random Access Channel (RACH) as random access by mistake (so- called ‘phantom RACH') then it is a question of pure coincidence which èstablishment cause’ the BTS thinks to have recognized. A typical invalid channel access request or phantom RACH is characterized by an IMMEDIATE ASSIGNMENT procedure (assignment of an SDCCH or TCH) which is not followed by sending an ESTABLISH INDICATION from MS to BTS. In this paper a mathematical model for evaluation of the Power RACH Busy Threshold (RACHBT) in order to guaranty in advance determined outage probability on RACH is described and discussed as well. It focuses on Global System for Mobile Communications (GSM) however the obtained results can be generalized on remaining mobile technologies ( ie WCDMA and LTE).
机译:用于评估移动通信系统中的随机接入信道上的中断概率的方法为了在所有移动通信技术中接入小区,使用了所谓的随机接入过程。例如,在GSM中,这是通过从移动台(MS)向基站收发信台(BTS)发送CHANNEL REQUEST消息来表示的,该消息随后作为CHANNEL REQUIRED消息转发给基站控制器(BSC)。如果BTS错误地将随机访问信道(RACH)上的某些噪声解码为随机访问(所谓的“幻像RACH”),那么这纯粹是巧合的问题,这是BTS认为已经认识到的“稳定原因”。典型的无效信道访问请求或幻像RACH的特征在于立即分配过程(SDCCH或TCH的分配),此过程之后没有从MS向BTS发送建立指示。本文还描述并讨论了一种用于评估Power RACH繁忙阈值(RACHBT)的数学模型,以便提前保证确定的RACH中断概率。它侧重于全球移动通信系统(GSM),但是所获得的结果可以推广到其余的移动技术(即WCDMA和LTE)上。

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