Capacity analysis of a PMR system with DAB downlink

E. Sengul, Başak Can, N. Akar, Y. Z. Ider, H. Koymen
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引用次数: 1

Abstract

Several trunked private mobile radio (PMR) systems have been designed over the last decade, most of which have symmetric downlink and uplink channel capacities. These systems may not be spectrally efficient in case of group or broadcast-based voice and data calls, a common feature of PMR systems. We propose a new asymmetric PMR system comprising a wideband OFDM-based downlink and a narrowband uplink, which not only achieves a better spectral efficiency but also can support high bit rate multimedia applications. The system is shown to have high trunking efficiency since all users are assumed to use the pool of channels available in the wideband downlink. In this paper, we study the performance and capacity of a private mobile radio system using a digital audio broadcasting (DAB) downlink. In particular, we study the efficiency of such a system for voice calls using voice activity detection and statistical multiplexing. Moreover, we show that, the efficiency of the system can significantly increase, if the incoming calls, which can not find an available channel, are allowed to wait a certain amount of time before occupying a channel.
带有DAB下行链路的PMR系统容量分析
在过去的十年中,已经设计了几种集群专用移动无线电(PMR)系统,其中大多数具有对称的下行链路和上行信道容量。这些系统在群发或基于广播的语音和数据呼叫(PMR系统的一个共同特征)的情况下,频谱效率可能不高。本文提出了一种由宽带ofdm下行链路和窄带上行链路组成的非对称PMR系统,该系统不仅具有更好的频谱效率,而且能够支持高比特率的多媒体应用。该系统具有很高的集群效率,因为所有用户都假设使用宽带下行链路中可用的信道池。在本文中,我们研究了使用数字音频广播(DAB)下行链路的专用移动无线电系统的性能和容量。特别地,我们使用语音活动检测和统计复用来研究这种语音呼叫系统的效率。此外,我们还表明,如果允许无法找到可用信道的入局呼叫在占用信道之前等待一定的时间,则可以显着提高系统的效率。
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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