联播集群系统的系统设计

M. Sasuta
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引用次数: 2

摘要

企业和政府组织正在研究更好地管理资源(能源、劳动力、设备等)的方法,从而有助于提高运营效率。许多这类组织正逐渐认识到无线电通信系统在协助资源管理方面所能提供的潜力。为了满足主要私人无线电用户的通信需求,800 MHz集群调度系统提供了许多系统优势,例如明显的用户隐私、简化的无线电操作、更快的信道接入和灵活的机群分区。集群调度系统的基本结构是多址配置;所有的发射机,接收器和控制设备都集中在一个地方。这种同址配置限制了具有大型无线电通信系统需求的用户的应用。当用户的通信需求超出单个中继站的覆盖范围时,发现同址配置难以有效地实现以满足所有通信需求。有大量通信需求的用户包括石油公司、公用事业公司和大型市政当局。为了满足许多这类用户的需要,将集群调度系统的概念与联播传输技术结合起来,开发了一个广域覆盖系统。这种通信系统提供了同址集群调度系统的所有特征,但允许覆盖范围大大扩展到超越单个基中继站,以包含许多远程中继站。为了有效地合并这些通信系统,使用了无数的技术。广域覆盖的联播通信系统以前是为特殊应用而开发的,因此产生了联播通信方法一般关注领域的指南。开发800MHz的区域。集群调度联播系统为联播系统的开发引入了许多新的领域。以前的联播系统主要只处理语音通信。集群系统利用受同播操作影响的数字信令技术,除了对音频语音信令的预期影响外,还必须对其进行处理。作为联播系统主机的800MHz环境是一个未开发的领域。系统概念和技术问题是800MHz特有的。本文讨论了联播集群系统的应用。
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System design aspects of a simulcast trunked system
Businesses and governmental organizations are researching for means to better manage their resources (energy, labor, equipment, etc.) and thus contribute to operational productivity improvements. Many such organizations are becoming aware of the potentials a radio communication system can afford in the area of assisting resource management. To satisfy the communication needs of major private radio users, an 800 MHz trunked dispatch system offers many system benefits, such as apparent user privacy, simplified radio operation, faster channel access and flexible fleet partitioning. The basic structure of a trunked dispatch system is a co-located configuration; with all the base transmitters, receivers and control equipment resident at a single site. This co-located configuration limits the applications for the user with large radio communication system requirements. The user with communications needs extending beyond the coverage contour of a single base repeater site finds the co-located configuration awkward to implement efficiently to satisfy all the communications needs. Examples of users having large communication needs would include petroleum companies, public utilities, and large municipalities. To address the needs of many such users, a wide area coverage system is developed by merging the concepts of a trunked dispatch system with simulcast transmit techniques. This communication system offers all the features of a co-located trunked dispatch system, but allows the coverage area to greatly extend beyond the single base repeater site to encompass many remote repeater sites. To effectively merge these communication systems, a myriad of technologies is employed. Wide area coverage simulcast communication systems have been previously developed for special applications, thus producing a guide to general areas of concern of a simulcast communication approach. The development of areas of the 800MHz. trunked dispatch simulcast system introduces many areas new to simulcast system development. Previous simulcast systems have dealt predominently with voice communication solely. A trunked system utilizes digital signalling techniques which are affected by the simulcast operation and must be addressed in addition to the expected effects upon the audio voice signalling. The very 800MHz, environment as a host to a simulcast system is an unexplored area. The system concepts and technical issues unique to an 800MHz. simulcast trunked system applications are to be discussed in this paper.
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