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Performance of simulcast wireless techniques for personal communication systems

机译:用于个人通信系统的联播无线技术的性能

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Broadband analog transport facilities using fiber or fiber/coax cable can play a significant role in the evolution of the network infrastructure for personal communications services (PCS). Low-power PCS systems require a dense grid of radio ports to provide connectivity to the telephone network. A simulcast technique can be used in such systems to permit low rates of handoff (no handoff within each simulcast area) and sharing of hardware resources among multiple radio ports. This paper presents a simulation analysis of the cochannel interference and noise performance as well as the resource sharing benefit of a simulcast PCS system. Our investigation shows that the the impact of multiple antenna noise in a simulcast system is offset by the improved signal-to-interference ratio brought about by distributed antennas. Even with distributed antennas, multiple antenna noise places a limit on the maximum number of radio ports that can be assigned to each simulcast group. This limit, however, is shown to have little impact on the achievable resource sharing benefit of simulcasting (i.e., grouping beyond this limit has diminishing returns). A saving of 40% to 60%, in terms of the required central hardware resources, is typical in suburban environments.
机译:使用光纤或光纤/同轴电缆的宽带模拟传输设施可以在个人通信服务(PCS)网络基础设施的发展中发挥重要作用。低功率PCS系统需要密集的无线电端口网格以提供与电话网络的连接。可以在这种系统中使用联播技术,以允许较低的切换速率(在每个联播区域内不进行切换),并在多个无线电端口之间共享硬件资源。本文对同频道PCS系统的同信道干扰和噪声性能以及资源共享优势进行了仿真分析。我们的研究表明,在联播系统中,多天线噪声的影响被分布式天线带来的改善的信号干扰比所抵消。即使使用分布式天线,多天线噪声也限制了可分配给每个联播组的最大无线端口数量。但是,该限制对联播可实现的资源共享利益影响不大(即,超出此限制进行分组会减少收益)。就所需的中央硬件资源而言,通常在郊区环境中节省40%至60%。

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