An optimizable guard-channel-based handover procedure for mobile microcellular systems

M. Ruggieri, D. Giancristofaro, F. Graziosi, F. Santucci
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引用次数: 11

Abstract

In mobile macrocellular systems the effectiveness of queueing and/or channel reservation for handover requests has been widely proved. The authors have recently proposed a priority-based handover algorithm for a mixed macro-microcellular environment. The effectiveness of a combined use of handover request queueing at microcell level and handover channel reservation at macrocell level has been shown. However, the use of reserved (guard) channels for handover requests needs for a proper compromise between system performance and frequency reuse efficiency. In fact, any channel which is reserved for handovers contributes to decrease the effectiveness of the system frequency reuse In the present paper the effects of handover reserved channels on system performance are explored, in particular by varying the frequency reuse plan of a mixed macro-microcellular system. An optimization potentiality of guard channel allocation is identified. The latter represents an important step toward the design of handover procedures aimed at a proper compromise between frequency reuse efficiency and handover protection in critical urban environments. plan.
一种可优化的基于保护信道的移动微蜂窝系统切换程序
在移动大蜂窝系统中,排队和/或信道预留的有效性已经得到了广泛的证明。作者最近提出了一种基于优先级的宏微细胞混合环境切换算法。在微蜂窝水平上联合使用切换请求队列和在宏蜂窝水平上联合使用切换信道保留的有效性已经得到了证明。然而,为切换请求使用保留(保护)通道需要在系统性能和频率重用效率之间做出适当的妥协。实际上,任何为切换保留的信道都会降低系统频率复用的有效性。本文探讨了切换保留信道对系统性能的影响,特别是通过改变宏-微蜂窝混合系统的频率复用计划。确定了保护信道分配的优化潜力。后者是设计交接程序的重要一步,目的是在关键的城市环境中,在频率重用效率和交接保护之间做出适当的妥协。计划。
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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