为便携设备服务的蜂窝系统设计中的备选方案

S. Halpern
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引用次数: 3

摘要

探讨了在蜂窝系统中服务低功耗手持便携式无线电话的系统设计方案。对于频率很少或没有重用的系统,考虑了两种流行的设计。在一种设计中,全向天线采用全覆盖空间分集和高灵敏度接收机。在另一种设计中,60度扇形接收天线采用扇形空间分集。尽管这两种设计都能够弥补手持便携设备的低辐射功率(0.6瓦),但更复杂的扇区方案在服务质量上表现出更大的可变性,因为它将来自不同扇区的天线的信号结合在一起。采用这两种方法,尽管便携式的辐射功率较低,但便携式到地面方向的质量通常优于地面到便携式方向的质量。在具有显著频率重用的系统中为便携设备提供服务的主要困难是同信道干扰。小区分割、射频功率平衡和动态射频功率控制需要控制干扰,并允许便携式和车载移动设备在同一组信道上运行。小区站点上的分集组合安排在服务扇区上提供完全的分集覆盖(即每个扇区两个天线),比那些将来自不同扇区的天线的信号组合在一起的安排提供更好的抗干扰保护。采用后一种布置方式,由于小区站点接收器容易受到来自相邻扇区天线和服务扇区天线的干扰,因此不能充分发挥小区扇区的优势。
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Alternatives in cellular system design for serving portables
System design alternatives for serving low-power hand-held portable radiotelephones in cellular systems are explored. Two popular designs are considered for systems with little or no frequency reuse. In one design, omnidirectional antennas are used with full-coverage space diversity and receivers with high sensitivity. In the other design, 60-degree sector receive antennas are used with sectorized space diversity. Although both designs are able to compensate for the low radiated power (0.6 watts) of hand-held portables, the more complex sectorized scheme shows somewhat greater variability in service quality because it combines signals from antennas looking into different sectors. With both methods, quality in the portable-to-land direction will generally be better than quality in the land-to-portable direction despite the low radiated power of the portable. The major difficulty with serving portables in systems that have significant frequency reuse is co-channel interference. Cell sectorization, RF power balancing, and dynamic RF power control are needed to control interference and allow portables and vehicular mobiles to operate on the same set of channels. Diversity combining arrangements at the cell site that provide full diversity coverage over the serving sector (i.e., two antennas per sector) offer better protection against interference than do those that combine signals coming from antennas that are looking into different sectors. With the latter arrangement, the full benefit of cell sectorization cannot be realized since the cell-site receiver is susceptible to interference coming into adjacent sector antennas as well as interference coming into the serving sector antenna.
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