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CIR improvement in a Cellular Mobile System using Beamforming and Power Control

机译:使用波束形成和功率控制的蜂窝移动系统中的CIR改善

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Cochannel interference is the most important issue in cellular mobile systems. It can be reduced by increasing the frequency re-use distance among the cochannel cells while keeping constant cell radius which improves the quality of a cellular mobile system. But this will decrease the overall network capacity because cluster size, which is inversely proportional to network capacity, also increases. Beamforming using antenna arrays is an effective technique to reduce cochannel interference while cluster size remains the same. Here first we use beamforming technique at the base station to reduce uplink cochannel interference and hence improvement in uplink carrier to interference ratio (CIR). Then we use power control together with the beamforming technique for further improvement in CIR and hence increase in network capacity. Both beamforming and power control parameters are updated iteratively in our proposed algorithm so that they jointly increase the network capacity. There are many other advantages of beamforming and power control such as saying in power of mobile station but here we focus only on CIR Improvement because it is the most common parameter in all access schemes like FDMA, TDMA, CDMA and SDMA.
机译:Cochannel干扰是蜂窝移动系统中最重要的问题。通过增加Cochannel细胞之间的频率重新使用距离,同时保持恒定的小区半径,可以减少,这提高了蜂窝移动系统的质量。但这将降低整体网络容量,因为群集大小与网络容量成反比,也增加。使用天线阵列的波束成形是减少Cochannel干扰的有效技术,而簇大小保持不变。这里首先我们在基站上使用波束成形技术来减少上行链路Cochannel干扰,因此在上行链路载波中改进到干扰比(CIR)。然后,我们将功率控制与波束成形技术一起使用,以进一步改进CiR,因此增加网络容量。波束成形和功率控制参数均以迭代地更新,以便它们共同提高网络容量。波束成形和功率控制有许多其他优点,例如移动台的电源,但在这里我们仅关注CIR改善,因为它是FDMA,TDMA,CDMA和SDMA等所有访问方案中最常见的参数。

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