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Effective MAC state transition for the mobile station power saving in 3G mobile communication systems

机译:有效的MAC状态转换,以节省3G移动通信系统中的移动站功耗

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The control hold mode from cdma2000 1x systems has been adapted to the 1xEV-DV (evolution data and voice) systems because it has a lot of benefits such as power saving, reducing of overload and channel interferences, etc. However d1xEV-DV system does not fully capture the benefits from control hold mode, because the MS has to do continuous monitoring the F-PDCCH indicating whether the BS sends packet data or not. That is, the MS has to do monitoring the F-PDCCH (forward packet data control channel) continuously to capture the MAC ID while in control hold mode like as an operation in active mode. This continuous monitoring of the F-PDCCH causes higher power consumption and gives an overload to the decoder block at the MS side. In this paper to resolve these problems, we propose a new channel, F-WUCH (forward wake-up channel), to maximize the power saving of the MS, to minimize the interferences and to reduce the overhead from the continuous monitoring of the F-PDCCH in the control hold mode.
机译:cdma2000 1x系统的控制保持模式已适应1xEV-DV(演进数据和语音)系统,因为它具有许多优点,例如节省了功率,减少了过载和信道干扰等。但是d1xEV-DV系统确实有因为MS必须连续监视指示BS是否发送分组数据的F-PDCCH,所以不能完全获得控制保持模式的益处。即,MS必须在控制保持模式下(如在活动模式下的操作),连续地监视F-PDCCH(前向分组数据控制信道)以捕获MAC ID。对F-PDCCH的这种连续监视导致更高的功耗,并给MS侧的解码器块带来了过载。在本文中,为解决这些问题,我们提出了一个新的信道F-WUCH(前向唤醒信道),以最大程度地节省MS的功率,最大程度地减少干扰,并减少对F进行连续监视的开销。 -在控制保持模式下的PDCCH。

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