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Over-The-Air Phase Synchronization Mechanism for LTE Small Cells in Interference-Limited Scenarios

机译:受限干扰情形下LTE小型小区的空中相位同步机制

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Phase synchronization is one of the most important features needed in some of the techniques envisaged for LTE-Advanced, such as Cooperative Multi-Point (CoMP) or enhanced inter-cell interference coordination (eICIC), among others. Phase synchronization can be accomplished through the use of IEEE 1588v2 or GPS receivers. However when dealing with small cells deployed in an uncoordinated manner, such as Home-eNBs, the use of IEEE 1588v2 is not always feasible due to delay and jitter impairments which can be present in xDSL lines. Moreover, GPS receivers are not operative in indoors. The present paper describes an over-the-air synchronization mechanism whereby already synchronized LTE macro cells transmit a new physical signal on a subset of yet unused resource elements, so that small cells can acquire suitable phase synchronization. As the involved resources are reserved and not used for transmission, interference is much lower and signal to noise ratio can be improved compared to traditional network listening modes. Simulations employing a simple proposed receiver structure show very good results in channels where the delay spread is within the length of the cyclic prefix.
机译:相位同步是LTE-Advanced所设想的某些技术(例如协作多点(CoMP)或增强的小区间干扰协调(eICIC)等)中所需的最重要的功能之一。可以通过使用IEEE 1588v2或GPS接收器来实现相位同步。但是,当处理以不协调方式部署的小型小区(如家庭eNB)时,由于xDSL线路中可能存在延迟和抖动损害,因此IEEE 1588v2的使用并不总是可行的。此外,GPS接收器在室内无法使用。本文介绍了一种空中同步机制,通过该机制,已经同步的LTE宏小区在尚未使用的资源元素的子集上发送新的物理信号,以便小型小区可以获得合适的相位同步。与传统的网络侦听模式相比,由于所涉及的资源被保留并且不用于传输,因此干扰要低得多,并且可以提高信噪比。采用简单提出的接收器结构的仿真在延迟扩展在循环前缀的长度内的信道中显示出非常好的结果。

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