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Search Space Design of Enhanced Physical Downlink Control Channel for Long Term Evolution Advanced System

机译:长期演进高级系统增强型物理下行控制信道搜索空间设计

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This paper focuses on investigating the search space design of Enhanced Physical Downlink Control CHannel (EPDCCH), which is introduced in Long Term Evolution-Advanced (LTE-A) system to increase the capacity of the downlink control channel. Since EPDCCH is frequency-division-multiplexed with downlink data channel, resource utilization efficiency is a very important issue in addition to blocking probability. This paper proposes the innovative methods of locating the search spaces of EPDCCH with different transmission schemes, i.e. distributed transmission and localized transmission, considering the UE complexity, the capacity of control channel and the impacts on Physical Downlink Shared Channel (PDSCH). By simulation results, it is proven that the proposed methods could get higher resource utilization and lower blocking probability while maintain the same UE complexity in blind decoding.
机译:本文重点研究增强型物理下行链路控制信道(EPDCCH)的搜索空间设计,该技术在高级长期演进(LTE-A)系统中引入,以增加下行链路控制信道的容量。由于EPDCCH与下行链路数据信道进行频分复用,所以除了阻塞概率之外,资源利用效率也是非常重要的问题。考虑到UE的复杂性,控制信道的容量以及对物理下行共享信道(PDSCH)的影响,本文提出了一种创新的方法来定位具有不同传输方案(即分布式传输和局部传输)的EPDCCH的搜索空间。仿真结果表明,在盲解码中,在保持相同的UE复杂度的前提下,所提方法可以获得更高的资源利用率和更低的阻塞概率。

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