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A new PUCCH resource mapping method in interband TDD carrier aggregation systems

机译:带间TDD载波聚合系统中一种新的PUCCH资源映射方法

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In order to support a higher peak data rate, carrier aggregation (CA) is implemented into Long Term Evolution Advanced (LTE-A) systems to provide sufficient bandwidth for data transmission. In Time Division Duplexing (TDD) CA systems, aggregation of Component Carriers (CCs) with different TDD configurations is necessary due to the coexistence with legacy TDD systems. To achieve the peak data rate of Secondary Cell (SCell) in case of cross-carrier scheduling, the Physical Downlink Shared CHannel (PDSCH) hybrid automatic repeat request (HARQ) timing of SCell should follow its own PDSCH HARQ timing. Meanwhile, Primary Cell (PCell) still uses its own PDSCH HARQ timing. However, using different PDSCH HARQ timing between PCell and SCell may lead to Physical Uplink Control CHannel (PUCCH) resource mapping collision, which sacrifices downlink (DL) peak data rate and increases transmission latency for the reason of PDSCH HARQ feedback failure. In this paper, a new implicit PUCCH resource mapping method is proposed to avoid PUCCH collision in inter-band TDD CA systems. ENB and user equipment (UE) re-allocate PUCCH resources for each DL subframe on SCell. By using this proposal, PUCCH collision for cross-carrier scheduling in TDD CA systems can be completely eliminated without introducing significant PUCCH overhead increase.
机译:为了支持更高的峰值数据速率,在高级长期演进(LTE-A)系统中实施了载波聚合(CA),以提供足够的带宽用于数据传输。在时分双工(TDD)CA系统中,由于与传统TDD系统共存,因此必须聚合具有不同TDD配置的分量载波(CC)。为了在跨载波调度的情况下达到辅助小区(SCell)的峰值数据速率,SCell的物理下行链路共享信道(PDSCH)混合自动重传请求(HARQ)时序应遵循其自己的PDSCH HARQ时序。同时,主小区(PCell)仍然使用其自己的PDSCH HARQ定时。然而,在PCell和SCell之间使用不同的PDSCH HARQ定时可能导致物理上行链路控制信道(PUCCH)资源映射冲突,这由于PDSCH HARQ反馈失败的原因而牺牲了下行链路(DL)峰值数据速率并增加了传输等待时间。本文提出了一种新的隐式PUCCH资源映射方法,以避免在带间TDD CA系统中发生PUCCH冲突。 ENB和用户设备(UE)在SCell上为每个DL子帧重新分配PUCCH资源。通过使用该提议,可以完全消除TDD CA系统中用于跨载波调度的PUCCH冲突,而不会引起显着的PUCCH开销增加。

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