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LLR-based interference suppression for the physical downlink control channel of LTE-A

机译:LTE-A物理下行控制信道基于LLR的干扰抑制

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Due to spectrum constraints most of cellular networks are deployed in frequency reuse one. In that scenario co-channel interference from neighboring cells becomes a limiting factor for the performance of all downlink physical channels. Therefore, the problem of interference suppression is being considered as one of the most important issues of modern wireless communication systems. In Long-Term Evolution Advanced (LTE-A) systems, several interference suppression techniques are introduced to cope with interference issues of the physical downlink data channel. However, the key problem of interference suppression for the physical downlink control channel (PDCCH), which carries downlink and uplink scheduling information, is not sufficiently addressed in LTE-A systems. In principle, receiver structures employed for interference suppression for the data channel can be reused to decode control channel transmissions. However, a number of issues specific only to the control channel (e.g., per subcarrier interference power boosting and random interference hit from the neighboring cell) should be considered in the design of interference suppression algorithms. In this paper, we investigate the performance of Log-Likelihood Ratio (LLR)-based interference suppression for the physical downlink control channel of LTE-A. The simulation results show that the proposed LLR calculation scheme provides remarkable error rate performance improvement compared to the conventional LLR calculation scheme.
机译:由于频谱限制,大多数蜂窝网络被部署在频率复用中。在那种情况下,来自相邻小区的同信道干扰成为所有下行链路物理信道性能的限制因素。因此,干扰抑制问题被认为是现代无线通信系统中最重要的问题之一。在高级长期演进(LTE-A)系统中,引入了几种干扰抑制技术以应对物理下行链路数据信道的干扰问题。然而,在LTE-A系统中,未充分解决携带下行链路和上行链路调度信息的物理下行链路控制信道(PDCCH)的干扰抑制的关键问题。原则上,用于数据信道干扰抑制的接收器结构可以重新用于解码控制信道传输。然而,在干扰抑制算法的设计中应考虑仅针对控制信道的许多问题(例如,每个子载波的干扰功率提升和来自相邻小区的随机干扰)。在本文中,我们研究了基于对数似然比(LLR)的干扰抑制对LTE-A物理下行控制信道的性能。仿真结果表明,与传统的LLR计算方案相比,所提出的LLR计算方案可以显着提高误码率性能。

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