Title :
Robust UE Receiver with Interference Cancellation in LTE Advanced Heterogeneous Network
Author :
Priyanto, Basuki E. ; Kant, Shashi ; Rusek, Fredrik ; Sha Hu ; Jianjun Chen ; Wugengshi, Chris
Author_Institution :
Lund Res. & Design Center, Huawei Technol. Sweden AB, Lund, Sweden
Abstract :
Heterogeneous network (HetNet) deployment is a key feature to increase the network capacity in LTE- Advanced and systems beyond. One major obstacle is the interference from neighbor base-stations which can significantly degrade the system performance. In this paper, we present downlink interference mitigation and cancellation algorithms for HetNets in the so-called almost blank subframe (ABS) scenario. In the ABS scenario, one must differentiate between two cases, namely (1) the non- colliding case: the common reference symbols (CRS) of the serving and the dominant interfering cell are not overlapped, and (2) the colliding case: the CRS of the serving cell and the dominant interfering cell are overlapped. For case (1) we propose a robust equalizer and a low-complexity variant of it. For case (2) we present the application of the space alternating generalized expectation-maximization (SAGE) with a maximum a-posteriori (MAP) criterion. Based on extensive realistic link-level simulations, the outcome for case (1) is that the proposed robust equalization technique is almost as good as the receiver with traditional CRS interference cancellation (IC) but with lower complexity and latency. For case (2), we find that the SAGE-MAP with three SAGE cycles/iterations is sufficient to achieve the same performance as the receiver with ideal CRS-IC.
Keywords :
Long Term Evolution; expectation-maximisation algorithm; interference suppression; maximum likelihood estimation; radio receivers; ABS scenario; CRS interference cancellation; CRS-IC; HetNet deployment; LTE advanced heterogeneous network; SAGE-MAP; almost blank subframe scenario; base-stations; colliding case; common reference symbols; dominant interfering cell; downlink interference mitigation algorithms; low-complexity variant; maximum a-posteriori criterion; network capacity; non-colliding case; robust UE receiver; robust equalizer; serving cell; space alternating generalized expectation-maximization; Channel estimation; Equalizers; Interference; Receiving antennas; Robustness; Transmitting antennas;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2013 IEEE 78th
Conference_Location :
Las Vegas, NV
DOI :
10.1109/VTCFall.2013.6692396