Title :
Reduced out-of-band radiation-based filter optimization for UFMC systems in 5G - Withdrawn
Author :
Mukherjee, Mithun ; Kumar, Vikas ; Kumar, Gagnesh ; Kumar, Prashant ; Matam, Rakesh
Author_Institution :
Dept. of Electron. & Commun. Eng., Nat. Inst. of Technol., Hamirpur, India
Abstract :
Universal-filtered multi-carrier (UFMC) technique is considered as a potential candidate for future communication systems due to its robustness against inter-carrier interference (ICI), suitability for non-contiguous fragmented available spectrum resources and low latency scenario in 5G network. In this work, we present a novel pulse shaping approach in UFMC to reduce the spectral leakage to nearby subbands used for same or other users with low complexity and high throughput. In the proposed scheme, we apply Bohman filter-based pulse shaping with combination of antipodal symbol-pairs to the edgesubcarriers of the subbands, and consequently reduce the outof-band radiation. We further optimize the filter co-efficients, which outperforms the current state-of-the art. This scheme offers better signal-to-interference ratio (SIR) to improve the robustness against carrier frequency offset (CFO) for energy saving in loosely synchronized scenario. In addition, we validate the proposed scheme by hardware prototype on a field programmable gate array (FPGA) chip.
Keywords :
5G mobile communication; computational complexity; energy conservation; field programmable gate arrays; filtering theory; intercarrier interference; optimisation; pulse shaping; spectral analysis; telecommunication power management; 5G network; Bohman filter-based pulse shaping approach; CFO; FPGA chip; ICI; SIR; UFMC system; antipodal symbol-pair combination; carrier frequency offset; energy saving; field programmable gate array chip; intercarrier interference; reduced out-of-band radiation-based filter optimization; signal-to-interference ratio; spectral leakage reduction; universal-filtered multicarrier technique; Field programmable gate arrays; OFDM; Prototypes; Radiation detectors; Read only memory;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2015 IEEE 81st
Conference_Location :
Glasgow
DOI :
10.1109/VTCSpring.2015.7146046