Performance Investigation of Peak Shrinking and Interpolating the PAPR Reduction Technique for LTE-Advance and 5G Signals

Information (Switzerland) - Tập 11 Số 1 - Trang 20
Somayeh Mohammady1,2, Ronan Farrell1,2, David Malone1,2, John Dooley1,2
1Department of Electronic Engineering, Maynooth Uiversity, Co. Kildare, W23 F2H6 Maynooth, Ireland
2School of Electrical and Electronic Engineering, Technological University Dublin (TU Dublin), D08 X622 Dublin, Ireland

Tóm tắt

Orthogonal frequency division multiplexing (OFDM) has become an indispensable part of waveform generation in wideband digital communication since its first appearance in digital audio broadcasting (DAB) in Europe in 1980s, and it is indeed in use. As has been seen, the OFDM based waveforms work well with time division duplex operation in new radio (NR) systems in 5G systems, supporting delay-sensitive applications, high spectral efficiency, massive multiple input multiple output (MIMO) compatibility, and ever-larger bandwidth signals, which has demonstrated successful commercial implementation for 5G downlinks and uplinks up to 256-QAM modulation schemes. However, the OFDM waveforms suffer from high peak to average power ratio (PAPR), which is not desired by system designers as they want RF power amplifiers (PAs) to operate with high efficiency. Although NR offers some options for maintaining the efficiency and spectral demand, such as cyclic prefix based (CP-OFDM), and discrete Fourier transform spread based (DFT-S-OFDM) schemes, which have limiting effects on PAPR, the PAPR is still as high as 13 dB. This value increases when the bandwidth is increased. Moreover, in LTE-Advance and 5G systems, in order to increase the bandwidth, and data-rate, carrier aggregation technology is used which increases the PAPR the same way that bandwidth increment does; therefore, it is essential to employ PAPR reduction in signal processing stage before passing the signal to PA. In this paper, we investigate the performance of an innovative peak shrinking and interpolation (PSI) technique for reducing peak to average power ratio (PAPR) in orthogonal frequency division multiplexing (OFDM) based signals at waveform generation stage. The main idea behind the PSI technique is to extract high peaks, scale them down, and interpolate them back into the signal. It is shown that PSI technique is a possible candidate for reducing PAPR without compromising on computational complexity, compatible for existing and future telecommunication systems such as 4G, 5G, and beyond. In this paper, the PSI technique is tested with variety of signals in terms of inverse fast Fourier transform (IFFT) length, type of the signal modulation, and applications. Additional work has been carried out to compare the proposed technique with other promising PAPR reduction techniques. This paper further validates the PSI technique through experimental measurement with a power amplifier (PA) test bench and achieves an adjacent channel power ratio (ACPR) of less than –55 dBc. Results showed improvement in output power of PA versus given input power, and furthermore, the error vector magnitude (EVM) of less than 1 % was achieved when comparing of the signal after and before modification by the PSI technique.

Từ khóa


Tài liệu tham khảo

Buritica, A. (2019). From Waveforms to MIMO: 5 Things for 5G New Radio, National Instruments.

(2019, December 21). 5G: New Wave in the IoT Regime. Available online: https://www.microwavejournal.com/articles/ 33187-g-new-wave-in-the-iot-regime.

(2019). Opportunities for High Frequency Materials in 5G and the IoT. Microw. J., 60, 88–96.

Baig, 2017, A Precoding-Based Multicarrier Non-Orthogonal Multiple Access Scheme for 5G Cellular Networks, IEEE Access, 5, 19233, 10.1109/ACCESS.2017.2752804

Rajasekaran, 2019, Resource Allocation-Based PAPR Analysis in Uplink SCMA-OFDM Systems, IEEE Access, 7, 162803, 10.1109/ACCESS.2019.2952071

Carslaw, H.S.H.S. (1921). Introduction to the Theory of Fourier’s Series and Integrals, Macmillan Publishers Ltd.

Levy, 1946, Fourier transform analysis, J. Br. Inst. Radio Eng., 6, 228

Salih, S.M. (2012). FPGA Implementation of Inverse Fast Fourier Transform in Orthogonal Frequency Division Multiplexing Systems. Fourier Transform, IntechOpen. Chapter 6.

Usman, 2018, Joint non-orthogonal multiple access (NOMA) Walsh-Hadamard transform: Enhancing the receiver performance, China Commun., 15, 160, 10.1109/CC.2018.8456460

Prasad, R. (2004). OFDM for Wireless Communications Systems, Artech House.

Rahmatallah, 2013, Peak-To-Average Power Ratio Reduction in OFDM Systems: A Survey And Taxonomy, IEEE Commun. Surv. Tutor., 15, 1567, 10.1109/SURV.2013.021313.00164

May, T., and Rohling, H. (1998, January 21–21). Reducing the peak-to-average power ratio in OFDM radio transmission systems. Proceedings of the VTC ’98, 48th IEEE Vehicular Technology Conference. Pathway to Global Wireless Revolution (Cat. No.98CH36151), Ottawa, ON, Canada.

Texas Instruments (2009). GC5328 Datasheet, Low-Power Wideband Digital Predistortion Transmit Processor, Texas Instruments. Available online: http://www.ti.com/lit/ds/slws218a/slws218a.pdf.

Chen, L., Chen, W., Liu, Y., Yang, C., and Feng, Z. (2019). An Efficient Directional Modulation Transmitter With Novel Crest Factor Reduction Technique. IEEE Microw. Wirel. Compon. Lett., 1–3.

Jones, 1994, Block coding scheme for reduction of peak to mean envelope power ratio of multicarrier transmission schemes, Electron. Lett., 30, 2098, 10.1049/el:19941423

Kwon, J.W., Park, S.K., and Kim, Y. (2009, January 6). Peak-to-average power ratio reduction by the partial shift sequence method for space-frequency block coded OFDM systems. Proceedings of the 2009 IEEE International Conference on Network Infrastructure and Digital Content, Beijing, China.

Hincapie, R., and Sierra, J.E. (2012). Peak to Average Power Ratio Reduction Based on Optimum Phase Sequence in Orthogonal Frequency Division Multiplexing Systems. Advanced Transmission Techniques in WiMAX, IntechOpen.

Varahram, 2010, A low complexity partial transmit sequence scheme by use of dummy signals for PAPR reduction in OFDM systems, IEEE Trans. Consum. Electron., 56, 2416, 10.1109/TCE.2010.5681122

Varahram, P., Ali, B.M., and Al-Azzo, W. (2011, January 13–16). Low complexity ADRG-PTS scheme for PAPR reduction in OFDM systems. Proceedings of the 13th International Conference on Advanced Communication Technology (ICACT2011), Gangwon-Do, South Korea.

Mohammady, S., Sidek, R.M., Varahram, P., Hamidon, M.N., and Sulaiman, N. (2011, January 6–8). A new DSI-SLM method for PAPR reduction in OFDM systems. Proceedings of the 2011 IEEE International Conference on Consumer Electronics (ICCE), Berlin, Germany.

Mohammady, S., Sulaiman, N., Sidek, R., Varahram, P., and Hamidon, M.N. (2012). FPGA Implementation of Inverse Fast Fourier Transform in Orthogonal Frequency Division Multiplexing Systems, Intech Open Limited.

Razavi, S., Sulaiman, N., Sidek, R.M., Mohammady, S., and Varahram, P. (2014, January 4–5). Analysis on the parameters of selected mapping without side information on PAPR performances. Proceedings of the 2014 IEEE 5th Control and System Graduate Research Colloquium, Shah Alam, Malaysia.

Razavi, S., Sulaiman, N., Mohammady, S., Sidek, R.M., and Varahram, P. (2012, January 26–28). Efficiency analysis of PAPR reduction schemes. Proceedings of the 2012 International Symposium on Telecommunication Technologies, Kuala Lumpur, Malaysia.

Mohammady, S., Farrell, R., Malone, D., and Dooley, J. (2019). Peak Shrinking and Interpolating Technique for reducing Peak to Average Power Ratio. Wirel. Days (WD), 1–6.

Kotzer, 2012, An Analytical Approach to the Calculation of EVM in Clipped Multi-Carrier Signals, IEEE Trans. Commun., 60, 1371, 10.1109/TCOMM.2012.12.100447

Muntean, V.H., and Otesteanu, M. (2010, January 11–12). WiMAX versus LTE—An overview of technical aspects for next generation networks technologies. Proceedings of the 2010 9th International Symposium on Electronics and Telecommunications, Timisoara, Romania.

Liu, Q., Baxley, R.J., Ma, X., and Zhou, G.T. (2008, January 19–21). Error vector magnitude optimization for OFDM systems with a deterministic peak-to-average power ratio constraint. Proceedings of the 2008 42nd Annual Conference on Information Sciences and Systems, Princeton, NJ, USA.

ETSI Standards (2019, December 21). LTE Evolved Universal Terrestrial Radio Access (E-UTRA) Base Station (BS) Radio Transmission and Reception (3GPP TS 36.104 Version 13.7.0 Release 13). Available online: https://www.etsi.org/deliver/etsi_tr/101400_101499/101477/01.01.01_60/tr_101477v010101p.pdf.

(2019, December 21). LTE Tool Box in Matlab. The Mathworks, USA. Available online: https://uk.mathworks.com/products/lte.html?requestedDomain=.

Rémy, J., and Letamendia, C. (2014). LTE Standards, Wiley.

Tsai, 2017, Wide-Bandwidth and High-Linearity Envelope- Tracking Front-End Module for LTE-A Carrier Aggregation Applications, IEEE Trans. Microw. Theory Tech., 65, 4657, 10.1109/TMTT.2017.2744622

Lu, 2017, Sub-Band Pre-Distortion for PAPR Reduction in Spectral Efficient 5G Mobile Fronthaul, IEEE Photonics Technol. Lett., 29, 122, 10.1109/LPT.2016.2628804

5G (2019, December 21). 5G vs 4G: No Contest. Available online: https://5g.co.uk/guides/4g-versus-5g-what-will-the-next-generation-bring/.

IEEE Standards, USA (2011). IEEE 802.16e WiMAX OFDMA Signal Measurements and Troubleshootin, IEEE Standards. Agilent Application Note 1578.

Wang, 2011, Optimized Iterative Clipping and Filtering for PAPR Reduction of OFDM Signals, IEEE Trans. Commun., 59, 33, 10.1109/TCOMM.2010.102910.090040

Bauml, 1996, Reducing the peak-to-average power ratio of multicarrier modulation by selected mapping, Electron. Lett., 32, 2056, 10.1049/el:19961384

Mohammady, S., Varahram, P., Sidek, R., Hamidon, M.N., and Sulaiman, N. (2010). FPGA Implementation of the Complex Division in Digital Predistortion Linearizer. Aust. J. Basic Appl. Sci. (AJBAS), 5028–5037.

Muller, 1997, OFDM with reduced peak-to-average power ratio by optimum combination of partial transmit sequences, Electron. Lett., 33, 368, 10.1049/el:19970266

Muller, S.H., and Huber, J.B. (1997, January 1–4). A novel peak power reduction scheme for OFDM. Proceedings of the 8th International Symposium on Personal, Indoor and Mobile Radio Communications—PIMRC ’97, Helsinki, Finland.

Jawhar, 2019, A Review of Partial Transmit Sequence for PAPR Reduction in the OFDM Systems, IEEE Access, 7, 18021, 10.1109/ACCESS.2019.2894527

Mohammady, S., Sulaiman, N., Varahram, P., Sidek, R.M., and Hamidon, M.N. (2012, January 25–27). Performance investigation between DSI-SLM and DSI-PTS schemes in OFDM signals. Proceedings of the 2012 International Symposium on Telecommunication Technologies, Sarajevo, Bosnia Herzegovina.

(2019, December 21). Rohde Schwarz 5G Poster: Be ahead in 5G. Demystifying 5G NR. Available online: https://www.mobilewirelesstesting.com/wp-content/uploads/2018/05/5GNR-IO_Rohde-Schwarz_April-2018-Blasts.pdf.

Lashkarian, N., Tarn, H., and Dick, C. (2005, January 11–14). Crest Factor Reduction in Multi-carrier WCDMA Transmitters. Proceedings of the 2005 IEEE 16th International Symposium on Personal, Indoor and Mobile Radio Communications, Berlin, Germany.

Mohammady, S. (2019). Introductory Chapter: Multiplexing History—How It Applies to Current Technologies. Multiplexing, IntechOpen. Chapter 1.

(2019, December 21). Digilent ZedBoard Zynq®-7000 ARM/FPGA SoC Development Board. Available online: https://www.xilinx.com/products/boards-and-kits/1-elhabt.html.html.

(2019, December 21). Digilentinc Zedboard Schematic. Available online: www.Zedboard.org.

(2019, December 21). AD-FMCOMMS2-EBZ User Guide. Available online: https://wiki.analog.com/resources/eval/ user-guides/ad-fmcomms2-ebz.

(2019, December 21). Analog Devices AD9361 Integrated Radio Frequency (RF) Agile Transceiver. Available online: https://www.analog.com/en/products/ad9361.html.

(2019, December 21). GaN-SiC Pallet Amplifier RTP26010-N1. Available online: https://dtsheet.com/doc/841692/rfhic-rtp26010-n1.

Doherty, 1936, A New High Efficiency Power Amplifier for Modulated Waves, Proc. Inst. Radio Eng., 24, 1163

Mohammady, 2013, A low complexity selected mapping scheme for peak to average power ratio reduction with digital predistortion in OFDM systems, Int. J. Commun. Syst., 26, 481, 10.1002/dac.1352

Cheang, 2018, A Hardware-Efficient Feedback Polynomial Topology for DPD Linearization of Power Amplifiers: Theory and FPGA Validation, IEEE Trans. Circ. Syst. I Regul. Pap., 65, 2889, 10.1109/TCSI.2017.2788082

Prata, 2017, Agile All-Digital DPD Feedback Loop, IEEE Trans. Microw. Theory Tech., 65, 2476, 10.1109/TMTT.2017.2654678

Byrne, D., Farrell, R., Madhuwantha, S., Leeser, M., and Dooley, J. (2018, January 27–31). Digital Pre-distortion Implemented Using FPGA. Proceedings of the 2018 28th International Conference on Field Programmable Logic and Applications (FPL), Dublin, Ireland.