Riemann Sequence based SLM with nonlinear effects of HPA

Similar documents
Interleaved PC-OFDM to reduce the peak-to-average power ratio

REDUCING PAPR OF OFDM BASED WIRELESS SYSTEMS USING COMPANDING WITH CONVOLUTIONAL CODES

A New PAPR Reduction in OFDM Systems Using SLM and Orthogonal Eigenvector Matrix

Keywords: MC-CDMA, PAPR, Partial Transmit Sequence, Complementary Cumulative Distribution Function.

PAPR Reduction in OFDM System using Adapting Coding Technique with Pre distortion Method

An Overview of PAPR Reduction Techniques in OFDM Systems

A COMPARISON OF DIFFERENT PAPR REDUCTION TECHNIQUES IN OFDM USING VARIOUS MODULATIONS

PERFORMANCE ANALYSIS OF PARTIAL RANSMIT SEQUENCE USING FOR PAPR REDUCTION IN OFDM SYSTEMS

IJMIE Volume 2, Issue 4 ISSN:

OFDM Systems and PAPR Reduction Along With Channel Estimation

COMPARISON OF SLM & PTS TECHNIQUES FOR REDUCING PAPR IN OFDM

MODIFIED SELECTED MAPPING TECHNIQUE TO REDUCE PEAK TO AVERAGE POWER RATIO FOR OFDM SIGNALS

A Comparative Approach between Clipping and Probabilistic Technique for Reducing PAPR of OFDM System

Algorithm to Improve the Performance of OFDM based WLAN Systems

Peak-to-Average Power Ratio (PAPR)

ORTHOGONAL frequency division multiplexing (OFDM)

An Improved SLM Technique Using Discrete Cosine Transform in OFDM. S. Lih., An Improved SLM Technique Using Discrete Cosine Transform in OFDM System.

PAPR Reduction techniques in OFDM System Using Clipping & Filtering and Selective Mapping Methods

Reduction of PAPR of OFDM Using Exponential Companding Technique with Network Coding

An Overview of PAPR Reduction Techniques In Concerned with OFDM

Low Complexity Partial SLM Technique for PAPR Reduction in OFDM Transmitters

PAPR Reduction in 4G Cellular Network: A SLM-based IFDMA Uplink System

PIECEWISE LINEAR ITERATIVE COMPANDING TRANSFORM FOR PAPR REDUCTION IN MIMO OFDM SYSTEMS

Performance analysis of OFDM with QPSK using AWGN and Rayleigh Fading Channel

PAPR Reduction in an OFDM system using Recursive Clipping and Filtering Technique

Peak to Average Power Ratio Reduction of Orthogonal Frequency Division Multiplexing System with a Significant Low Complexity

Solving Peak Power Problems in Orthogonal Frequency Division Multiplexing

Clipping and Filtering Technique for reducing PAPR In OFDM

Computational Complexity Reduction of OFDM Signals by PTS with Various PAPR Conventional Methods

PAPR Reduction of OFDM Using a New Phase Sequence in SLM Technique

II. OFDM SYSTEM MODEL

Nonlinear Companding Transform Algorithm for Suppression of PAPR in OFDM Systems

PAPR Reduction in SLM Scheme using Exhaustive Search Method

INTERNATIONAL JOURNAL OF PURE AND APPLIED RESEARCH IN ENGINEERING AND TECHNOLOGY

ORTHOGONAL frequency division multiplexing (OFDM)

Iterative Clipping and Filtering Technique for PAPR Reduction in OFDM System without Encoding

International Journal of Innovative Research in Advanced Engineering (IJIRAE) ISSN: Issue 06, Volume 3 (June 2016)

International Journal of Engineering, Business and Enterprise Applications (IJEBEA)

SCFDMA PERFORMANCE ANALYSIS FOR PAPR REDUCTION WITH DIFFERENT SUBCARRIER MAPPING USING SLM TECHNIQUE AND MODIFIED SLM TECHNIQUE

PAPR reduction performance analysis of Optimized Matrix based Phase Sequences in OFDM systems

SINCE orthogonal frequency division multiplexing

A NON-LINEAR SCHEME FOR PMEPR REDUCTION IN MC-CDMA SYSTEM

2. PAPR IN OFDM: Let X=[XR0R,X1,XR2R,..XRMR] is data coming out of S/P. OFDM is represented in time domain by

PAPR Reduction for MIMO-OFDM Systems using SLM without SI

PTS Technique for MIMO-OFDM Paper Reduction

Effects of Nonlinearity on DFT-OFDM and DWT-OFDM Systems

Simplified Levenberg-Marquardt Algorithm based PAPR Reduction for OFDM System with Neural Network

USE OF CLIPPING AND LINEAR PHASE FIR FILTERING TO REDUCE PAPR IN OFDM SYSTEM

Reduction of peak to average power ratio (PAPR) in orthogonal frequency division multiplexing (OFDM) system

Comparative Study of Peak-to-Average Power Ratio Reduction Techniques for OFDM System

PERFORMANCE ENHANCEMENT OF OFDM SIGNALS USING SELECTED MAPPING TECHNIQUE AND OVERVIEW OF DIFFERENT PAPR REDUCTION SCHEMES

Lekhraj Udaigiriya and Sudhir Kumar Sharma

Combination of Modified Clipping Technique and Selective Mapping for PAPR Reduction

Power Reduction in OFDM systems using Tone Reservation with Customized Convex Optimization

Reducing Intercarrier Interference in OFDM Systems by Partial Transmit Sequence and Selected Mapping

BER and PAPR Reduction Method for Nonlinearly Amplified OFDM Signals

Image Transmission over OFDM System with Minimum Peak to Average Power Ratio (PAPR)

IJREAT International Journal of Research in Engineering & Advanced Technology, Volume 1, Issue 5, Oct-Nov, 2013 ISSN:

Systematic Comparison of Different PAPR Reduction Methods in OFDM Systems

A Research Concept on Bit Rate Detection using Carrier offset through Analysis of MC-CDMA SYSTEM

PAPR Reduction of OFDM Signals using Partial Transmit Sequence and Clipping Hybrid Scheme

PAPR ANALYSIS IN OFDM SYSTEMS USING PTS REDUCTION TECHNIQUE

A Novel of Low Complexity Detection in OFDM System by Combining SLM Technique and Clipping and Scaling Method Jayamol Joseph, Subin Suresh

Global Journal of Engineering Science and Research Management

Linear Precoding Schemes for PAPR Reduction in Mobile WiMAX OFDMA System

PAPR REDUCTION TECHNIQUE USING MODIFIED SLM IN OFDM SYSTEM

Hybrid PAPR Reduction Scheme for Universal Filter Multi- Carrier Modulation in Next Generation Wireless Systems

An Improved Clipping And Filtering Methods With Discrete Cosine Transform (DCT) For Peak-To-Average Power Ratio (PAPR) Reduction

Comparative Study of OFDM & MC-CDMA in WiMAX System

Probabilistic Constellation Extension Scheme for PAPR Reduction in OFDM Signals

Partial Transmit Sequence (PTS)-PAPR Reduction Technique in OFDM Systems with Reduced Complexity. II. PAPR problem in OFDM system

Orthogonal Frequency Division Multiplexing (OFDM) based Uplink Multiple Access Method over AWGN and Fading Channels

PERFORMANCE IMPROVEMENT FOR PAPR REDUCTION IN LTE DOWNLINK SYSTEM WITH ELLIPTIC FILTERING

PEAK CANCELLATION CREST FACTOR REDUCTION TECHNIQUE FOR OFDM SIGNALS

Low-Complexity Architecture for PAPR Reduction in OFDM Systems with Near-Optimal Performance

[Gupta, 3(3): March, 2014] ISSN: Impact Factor: 1.852

THE COMBINATION OF CLIPPING AND FILTERING WITH SELECTIVE MAPPING METHODS FOR PEAK TO AVERAGE POWER RATIO REDUCTION IN OFDM

Low Complexity PAPR Reduction Technique for Coded OFDM Systems with Scrambling Approach

PAPR Reduction of OFDM System using LBC

Packet Permutation PAPR Reduction for OFDM Systems Based on Luby Transform Codes

Performance Evaluation for OFDM PAPR Reduction Methods

Performance of MF-MSK Systems with Pre-distortion Schemes

Analysis of Selective Mapping PAPR Reduction Technique in OFDM System

Hybrid PTS-Clipping Scheme for PAPR Reduction in MIMO-OFDM Systems

CHAPTER 1 INTRODUCTION

AS AN attractive technology for wireless communications,

ISSN: ISO 9001:2008 Certified International Journal of Engineering and Innovative Technology (IJEIT) Volume 4, Issue 12, June 2015

International Journal of Research and Review E-ISSN: ; P-ISSN:

CRITERIA FOR SELECTION OF PAPR REDUCTION TECHNIQUES IN OFDM SYSTEM

Lowest PAPR Selection Technique from SLM and PTS with One IFFT Block in Wireless MC-CDMA Communication Systems

PAPR Reduction Performance for LTE OFDM Systems with Different Techniques

Analysis of OFDM System by Comparing Different PAPR Reduction Schemes

MC CDMA PAPR Reduction Using Discrete Logarithmic Method

Modified Selected Mapping Technique for Peak-to-Average Power Ratio Reduction in Orthogonal Frequency Division Multiplexing Systems

COMPARATIVE ANALYSIS OF CLIPPING, SLM AND TWO PIECEWISE COMPANDING TECHNIQUES FOR PAPR REDUCTION IN OFDM SYSTEM

Low Complexity PAPR Reduction Technique for Coded OFDM Systems with Scrambling Approach

DCT BASED PARTIAL TRANSMIT SEQUENCE TECHNIQUE FOR PAPR REDUCTION IN OFDM TRANSMISSION

Optimization of PAPR Using HPA and Amplitude Clipping Reduction Technique

PAPR, ISI, BER, ACE, CCDF I. INTRODUCTION

Performance Analysis of OFDM System with QPSK for Wireless Communication

Transcription:

IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE) e-issn: 2278-1676,p-ISSN: 2320-3331, Volume 10, Issue 6 Ver. I (Nov Dec. 2015), PP 74-80 www.iosrjournals.org Riemann Sequence based SLM with nonlinear effects of HPA Chhavi Sharma 1, A.K.Gupta 2 and S.K Tomar 3 1, 3 (Department of E&C, IET, M.J.P.R University Bareilly, India) 2 (Department of E&C, NIT Kurukshetra, India) Abstract: Orthogonal frequency division multiplexing (OFDM) has been considered as a promising technique to achieve high data rate transmission in mobile environment. However, it is very sensitive to nonlinear effects due to high peak to average power ratio (PAPR). In this paper firstly the nonlinear effect of high power amplifier in the form of inband & outband distortion caused by high PAPR is analyzed and then Riemann sequence and normalized Riemann sequence based SLM is applied to reduce the effect of high PAPR. All the simulation results are obtained in presence of Rapp s SSPA model. Keywords: Peak to average power ratio (PAPR), high power amplifier (HPA), Riemann sequence, and orthogonal frequency division multiplexing (OFDM) I. Introduction Orthogonal frequency division multiplexing (OFDM) is a very attractive technique for high bit rate transmission due to its various advantages such as high spectral efficiency, robustness to channel fading, immunity to impulse interference and capability of handling very strong multi-path fading and frequency selective fading without having to provide powerful channel equalization [1].Despite the advantages, OFDM suffers from high peak-to-average power ratio (PAPR) which is the major obstacle. With high PAPR, nonlinearities increase in the system by high signal peaks, causing inter-modulation among subcarriers and due to that undesired out-of-band radiation occurs. If RF power amplifiers are operated without large power backoffs, it is impossible to keep the out-of-band power below specified limits and leads to inefficient amplification and expensive transmitters. So, it is highly desirable to reduce the PAPR [2].To deal with this problem several PAPR reduction techniques have been proposed in literature such as clipping and filtering [3], block coding [4], constellation shaping, Tone Reservation (TR) and Tone Injection (TI), nonlinear companding transforms [5], multiple signal representation techniques such as Partial Transmit Sequence (PTS)[6]and selective mapping(slm) [7]. Every technique is having its advantages and drawbacks. Among them, multiple signal representation is one of the most promising techniques because it is simple to implement, no distortion in the transmitted signal, high bandwidth efficiency, high power efficiency and significant improvement of the statistics of the PAPR [8]. However, the conventional SLM (C-SLM) and PTS scheme suffer from higher computational complexity due to a bank of IFFT operations required to produce candidate signals, which may hinder its practical application in the systems. To overcome the inherent high computational complexity, several SLM and PTS schemes have been proposed to improve the PAPR reduction performance and reduce the computational complexity but these schemes still have substantial requirement on the computational complexity. It is well known that every radio system employs the high power amplifier (HPA) in the transmitter to obtain sufficient transmission power and to achieve the maximum output power efficiency; it is usually operated at or near the saturation region. The nonlinear characteristic of the HPA is very sensitive to the variation in signal amplitudes and this variation becomes wide with high PAPR.For power efficient operation of the nonlinear HPA with lower back off values it is necessary to reduce PAPR of OFDM system [5]. In [9], the Riemann matrix based phase sequence has been claimed to achieve the best PAPR reduction capability in SLM-OFDM system. In this work initially, the nonlinear effect of HPA is shown in the form of inband and out of band distortion and then the performance of a modified Riemann sequence based SLM with Rapp s SSPA model is analyzed with different no. of subcarriers. II. Ofdm Signal Representation And Papr 1.1 OFDM system and PAPR definition In an OFDM system with N subcarriers, the discrete-time transmitted signal is represented as: 2 nk N 1 1 j N x, 1, 2,... 1 k X e k N n N n 0 Where j 1, X are the input symbols modulated by QPSK such that n X 1, j, 1, j n The PAPR of the transmitted signal in (1) is defined as the ratio of the maximum to the average power can be expressed as [10]: DOI: 10.9790/1676-10617480 www.iosrjournals.org 74 Page (1)

where E [.] denotes expectation operation. m a x x k k P A P R 1 0 lo g ( d B ) 10 2 E x k 2 (2) 1.2 OFDM with Conventional SLM In SLM, each of the phase sequences to generate alternative input sequences multiplies the input data [7]. Each of these alternative input data sequences is made the IFFT operation, and then the one with the lowest PAPR is selected for transmission. Each data block is multiplied by U different phase factors, each of length M, H,..., u h h h u,0 u,1 u, M 1 u 0,1,... U 1 resulting in U different data blocks. Thus the u th phase sequence after multiplication is therefore, OFDM signals becomes as T u X X h, X h,..., X h u 0,1,... U 1. 0 u,0 1 u,1 M 1 u, M 1 u 1 x t X h e m 0 m u, m M 1 2 M j f t m (3) where 0 t M T, u 1, 2,... U 1 u Among the data blocks X, only one with the lowest PAPR is selected for transmission and the corresponding selected phase factors h also should be transmitted to receiver as side information. As U u, m increases, PAPR reduction becomes large while the computational complexity becomes too high, mainly due to U IFFTs. It should be noted that there is a saturation effect, that is, the additional PAPR reduction gain decreases as U increases. T Fig.1 Block diagram of conventional SLM with HPA 1.3 Riemann sequence The Riemann matrix ( B ) of size NN is obtained by removing the first row and first column of Matrix A of size N 1 N 1 [9] A i, j i 1 if i d ivid es j 1 otherw ise (4) Using Equation (4), Riemann Matrix ( B ) of order four can be written as: B = -1-1 -1-1 -1 2-1 -1-1 -1 3-1 -1-1 -1 4 th The elements of p row in Riemann matrix ( B ) are either p or -1 for 1 p N. If any row, except the 1 st row is used for PAPR reduction in SLM-OFDM system of matrix B as phase sequence, it results not only in phase change but also amplitude change of the modulated data symbols. So, average energy of the OFDM signal after multiplication with phase sequence increases and PAPR is improved [9]. (5) DOI: 10.9790/1676-10617480 www.iosrjournals.org 75 Page

III. Nonlinear Distortion Caused By Hpa In Presence Of Ofdm Signal When OFDM signal is passed through the HPA, the high peak to average power ratio (PAPR) of OFDM signal results into nonlinear distortions that is caused by the HPA nonlinearity. The resulting nonlinear distortion can be categorized into two types: in band distortion and out of band distortion. In-band distortion produces a degradation of the system bit error rate, whereas the out-of-band component affects adjacent frequency bands. The in-band distortion due to non-linear amplification at the transmitter results intersymbol interference (ISI), when the signal is filtered with the matched filter at the receiver. The increased ISI further increases the bit error rate (BER) and the performance of the system degrades [5]. 1.1 Characterization of nonlinear distortion model A distortion is typically characterized in the form of its amplitude-to-amplitude (AM/AM) and amplitude-to-phase (AM/PM) modulation curves, which reflect, respectively, the amplifier gain and phase progression as a function of the input power. Fig.2 shows a typical AM/AM response for HPA, with the associated input and output back-off regions (IBO and OBO) respectively. Fig.2 A typical power amplifier response for IBO and OBO. At low input power levels, the output is a linearly scaled version of the input. However, as the power increases, the amplifier gain starts decreasing and eventually the PA is driven into saturation. The operating point where the gain of the amplifier deviates from the linear small-signal gain by 1 db is called the 1-dB compression point. Additionally, varying input power levels also affect the phase of the output signal. Both these characteristics are a key stepping-stone in understanding symbol recovery errors that occur on the receiver end because of PA non-linearity.to avoid such undesirable nonlinear effects, a waveform with high peak power must be transmitted in the linear region of the HPA by decreasing the average power of the input signal. This is called input back off (IBO) and results in a proportional output back off (OBO), but high back-off reduces the power efficiency of the HPA and may limit the battery life for mobile applications. The input back-off and output back-off are defined in [5] as Pi, sa t (6) and IB O 1 0 lo g 10 P P O B O 1 0 lo g 10 P i o, sa t o 1.2 HPA model The most common and practical model for amplifiers is the SSPA [12]. The AM/AM and AM/PM transfer characteristics can be modelled as F ur r 1 ur 1 A 2 p 2 p (8) (7) r 0 (9) DOI: 10.9790/1676-10617480 www.iosrjournals.org 76 Page

Where r is the magnitude of an OFDM signal, A is the limiting (saturating) output amplitude or clipping level of HPA, u is the small signal gain and the parameter p controls the smoothness of the transition from the linear region into the saturation region. When p, the SSPA acts as a soft limiter. Fig.3 AM/AM properties of a Solid State Amplifier SSPA) for different values of p and an ideal amplifier IV. Simulation Results In this section, the effect of nonlinearity of SSPA in presence of OFDM signal is shown and to reduce this effect, Riemann based SLM is used as PAPR reduction technique. In addition, the PAPR reduction performance of conventional SLM scheme and the Riemann based SLM with SSPA for different no. of subcarriers is compared using MATLAB simulation. To show the PAPR performance of the proposed system, the data is generated randomly and then modulated by QPSK.In order to generate the complementary cumulative distribution function CCDF [5] of the PAPR, 10000 random OFDM frames have been generated. The sampling rate for an accurate PAPR is considered here four times. The Rapp s coefficient p is taken as three. Fig.4 (a) & 4(b) shows the estimated power spectral density of the distorted OFDM signal by a nonlinear SSPA for input back off values 3dB & 8dB respectively. From the results, it is clear that distortions due to HPA will decrease the out of band noise with larger backoff values. The effect of inband distortion due to non-linear amplification is depicted in fig.5 (a) & 5(b) in the form of constellation diagram for backoff values 3 db & 8 db respectively. Results show that with larger input backoff value, the inband distortion reduces. 4(a) DOI: 10.9790/1676-10617480 www.iosrjournals.org 77 Page

4(b) Fig.4 Comparison for PSD of OFDM signal at the output of SSPA at IBO=3dB&8dB 5 (a) 5 (b) Fig.5 Constellation distortions of SSPA with QPSK modulated data for input backoff IBO=3dB&8dB with p=3 Fig.6 shows the PAPR reduction using Conventional Selective Mapping with Riemann sequence and normalized Riemann sequence for no. of subcarriers N=128. The QPSK modulated data is mapped to a 128 point IFFT for modulation, a root raised cosine filter is used for pulse shaping and a SSPA is used as the amplifier model with smoothness parameter p =3 and input backoff 3dB. Results show that 1.8dB PAPR is reduced using normalized Riemann based SLM as compare to conventional SLM. Similarly fig.7 shows the performance of Riemann sequence based SLM for QAM modulated data for N=256 with same parameters as above. Here also 2.2dB PAPR reduction is achieved using Riemann based SLM as compare to conventional SLM. DOI: 10.9790/1676-10617480 www.iosrjournals.org 78 Page

Pr[PAPR>PAPR0] Pr[PAPR>PAPR0] Riemann Sequence based SLM with nonlinear effects of HPA 10 0 CCDF OF PAPR IN CONVENTIONAL SLM, SLM WITH RIEMANN AND SLM WITH NORMALIZED RIEMANN CSLM SLM with Riemann SLM with normalized Riemann 10-1 10-2 1 2 3 4 5 6 7 8 9 10 PAPR0(dB) Fig.6 PAPR performance of OFDM system using Riemann based SLM, QPSK with Rapp s SSPA Model, N=128 10 0 CCDF OF PAPR IN CONVENTIONAL SLM, SLM WITH RIEMANN AND SLM WITH NORMALIZED RIEMANN CSLM SLM with Riemann SLM with normalized Riemann 10-1 10-2 1 2 3 4 5 6 7 8 9 10 PAPR0(dB) Fig.7 PAPR performance of OFDM system using Riemann based SLM, 256QAM with Rapp s SSPA Model, N=256 V. Conclusion From the results shown here, we can conclude that to minimize the nonlinear effects, it is desirable to operate HPA in the linear region i.e.with huge back off but in this case, linear amplifier has poor efficiency. It is therefore important to aim at a power efficient operation of the nonlinear HPA with lower back-off values. Hence, reducing the PAPR of the transmitted signal is a better solution to prevent the occurrence of such interference. This paper initially analyzes the nonlinear effect of high power amplifier in the form of inband & outband distortion caused by high PAPR and then Riemann sequence and normalized Riemann sequence based SLM with HPA is applied to reduce the effect of high PAPR. Simulation results show that the Riemann based SLM outperforms than conventional SLM scheme and normalized Riemann based SLM also gives almost similar results. DOI: 10.9790/1676-10617480 www.iosrjournals.org 79 Page

References [1] L. J. Cimini Jr, Ye, L.,Orthogonal Frequency Division Multiplexing for Wireless Channels, Proc..IEEE conference on Global Telecommunications, Sydney, Australia,1998,82-85 [2] E. Costa, M. Midrio, and S. Pupolin, Impact of amplifier nonlinearities on OFDM transmission system performance, IEEE Communications Letters, 3, 37-39, 1999 [3] X.Li and L.J. Cimini, Effects of clipping and filtering in the performance of OFDM, IEEE Communications Letters, 2, 131-133, 1998. [4] A. E. Jones, T. A. Wilkinson, and S. K. Barton, Block coding scheme for reduction of peak to mean envelope power ratio of multicarrier transmission Schemes, Electronics Letters, 30, 2098-2099, 1994. [5] T. Jiang and Y. Wu, An Overview: peak-to-average power ratio reduction techniques for OFDM signals, IEEE Trans. Broadcast., 54(2) 257-268, 2008. [6] S. H. Muller and J. B. Huber, OFDM with reduced peak to average power ratio by optimum combination of partial transmit sequences, Elect. Lett., 33(5), 368 369, Feb.1997. [7] R.W. Bauml, R. F. H. Fischer, and J. B. Huber, Reducing the peak-to average power ratio of multicarrier modulation by selected mapping,electronic Letters, 32, 2056-2057, 1996 [8] H. Muller, R. W. Bauml, R. F. H. Fischer, and J. B. Huber, OFDM with reduced peak-to-average power ratio by multiple signal representation, Annales des Telecommunications Annals of Telecommunications, 52, 58-67, 1997. [9] N. VishnuKanth I, V. K. Chakka and A. Jain, SLM based PAPR reduction of an OFDM signal using new phase sequence, IEEE Electronics Letters,2009. [10] H. Ochiai and H. Imai, On the distribution of the peak-to-average power ratioin OFDM signals, IEEE Transactions on Communications, 49, 2289, 2001.. [11] L. Hanzo, Webb W., Keller T., Single and Multi-carrier Quadrature Amplitude Modulation. (Chichester: Wiley, 2000). [12] E. Costa, M. Midrio, and S. Pupolin,Impact of amplifier nonlinearities on OFDM transmission system performance, IEEE Communications Letters, 3,37-39, 1999. DOI: 10.9790/1676-10617480 www.iosrjournals.org 80 Page