Javascript must be enabled to continue!
Reduction of PAPR and improved BER using SLM technique
View through CrossRef
Abstract: With the introduction of 5G wireless technology, mankind has achieved a massive leap in data throughput of gigabits per second thanks to the combination of multiple input, multiple output, and orthogonal frequency division multiplexing technologies. Multiple (OFDM MIMO) can be achieved via frequency selective fading. PAPR (Peak-to-Average Power Ratio) is one of the most crucial performance concerns, since it makes OFDM particularly prone to harmonic distortion, reducing channel estimate accuracy and resulting in a lower bit error rate (BER). In the MIMO-OFDM system, we present a selective codeword shift mapping approach (SCS-SLM). It lowers the PAPR and forces the power amplifier to operate in the non-linear region, resulting in sub-carrier intermodulation, signal constellation, bit error rate distortion, and improved system performance. Additionally, using orthogonal frequency division multiplexing with space-time-frequency block code (STFBC OFDM) may increase BER performance. Selective Mapping is mentioned in this research as an effective approach for reducing PAPR. Furthermore, the bit error rate performance of this system is reviewed, as well as the process complexity as a result. A complete examination of the mutual independence of the alternative OFDM signals generated using this technique is also discussed, in addition to the previously mentioned analysis. Furthermore, the superfluous bits on the side of the transmitted OFDM signal are removed with this new technique. Keywords: (peak-average power ratio (PAPR), Multiple-input, multiple-output & orthogonal frequency-division multiplexing (MIMO-OFDM), space-time frequency block codes (STFBC), Selective Codeword Shift Selective mapping (SCS-SLM)
International Journal for Research in Applied Science and Engineering Technology (IJRASET)
Title: Reduction of PAPR and improved BER using SLM technique
Description:
Abstract: With the introduction of 5G wireless technology, mankind has achieved a massive leap in data throughput of gigabits per second thanks to the combination of multiple input, multiple output, and orthogonal frequency division multiplexing technologies.
Multiple (OFDM MIMO) can be achieved via frequency selective fading.
PAPR (Peak-to-Average Power Ratio) is one of the most crucial performance concerns, since it makes OFDM particularly prone to harmonic distortion, reducing channel estimate accuracy and resulting in a lower bit error rate (BER).
In the MIMO-OFDM system, we present a selective codeword shift mapping approach (SCS-SLM).
It lowers the PAPR and forces the power amplifier to operate in the non-linear region, resulting in sub-carrier intermodulation, signal constellation, bit error rate distortion, and improved system performance.
Additionally, using orthogonal frequency division multiplexing with space-time-frequency block code (STFBC OFDM) may increase BER performance.
Selective Mapping is mentioned in this research as an effective approach for reducing PAPR.
Furthermore, the bit error rate performance of this system is reviewed, as well as the process complexity as a result.
A complete examination of the mutual independence of the alternative OFDM signals generated using this technique is also discussed, in addition to the previously mentioned analysis.
Furthermore, the superfluous bits on the side of the transmitted OFDM signal are removed with this new technique.
Keywords: (peak-average power ratio (PAPR), Multiple-input, multiple-output & orthogonal frequency-division multiplexing (MIMO-OFDM), space-time frequency block codes (STFBC), Selective Codeword Shift Selective mapping (SCS-SLM).
Related Results
Low PAPR Filtered OFDM using Modified Selective Mapping
Low PAPR Filtered OFDM using Modified Selective Mapping
Wireless Communication has been witnessing generational change in the span of eight to ten years since it came in existence. From generation 1G to 3G and from 4G to 5G the telecomm...
Optical-OFDM VLC System: Peak-to-Average Power Ratio Enhancement and Performance Evaluation
Optical-OFDM VLC System: Peak-to-Average Power Ratio Enhancement and Performance Evaluation
Visible Light Communication (VLC) systems are favoured for numerous applications due to their extensive bandwidth and resilience to electromagnetic interference. This study delinea...
Performance Analysis of PAPR minimization in OFDM System Using Clipping, SLM and PTS Techniques
Performance Analysis of PAPR minimization in OFDM System Using Clipping, SLM and PTS Techniques
In wireless communications, Orthogonal Frequency Division Multiplexing (OFDM) is a method of modulating multicarrier signals to transmit high speed data. OFDM systems use multiple ...
Acceptability and Chemical Evaluation of ‘Labdae’: A Traditional Ber-Preserve from Underutilized Ber (Ziziphus sp.)
Acceptability and Chemical Evaluation of ‘Labdae’: A Traditional Ber-Preserve from Underutilized Ber (Ziziphus sp.)
Ber (Ziziphus sp.) is a nutritionally rich fruit especially with respect to minerals and vitamins viz., phosphorous, calcium, iron and vitamins A, B and C. However, due to its smal...
A reduced PAPR hybrid OFDM visible light communication system
A reduced PAPR hybrid OFDM visible light communication system
AbstractOrthogonal frequency division multiplexing (OFDM) is used by visible light communication (VLC) systems. Its main goal is to lessen inter-symbol interference's negative impa...
Performance Analysis of Selective Mapping in Underwater Acoustic Orthogonal Frequency Division Multiplexing Communication System
Performance Analysis of Selective Mapping in Underwater Acoustic Orthogonal Frequency Division Multiplexing Communication System
Under-Water Acoustic (UWA) communication networks are commonly formed by associating various independent UWA vehicles and transceivers connected to the bottom of the sea with batte...
Performance Evaluation of MRMED Algorithm by Monitoring BER
Performance Evaluation of MRMED Algorithm by Monitoring BER
In this research work, we have developed a communication system (transmitter / receiver) to control peak to average power (PAPR) with small bit error rate (BER) for a 4G system ca...
Low-Complexity Optical Transmitter Design for Future Generations
Low-Complexity Optical Transmitter Design for Future Generations
Abstract
The burgeoning field of visible light communication (VLC) technology is seen as a possible complement to incumbent radio frequency (RF) systems, as it uses optical...


