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Published in: Wireless Personal Communications 3/2021

14-10-2020

Performance Evaluation of Polar Coded Filtered OFDM for Low Latency Wireless Communications

Authors: T. Deepa, N. Bharathiraja

Published in: Wireless Personal Communications | Issue 3/2021

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Abstract

The fifth generation new radio (5G-NR) system design is aimed to have ultra-large transmission rate, massive capacity, massive device connectivity, enhanced mobile broadband (eMBB) services, and ultra-reliable low communication latency (URLLC) services. To support the various challenges and specifications, new wireless communication technologies including new notorious waveforms, forward error correction codes (FEC), non-orthogonal waveforms as well as massive multiple input multiple output (MIMO) antenna schemes have been introduced to aid the progress of pliable 5G air interface system design. Cyclic prefix based orthogonal frequency division multiplexing (CP-OFDM) has been broadly selected in 4G-OFDM based long term evaluation(LTE), Wi-Fi, and other mobile communications due to the benefit of high spectral efficiency, ease of development and easy to integrate with MIMO systems, etc. However, the conventional CP-OFDM technology has some drawbacks, such as high out of band (OOB) emission leakage, an exact requirement of synchronization, and a limited number of CP lengths. Filtered OFDM (FOFDM) is a flexible foundational waveform by applying subband filtering on existing CP-OFDM which can support the needs of the waveform for 5G air interface. In this paper, a spectrally efficient waveform called polar coded filtered OFDM (PC-FOFDM) is proposed to fulfil these requirements for high data rate ultra-reliable low latency communications. This paper investigates bit error rate (BER) performance of PC-FOFDM scheme over additive white Gaussian noise (AWGN) channel and compares the results with PC-OFDM. The simulation results show that the PC-FOFDM scheme outperforms PC-OFDM in terms of spectrum efficiency, BER performance, and error vector magnitude (EVM).

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Literature
2.
go back to reference Trivedi, V. K., Ramadan, K., Kumar, P., Ibrahim Dessouky, M., & Abd El-Samie, F. E. (2019). Enhanced OFDM-NOMA for next generation wireless communication: A study of PAPR reduction and sensitivity to CFO and estimation errors. AEU - International Journal of Electronics and Communications, 102, 9–24. https://doi.org/10.1016/j.aeue.2019.01.009.CrossRef Trivedi, V. K., Ramadan, K., Kumar, P., Ibrahim Dessouky, M., & Abd El-Samie, F. E. (2019). Enhanced OFDM-NOMA for next generation wireless communication: A study of PAPR reduction and sensitivity to CFO and estimation errors. AEU - International Journal of Electronics and Communications, 102, 9–24. https://​doi.​org/​10.​1016/​j.​aeue.​2019.​01.​009.CrossRef
3.
go back to reference Wang, J., Jin, A., Shi, D., Wang, L., Shen, H., Wu, D., et al. (2017). Spectral efficiency improvement with 5G technologies: results from field tests. IEEE Journal on Selected Areas in Communications. Wang, J., Jin, A., Shi, D., Wang, L., Shen, H., Wu, D., et al. (2017). Spectral efficiency improvement with 5G technologies: results from field tests. IEEE Journal on Selected Areas in Communications.
5.
go back to reference Zhou, J., Zhang, X., Gu, L., Benjebbour, A., Iwabuchi, M., Kishiyama, Y. (2017). 5G field trials: OFDM-based waveforms and mixed numerologies. IEEE Journal on Selected Areas in Communications. Zhou, J., Zhang, X., Gu, L., Benjebbour, A., Iwabuchi, M., Kishiyama, Y. (2017). 5G field trials: OFDM-based waveforms and mixed numerologies. IEEE Journal on Selected Areas in Communications.
6.
go back to reference Wang, J., et al. (2018). Field trials on spectral efficiency improvement in massive MIMO systems. In 2018 IEEE 87th vehicular technology conference (VTC Spring), Porto (pp. 1–5). https://doi.org/10.1109/VTCSpring.2018.8417817. Wang, J., et al. (2018). Field trials on spectral efficiency improvement in massive MIMO systems. In 2018 IEEE 87th vehicular technology conference (VTC Spring), Porto (pp. 1–5). https://​doi.​org/​10.​1109/​VTCSpring.​2018.​8417817.​
7.
go back to reference Tang, Z., Li, J., Abdoli, J., & Guo, Z. (2018). Soft air interface to support 5G services and requirements. In 2018 IEEE 87th vehicular technology conference (VTC Spring). Tang, Z., Li, J., Abdoli, J., & Guo, Z. (2018). Soft air interface to support 5G services and requirements. In 2018 IEEE 87th vehicular technology conference (VTC Spring).
8.
go back to reference Jayan, G., & Nair, A. K. (2018). Performance analysis of filtered OFDM for 5G. In 2018 international conference on wireless communications, signal processing and networking (WiSPNET), Chennai (pp. 1–5). https://doi.org/10.1109/WiSPNET.2018.8538544. Jayan, G., & Nair, A. K. (2018). Performance analysis of filtered OFDM for 5G. In 2018 international conference on wireless communications, signal processing and networking (WiSPNET), Chennai (pp. 1–5). https://​doi.​org/​10.​1109/​WiSPNET.​2018.​8538544.​
9.
go back to reference Nee, R., & Prasad, R. (2000). OFDM for wireless multimedia communications. Norwood: Artech House, Inc. Nee, R., & Prasad, R. (2000). OFDM for wireless multimedia communications. Norwood: Artech House, Inc.
10.
go back to reference Bahai, A. R. S., Saltzberg, B. R., & Ergen, M. (2004). Multi-carrier digital communications: theory and applications of OFDM. Berlin: Springer.CrossRef Bahai, A. R. S., Saltzberg, B. R., & Ergen, M. (2004). Multi-carrier digital communications: theory and applications of OFDM. Berlin: Springer.CrossRef
11.
go back to reference Hasan, M. A. (2007). Performance evaluation of WiMAX/IEEE 802.16 OFDM physical layer. Espoo, June, 2007. Hasan, M. A. (2007). Performance evaluation of WiMAX/IEEE 802.16 OFDM physical layer. Espoo, June, 2007.
12.
go back to reference An, C., Kim, B., & Ryu, H. (2017). WR-OFDM system and OOB spectrum comparison. In 2017 9th international conference on ubiquitous and future networks (ICUFN), Milan (pp. 373–377). https://doi.org/10.1109/ICUFN.2017.7993811. An, C., Kim, B., & Ryu, H. (2017). WR-OFDM system and OOB spectrum comparison. In 2017 9th international conference on ubiquitous and future networks (ICUFN), Milan (pp. 373–377). https://​doi.​org/​10.​1109/​ICUFN.​2017.​7993811.​
19.
go back to reference Koike-Akino, T., Wang, Y, Draper, S. C., Sugihara, K., & Matsumoto, W. (2017). Bit-interleaved polar-coded OFDM for low latency M2M wireless communications. In 2017 IEEE international conference on communications (ICC). Koike-Akino, T., Wang, Y, Draper, S. C., Sugihara, K., & Matsumoto, W. (2017). Bit-interleaved polar-coded OFDM for low latency M2M wireless communications. In 2017 IEEE international conference on communications (ICC).
20.
go back to reference Huang, Q., Kang, J., Zhang, L., & Lin, S. (2009). Two efficient and low-complexity iterative reliability-based majority-logic decoding algorithms for LDPC codes. In IEEE information theory workshop (ITW 2009) (pp. 253–257). Huang, Q., Kang, J., Zhang, L., & Lin, S. (2009). Two efficient and low-complexity iterative reliability-based majority-logic decoding algorithms for LDPC codes. In IEEE information theory workshop (ITW 2009) (pp. 253–257).
22.
go back to reference H. Vangala, E. Viterbo, and Yi Hong, “Efficient systematic polar encoding", IEEE Communication Letters, 2015. H. Vangala, E. Viterbo, and Yi Hong, “Efficient systematic polar encoding", IEEE Communication Letters, 2015.
23.
go back to reference Arikan, E. (2009). Channel polarization: a method for constructing capacity-achieving codes for symmetric binary-input memoryless channels. IEEE Transactions on Information Theory, 55(7), 3051–3073.MathSciNetCrossRef Arikan, E. (2009). Channel polarization: a method for constructing capacity-achieving codes for symmetric binary-input memoryless channels. IEEE Transactions on Information Theory, 55(7), 3051–3073.MathSciNetCrossRef
24.
go back to reference Tal, I., & Vardy, A. (2015). List decoding of polar codes. IEEE Transactions on Information Theory, 61(5), 2213–2226.MathSciNetCrossRef Tal, I., & Vardy, A. (2015). List decoding of polar codes. IEEE Transactions on Information Theory, 61(5), 2213–2226.MathSciNetCrossRef
25.
go back to reference Niu, K., & Chen, K. (2012). CRC-aided decoding of polar codes. IEEE Communications Letters, 16(10), 1668–1671.CrossRef Niu, K., & Chen, K. (2012). CRC-aided decoding of polar codes. IEEE Communications Letters, 16(10), 1668–1671.CrossRef
26.
go back to reference Wang, W., Li, L., & Niu, K. (2019). An efficient construction of polar codes based on the general partial order. EURASIP Journal on Wireless Communications and Networking. Wang, W., Li, L., & Niu, K. (2019). An efficient construction of polar codes based on the general partial order. EURASIP Journal on Wireless Communications and Networking.
27.
go back to reference Koike-Akino, T., Wang, Y., Draper, S.C., Sugihara, K., & Matsumoto, W. (2017). Bit-interleaved polar-coded OFDM for low-latency M2M wireless communications. In 2017 IEEE international conference on communications (ICC), Paris (pp. 1–7). Koike-Akino, T., Wang, Y., Draper, S.C., Sugihara, K., & Matsumoto, W. (2017). Bit-interleaved polar-coded OFDM for low-latency M2M wireless communications. In 2017 IEEE international conference on communications (ICC), Paris (pp. 1–7).
28.
go back to reference Stimming, A. B., Parizi, M. B., & Burg, A. (2015). LLR-based successive cancellation list decoding of polar codes. IEEE Transaction on Signal Processing, 63(19), 5165–5179.MathSciNetCrossRef Stimming, A. B., Parizi, M. B., & Burg, A. (2015). LLR-based successive cancellation list decoding of polar codes. IEEE Transaction on Signal Processing, 63(19), 5165–5179.MathSciNetCrossRef
29.
go back to reference Umar, R., Yang, F., & Mughal, S. (2018). BER performance of a polar coded OFDM over different channel models. In 2018 15th international Bhurban conference on applied sciences and technology (IBCAST), Islamabad (pp. 764–769). https://doi.org/10.1109/IBCAST.2018.8312308. Umar, R., Yang, F., & Mughal, S. (2018). BER performance of a polar coded OFDM over different channel models. In 2018 15th international Bhurban conference on applied sciences and technology (IBCAST), Islamabad (pp. 764–769). https://​doi.​org/​10.​1109/​IBCAST.​2018.​8312308.​
30.
go back to reference Abdoli, J., Jia, M., & Ma, J. (2015). Filtered OFDM: A new waveform for future wireless systems. In 2015 IEEE 16th international workshop on signal processing advances in wireless communications (SPAWC), Stockholm (pp. 66–70). Abdoli, J., Jia, M., & Ma, J. (2015). Filtered OFDM: A new waveform for future wireless systems. In 2015 IEEE 16th international workshop on signal processing advances in wireless communications (SPAWC), Stockholm (pp. 66–70).
31.
go back to reference Qiu, Y., Liu, Z., Qu, D. (2017). Filtered bank based implementation for filtered OFDM. In 2017 7th IEEE international conference on electronics information and emergency communication (ICEIEC) (pp. 15–18). Qiu, Y., Liu, Z., Qu, D. (2017). Filtered bank based implementation for filtered OFDM. In 2017 7th IEEE international conference on electronics information and emergency communication (ICEIEC) (pp. 15–18).
Metadata
Title
Performance Evaluation of Polar Coded Filtered OFDM for Low Latency Wireless Communications
Authors
T. Deepa
N. Bharathiraja
Publication date
14-10-2020
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 3/2021
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-020-07777-2

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