access icon free Low-complexity iterative interference cancellation multiuser detection based on channel selection and adaptive transmission

In this study, a new iterative interference cancellation (IIC) multiuser detection method is proposed for overloaded multiple-input multiple-output (MIMO) coded orthogonal frequency division multiplexing systems. A channel analyser is used to detect those channels for which the IIC detector will not converge. For these we propose two adaptive methods to enable detection. The first is to use a lower code rate for these channels. The second is to divide the transmitters into several groups which transmit in separate slots. Low-complexity matched filter is applied, and both successive interference cancellation and parallel interference cancellation are considered for interference reconstruction. The simulation results show that the proposed technique can achieve near-optimum bit error rate performance and optimum frame error rate performance, with lower complexity than optimum maximum-likelihood methods.

Inspec keywords: channel coding; channel estimation; signal reconstruction; multiuser detection; iterative methods; matched filters; error statistics; modulation coding; radio transmitters; MIMO communication; interference suppression; OFDM modulation

Other keywords: overloaded MIMO; frame error rate; lower code rate; transmitters; bit error rate; adaptive transmission method; channel detection; interference reconstruction; iterative interference cancellation; OFDM; coded orthogonal frequency division multiplexing system; IIC multiuser detection method; successive interference cancellation; channel selection; parallel interference cancellation; low-complexity matched filter; channel analyser; multiple input multiple output

Subjects: Signal detection; Interpolation and function approximation (numerical analysis); Radio links and equipment; Filtering methods in signal processing; Communication channel equalisation and identification; Other topics in statistics; Modulation and coding methods; Electromagnetic compatibility and interference

References

    1. 1)
      • 7. Choi, W., Cheong, K., Cioffi, J.M.: ‘Iterative soft interference cancellation for multiple antenna systems’. IEEE WCNC, Chicago, IL, September 2000, pp. 304309.
    2. 2)
    3. 3)
    4. 4)
      • 12. Chen, M., Burr, A.G.: ‘Low-complexity iterative detection for overloaded uplink multiuser MIMO OFDM system’. ITG WSA, Dresden, Germany, March 2012, pp. 338342.
    5. 5)
    6. 6)
      • 1. Foschini, G.J.: ‘Layered space-time architecture for wireless communication in a fading environment when using multi-element antennas’, Bell Labs Tech. J., Autumn, 1996, pp. 4159.
    7. 7)
      • 5. Hanzo, L., Munster, M., Choi, B.J., Keller, T.: ‘OFDM and MC-CDMA for broadband multi-user communications, WLANs and broadcasting’ (IEEE Press, 2003).
    8. 8)
    9. 9)
      • 4. Verdu, S.: ‘Multiuser detection. Cambridge’ (Cambridge University Press, UK, 1998).
    10. 10)
    11. 11)
    12. 12)
    13. 13)
    14. 14)
http://iet.metastore.ingenta.com/content/journals/10.1049/iet-com.2013.0729
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