3rd International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications

Research Article

The Constraints Satisfied to Suppress the Interferences Caused by MB-OFDM UWB Based Cognitive Radio Systems; One Type of Low Density Parity Check(LDPC)-like Modulation Scheme

  • @INPROCEEDINGS{10.1109/CROWNCOM.2008.4562473,
        author={Cheng Yang and Zheng Zhou and YaBin Ye},
        title={The Constraints Satisfied to Suppress the Interferences Caused by MB-OFDM UWB Based Cognitive Radio Systems; One Type of Low Density Parity Check(LDPC)-like Modulation Scheme},
        proceedings={3rd International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications},
        publisher={IEEE},
        proceedings_a={CROWNCOM},
        year={2008},
        month={7},
        keywords={MB-OFDM UWB based;cognitive radio; interfrences; constraints; LDPC-like  modulation scheme;},
        doi={10.1109/CROWNCOM.2008.4562473}
    }
    
  • Cheng Yang
    Zheng Zhou
    YaBin Ye
    Year: 2008
    The Constraints Satisfied to Suppress the Interferences Caused by MB-OFDM UWB Based Cognitive Radio Systems; One Type of Low Density Parity Check(LDPC)-like Modulation Scheme
    CROWNCOM
    IEEE
    DOI: 10.1109/CROWNCOM.2008.4562473
Cheng Yang1,*, Zheng Zhou1,*, YaBin Ye2
  • 1: Key Lab of Universal Wireless Communications, Ministry of Education, China Wireless Network Lab, Beijing University of Posts and Telecommunications Beijing, China
  • 2: Create-Net, Italy Italy
*Contact email: youngch727@163.com, zzhou@bupt.edu.cn

Abstract

A Mathematical expression of side-band interferences caused by sub-carriers of multi-band (MB)-OFDM UWB based cognitive radio is derived. Based on this expression, the constraint relationship among transmitted symbols, which is satisfied to suppress the interferences, is obtained. Combined with this constraint, the design process of a type of LDPC-like modulation scheme is described. With modulation schemes of this type, the bit rate error (BER) performance of MB-OFDM UWB based cognitive radio systems is improved, and simultaneously, the side-band signals decrease more quickly. As a result, by the only measure of tuning off the sub-carriers at the corresponding position a deeper spectral notch can be generated. The interferences to other protected services are suppressed sufficiently and finally the coexistence is achieved between MB-OFDM UWB based cognitive radio system and other narrow band radio systems.