DESIGN OF DIGITAL IMPACTING FILTER IN CP-EBPSK WITH RANDOM-POLAR COMMUNICATION SYSTEM

To solve the difficulty of designing digital impacting filter in the receiver of random-polar modulated Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK), a design method based on Quantum-behaved Particle Swarm Optimization (QPSO) algorithm is proposed. Firstly, QPSO is introduced...

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Vydáno v:Journal of electronics (China) Ročník 29; číslo 3; s. 328 - 333
Hlavní autoři: Jin, Yi, Wu, Lenan, Chen, Yifang, Yu, Jing
Médium: Journal Article
Jazyk:angličtina
Vydáno: Heidelberg SP Science Press 01.07.2012
School of Information Science and Engineering, Southeast University, Nanjing 210096, China
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ISSN:0217-9822, 1993-0615
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Abstract To solve the difficulty of designing digital impacting filter in the receiver of random-polar modulated Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK), a design method based on Quantum-behaved Particle Swarm Optimization (QPSO) algorithm is proposed. Firstly, QPSO is introduced elaborately, and the basic flow of QPSO is Mso given. Then, the de- modulation principle of digital impacting filter in the communication system of CP-EBPSK with random-polar is demonstrated, and QPSO is utilized to design the digital impacting filter, which also takes the effect of finite word length into consideration when implemented by hardware. Finally, the proposed method is simulated. Simulation results show that the digital impacting filter designed by new method can derive satisfied demodulation performance.
AbstractList To solve the difficulty of designing digital impacting filter in the receiver of random-polar modulated Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK), a design method based on Quantum-behaved Particle Swarm Optimization (QPSO) algorithm is proposed. Firstly, QPSO is introduced elaborately, and the basic flow of QPSO is Mso given. Then, the de- modulation principle of digital impacting filter in the communication system of CP-EBPSK with random-polar is demonstrated, and QPSO is utilized to design the digital impacting filter, which also takes the effect of finite word length into consideration when implemented by hardware. Finally, the proposed method is simulated. Simulation results show that the digital impacting filter designed by new method can derive satisfied demodulation performance.
To solve the difficulty of designing digital impacting filter in the receiver of random-polar modulated Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK), a design method based on Quantum-behaved Particle Swarm Optimization (QPSO) algorithm is proposed. Firstly, QPSO is introduced elaborately, and the basic flow of QPSO is also given. Then, the demodulation principle of digital impacting filter in the communication system of CP-EBPSK with random-polar is demonstrated, and QPSO is utilized to design the digital impacting filter, which also takes the effect of finite word length into consideration when implemented by hardware. Finally, the proposed method is simulated. Simulation results show that the digital impacting filter designed by new method can derive satisfied demodulation performance.
Author Jin Yi Wu Lenan Chen Yifang Yu Jing
AuthorAffiliation School of Information Science and Engineering, Southeast University, Nanjing 210096, China
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Cites_doi 10.1109/18.661517
10.1016/j.dsp.2009.03.003
10.1109/TCSII.2009.2038514
10.1109/98.788210
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Issue 3
Keywords Effect of finite word length
Quantum-behaved Particle Swarm Optimization algorithm (QPSO)
TN911.2
Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK)
Digital impacting filter
Demodulation
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Notes To solve the difficulty of designing digital impacting filter in the receiver of random-polar modulated Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK), a design method based on Quantum-behaved Particle Swarm Optimization (QPSO) algorithm is proposed. Firstly, QPSO is introduced elaborately, and the basic flow of QPSO is Mso given. Then, the de- modulation principle of digital impacting filter in the communication system of CP-EBPSK with random-polar is demonstrated, and QPSO is utilized to design the digital impacting filter, which also takes the effect of finite word length into consideration when implemented by hardware. Finally, the proposed method is simulated. Simulation results show that the digital impacting filter designed by new method can derive satisfied demodulation performance.
Extended Binary Phase Shift Keying with Continuous Phase (CP-EBPSK); Digitalimpacting filter; Quantum-behaved Particle Swarm Optimization algorithm (QPSO); Demodulation;Effect of finite word length
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School of Information Science and Engineering, Southeast University, Nanjing 210096, China
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Title DESIGN OF DIGITAL IMPACTING FILTER IN CP-EBPSK WITH RANDOM-POLAR COMMUNICATION SYSTEM
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