Title :
DSP implementation of Digital Pre-distortion in wireless communication systems
Author :
Hong Ning Choo ; Varahram, Pooria ; Ali, Borhanuddin M.
Author_Institution :
Dept. of Comput. & Commun. Syst. Eng., Univ. Putra Malaysia, Serdang, Malaysia
Abstract :
This paper presents a Digital Signal Processor (DSP) implementation of Digital Pre-distortion (DPD) targeting the 3rd Generation/4th Generation (3G/4G) wireless networks. The non-linearity of the Power Amplifier (PA) causes several issues such as Adjacent Channel Interference (ACI), power wastage, high energy consumption, and system inefficiency. These shortcomings result in performance limitation for the wireless communications system which is undesirable for the industry. DPD is chosen as the PA linearization method due to its overall advantages in Adjacent Channel Power Reduction (ACPR), cost, efficiency, and implementation flexibility. The DPD system is developed using the C++ Hardware Programming Language in order to be implemented into the target Digital Signal Processor (DSP), the soft-core Microblaze processor by Xilinx. The developed system in C++ is compared with the conventional Matlab Simulation and a performance difference of 0-10dB in ACPR is observed. The C++ DSP Implementation is capable of achieving up to 15dB of ACPR for WiMAX signal in 4G networks and 25dB for 2-carrier Wideband Code Division Multiple Access (2C-WCDMA) signals in 3G networks.
Keywords :
3G mobile communication; 4G mobile communication; C++ language; WiMax; adjacent channel interference; code division multiple access; digital signal processing chips; distortion; power amplifiers; 2-carrier wideband code division multiple access; 2C-WCDMA; 3rd generation wireless networks; 4th generation wireless networks; ACI; ACPR; C++ hardware programming language; DSP implementation; Matlab simulation; PA linearization method; WiMAX signal; adjacent channel interference; adjacent channel power reduction; digital pre-distortion; digital signal processor; power amplifier; soft-core Microblaze processor; wireless communication systems; Algorithm design and analysis; Digital signal processing; MATLAB; Multiaccess communication; Power amplifiers; Table lookup; WiMAX; 3G; 4G; C++; Digital Pre-Distortion; MATLAB; PA Linearization; Power Amplifier;
Conference_Titel :
Communications (MICC), 2013 IEEE Malaysia International Conference on
Conference_Location :
Kuala Lumpur
DOI :
10.1109/MICC.2013.6805826