DocumentCode :
3595568
Title :
Local frequency offset spatial diversity with pi/4-DQPSK in implant communications
Author :
Anzai, Daisuke ; Koya, Takashi ; Jianqing Wang
Author_Institution :
Grad. Sch. of Eng., Nagoya Inst. of Technol., Nagoya, Japan
fYear :
2014
Firstpage :
2164
Lastpage :
2167
Abstract :
Space diversity reception is well known as a technique that can improve the performance of wireless communication systems without any temporal and spectral resource expansion. Implant body area networks (BANs) require low energy consumption and in some cases high-speed transmission. Therefore, applying spatial diversity reception to implant BANs can be expected to fulfill these requirements. For this purpose, this paper presents a local frequency offset diversity system with π/4-differential quadrature phase shift keying (DQPSK) for implant BANs that offer improved communication performance with a simpler receiver structure, and evaluates the proposal´s bit error rate (BER) performance. We first confirm that the local frequency offset diversity reception can effectively improve the communication performance of implant BANs. We then perform an analysis of a realistic communication performance, namely, a link budget analysis based on derived BER performance and evaluate the link parameters including system margin and maximum link distance. These results demonstrate that the local frequency offset diversity system can realize a reliable communication link in a realistic implant BAN scenario.
Keywords :
biomedical communication; body area networks; diversity reception; error statistics; quadrature phase shift keying; BAN; BER performance; bit error rate; body area networks; communication link; communication performance improvement; differential quadrature phase shift keying; implant communications; link budget analysis; local frequency offset spatial diversity; maximum link distance; pi-4-DQPSK; space diversity reception; system margin; wireless communication systems; Bit error rate; Endoscopes; Frequency diversity; Implants; Receivers; Spatial diversity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Personal, Indoor, and Mobile Radio Communication (PIMRC), 2014 IEEE 25th Annual International Symposium on
Type :
conf
DOI :
10.1109/PIMRC.2014.7136531
Filename :
7136531
Link To Document :
بازگشت