Title :
A Carrier-Suppressed Balance BPSK Modulator for Impulse Radio Ultra-Wideband Transmitter
Author :
Zhang, Qiong ; Yang, Ying ; Wang, Jun ; Wang, Weidong
Author_Institution :
Lab. of Wireless Inf. Network, Univ. of Sci. & Technol. of China, Hefei, China
Abstract :
A carrier-suppressed balance binary phase shift keying (BPSK) modulator for impulse radio ultra-wide band (IR-UWB) transmitter is proposed. The principle of the carrier-suppressed balance modulator is to split one local oscillator signal into two balance channels with 180deg out-of-phase through a 0/pi microstrip power splitter, then both signals are multiplied with two positive pulses respectively and at last two modulation signals converges at a single channel in the microstrip combiner. Leakage of carrier wave can be significantly suppressed because it is counteracted in the process of modulation. Furthermore, the proposed modulator has a lower error vector magnitude (EVM). And the stringent demanding of timing jitter is largely reduced compared to the noncoherent modulation scheme. The carrier-suppressed balance modulator is fabricated and measured in the end of the paper, which has a suppression improvement of 15.7 dB on carrier wave and a low value of EVM at 5.17%.
Keywords :
microstrip components; modulators; phase shift keying; power combiners; power dividers; timing jitter; ultra wideband communication; carrier-suppressed balance BPSK modulator; error vector magnitude; impulse radio ultra-wideband transmitter; microstrip combiner; microstrip power splitter; oscillator signal; power divider; timing jitter; Amplitude modulation; Binary phase shift keying; CMOS technology; Local oscillators; Microstrip; Phase modulation; Pulse modulation; Radio transmitters; Timing jitter; Ultra wideband technology;
Conference_Titel :
Wireless Communications, Networking and Mobile Computing, 2009. WiCom '09. 5th International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-3692-7
Electronic_ISBN :
978-1-4244-3693-4
DOI :
10.1109/WICOM.2009.5305512