Title :
Frequency stabilized direct GMSK modulator
Author :
Klymyshyn, David M. ; Kumar, Surinder ; Mohammadi, Abbas
Author_Institution :
Saskatchewan Univ., Saskatoon, Sask., Canada
Abstract :
A phase locked loop based architecture is proposed for generation and frequency stabilization of direct Gaussian minimum shift keying (GMSK) at microwave and millimeterwave frequencies. A continuous phase frequency shift keyed (CPFSK) signal with a modulation index of 0.5 is produced at the desired output frequency using a full 360 degree linear continuous phase modulator that is controlled by the integrated baseband information signal. This modulated signal is used as the reference signal for a phase locked high power voltage controlled oscillator. The phase locked loop facilitates reference signal frequency tracking and provides Gaussian spectral shaping to the modulated output signal. Phase locked loop imperfections and their effect on the modulated output signal are considered and simulation results are presented
Keywords :
continuous phase modulation; digital radio; frequency stability; microwave circuits; millimetre wave circuits; minimum shift keying; modulators; phase locked loops; radio transmitters; voltage-controlled oscillators; CPFSK signal; Gaussian minimum shift keying; Gaussian spectral shaping; continuous phase frequency shift keying; digital radio systems; frequency stabilized direct GMSK modulator; high power voltage controlled oscillator; integrated baseband information signal; linear continuous phase modulator; microwave frequency; millimeter wave frequency; modulated output signal; modulation index; output frequency; phase locked loop based architecture; radio transmitter; reference signal; reference signal frequency tracking; simulation results; Amplitude modulation; Asynchronous transfer mode; Chirp modulation; Costs; Digital modulation; Frequency shift keying; Phase locked loops; Phase modulation; Radio transmitters; Voltage-controlled oscillators;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 1998. The Ninth IEEE International Symposium on
Conference_Location :
Boston, MA
Print_ISBN :
0-7803-4872-9
DOI :
10.1109/PIMRC.1998.731408