Title :
High Speed Frequency Hopping Using Injection Locked Front-Ends
Author :
Harjani, Ramesh ; Lanka, Narasimha
Author_Institution :
Univ. of Minnesota, Minneapolis
Abstract :
Direct digital synthesis (DDS) systems allow for the generation of accurate and versatile analog waveforms. However, DDS´s have been limited in generating very high frequency signals. In this paper, we show that a combination of a DDS and harmonic injection locking can result in a very low power and area-efficient high-frequency synthesizer. We show that injection locked oscillators (ILOs) are capable of almost instantaneous locking and we also present the related understanding related of the frequency acquisition process in ILOs. We use this understanding to develop a new architecture for DDS operation. The novel architecture presented in this paper preserves the advantages of DDS such as very high speed frequency hopping and can generate RF frequencies which is not possible with traditional DDS circuits. Simulation results for a 7 GHz oscillator with fundamental and harmonic injection locking are used to validate the instantaneous locking necessary in a high frequency DDS.
Keywords :
direct digital synthesis; injection locked oscillators; microwave oscillators; DDS systems; direct digital synthesis systems; frequency 7 GHz; harmonic locking; high speed frequency hopping; high-frequency synthesizer; injection locked front-ends; injection locked oscillators; very high frequency signals; Frequency diversity; Frequency shift keying; Frequency synthesizers; Injection-locked oscillators; Nonlinear control systems; Phase locked loops; Power harmonic filters; Signal generators; Signal synthesis; Spread spectrum communication;
Conference_Titel :
Signals, Systems and Computers, 2007. ACSSC 2007. Conference Record of the Forty-First Asilomar Conference on
Conference_Location :
Pacific Grove, CA
Print_ISBN :
978-1-4244-2109-1
Electronic_ISBN :
1058-6393
DOI :
10.1109/ACSSC.2007.4487444