Title :
A CAE design system for digital signal processing
Author :
Yu, C.C. ; Ashby, D.C. ; Wu, Y.S.
Author_Institution :
US Naval Res. Lab., Washington, DC, USA
Abstract :
A completely integrated environment for digital signal processing system design is introduced. This design system provides facilities for algorithm development, simulation and system verification. A graphics entry capture system enables designer interaction at each level of the development process. By high-level software simulation, it is possible to verify whether a design meets system requirements. By fine-grain simulation, system operation and algorithms can be tested. This design environment offers a closed-loop approach for development and implementation of a high-performance signal processing system. It provides a method for a functional migration from algorithm specification to system integration. The target methodology for this design environment is ALPS (alternate low-level primitive structures), a self-synchronizing, self-scheduling, distributed control architecture
Keywords :
CAD; computerised signal processing; development systems; CAE design system; algorithm development; algorithm specification; algorithm testing; alternate low-level primitive structures; closed-loop approach; design environment; designer interaction; development process; digital signal processing system design; distributed control architecture; fine-grain simulation; functional migration; graphics entry capture system; high-level software simulation; integrated environment; self-scheduling; self-synchronizing; system integration; system operation testing; system requirements; system verification; target methodology; Communication system control; Computer aided engineering; Computer architecture; Digital signal processing; Distributed control; Flow graphs; Graphics; Signal design; Signal processing algorithms; Very large scale integration;
Conference_Titel :
Circuits and Systems, 1989., IEEE International Symposium on
Conference_Location :
Portland, OR
DOI :
10.1109/ISCAS.1989.100325