Title :
Performance analysis and design space exploration for high-end biomedical applications: Challenges and solutions
Author :
Al Khatib, Iyad ; Bertozzi, Davide ; Jantsch, Axel ; Benini, Luca
Author_Institution :
R. Inst. of Technol., IMIT, Sweden
fDate :
Sept. 30 2007-Oct. 3 2007
Abstract :
High-end biomedical applications are a good target for specific-purpose system-on-chip (SoC) implementations. Human heart electrocardiogram (ECG) real-time monitoring and analysis is an immediate example with a large potential market. Today, the lack of scalable hardware platforms limits real-time analysis capabilities of most portable ECG analyzers, and prevents the upgrade of analysis algorithms for better accuracy. Multiprocessor system-on-chip (MPSoC) technology, which is becoming main-stream in the domain of high-performance microprocessors, is becoming attractive even for power-constrained portable applications, due to the capability to provide scalable computation horsepower at an affordable power cost. This paper illustrates one of the first comprehensive HW/SW exploration frameworks to fully exploit MPSoC technology to improve the quality of real-time ECG analysis.
Keywords :
biomedical electronics; biomedical engineering; electrocardiography; microprocessor chips; system-on-chip; MPSoC; SoC; design space exploration; electrocardiogram; high-end biomedical applications; human heart; multiprocessor system-on-chip; real-time ECG analysis; system-on-chip; Algorithm design and analysis; Computer architecture; Electrocardiography; Heart; Lead; Real time systems; System-on-a-chip; Multiprocessor System-on-Chip; biomedical; design space exploration; electrocardiogram algorithms; real-time analysis;
Conference_Titel :
Hardware/Software Codesign and System Synthesis (CODES+ISSS), 2007 5th IEEE/ACM/IFIP International Conference on
Conference_Location :
Salzburg
Print_ISBN :
978-1-5959-3824-4