Embedded Architecture for Simultaneous Analog Signal Processing
Beszédes, Bertalan
Kimathi, Stephen M.
Petőné Csuka, Ildikó
2025-12-04T09:37:58Z
2025-12-04T09:37:58Z
2025
http://hdl.handle.net/20.500.14044/36304
The efficient processing of multiple analog signals
in real time is a critical challenge in modern electronic systems,
particularly in applications requiring high bandwidth, low latency,
and low power consumption. This paper presents a comparative
study of electronics architectures for simultaneous analog
signal processing, with a focus on the conceptual design
trade-offs between digital, analog, and hybrid approaches. Several
implementation strategies are evaluated, including FPGAbased
reconfigurable digital logic, FPAA-based adaptive analog
computation, microcontroller-centric designs with integrated
peripherals, and mixed architectures combining analog multiplexers,
comparators, ADCs, and DACs. The analysis highlights
the strengths and limitations of each paradigm. The results
underline the importance of selecting architecture according
to system-level requirements and suggest future directions
for hybrid reconfigurable platforms that combine the programmability
of digital logic with the efficiency of analog signal domains.
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Embedded Architecture for Simultaneous Analog Signal Processing
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Open access
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Óbudai Egyetem
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2025 November 13.
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Budapest
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Alba Regia Műszaki Kar
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Óbudai Egyetem
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Műszaki tudományok - informatikai tudományok
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electronyics architecture
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analog signal design
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hybrid system design
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mixed-signal systems
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simultaneous analog processing
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high-speed electronics
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PROCEEDINGS of 20th International Symposium on Applied Informatics and Related Areas