Development and Proof-of-Concept Evaluation of a Compact Autonomous Multi-Parameter Instrumentation Platform for Confined Dynamic Systems

A compact autonomous recorder was developed for short-duration measurements in confined moving systems where event-time cabling is unavailable. The cylindrical platform combines pressure, high-range acceleration, and angular-velocity interfaces with channel-specific conditioning, FPGA/microcontroller control, SDRAM buffering, eMMC storage, internal power, and mechanical support. Its operating sequence covers baseline checks, circular buffering, threshold-initiated event capture, nonvolatile storage, and post-test retrieval. An eight-field map and count-to-unit equations describe the readout convention. Three-channel electrical checks captured 1 kHz inputs and gave voltage spans of 6–8 mV at a nominal 5 V input. The loading evaluation comprised one acceleration–angular-velocity event and one pressure–acceleration event. Both tests stored eight-field event records over 8 ms at a nominal sampling rate of 1 MS/s per recorded field. Using the count-to-unit conversions, axial acceleration exceeded 24,000 g in the first event and reached approximately 27,000 g in the second, which also recorded approximately 354 MPa pressure. Both records were retrieved after recovery, with post-event communication available. These results demonstrate autonomous recording and recovery for two paired sensing configurations within the same compact architecture. Full simultaneous pressure–acceleration–angular-velocity operation remains to be evaluated.

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Journal
Electronics
Published
2026-09-24
DOI
https://doi.org/10.3390/electronics15194408
Primary Topic
Advancements in PLL and VCO Technologies
Type
article
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Development and Proof-of-Concept Evaluation of a Compact Autonomous Multi-Parameter Instrumentation Platform for Confined Dynamic Systems

Weige Liang, Chi Li, Yu Zhang, Shiyan Sun et al.
Electronics
Advancements in PLL and VCO Technologies
article

Development and Proof-of-Concept Evaluation of a Compact Autonomous Multi-Parameter Instrumentation Platform for Confined Dynamic Systems

Weige Liang, Chi Li, Yu Zhang, Shiyan Sun, Peiyi Zhou
article en

Abstract

A compact autonomous recorder was developed for short-duration measurements in confined moving systems where event-time cabling is unavailable. The cylindrical platform combines pressure, high-range acceleration, and angular-velocity interfaces with channel-specific conditioning, FPGA/microcontroller control, SDRAM buffering, eMMC storage, internal power, and mechanical support. Its operating sequence covers baseline checks, circular buffering, threshold-initiated event capture, nonvolatile storage, and post-test retrieval. An eight-field map and count-to-unit equations describe the readout convention. Three-channel electrical checks captured 1 kHz inputs and gave voltage spans of 6–8 mV at a nominal 5 V input. The loading evaluation comprised one acceleration–angular-velocity event and one pressure–acceleration event. Both tests stored eight-field event records over 8 ms at a nominal sampling rate of 1 MS/s per recorded field. Using the count-to-unit conversions, axial acceleration exceeded 24,000 g in the first event and reached approximately 27,000 g in the second, which also recorded approximately 354 MPa pressure. Both records were retrieved after recovery, with post-event communication available. These results demonstrate autonomous recording and recovery for two paired sensing configurations within the same compact architecture. Full simultaneous pressure–acceleration–angular-velocity operation remains to be evaluated.

ElectronicsVol. 15(19)
Naval University of Engineering (CN)
Affordable and clean energy
Openalex Percentile: Top 22%
Advancements in PLL and VCO Technologies
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Development and Proof-of-Concept Evaluation of a Compact Autonomous Multi-Parameter Instrumentation Platform for Confined Dynamic Systems — Weige Liang, Chi Li, et al. · Electronics (2026) | TGRS Research Map | TGRS