Yeganeh Jalalpour

dblp:257/4421 · DBLP profile ↗
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2ranked-venue papers in the field
2as first author
2since 2021 · last 2025
0000-0002-7865-3648ORCID · corroborated

Domains — venue-derived; a paper can count in several

Other / Interdisciplinary · 2 (2 first)
YearPublicationVenuePosition
2025 Adaptive Image Acquisition Algorithms for Resource-Constrained Single-Photon Cameras
abstract
Emerging single-photon camera (SPC) technologies have unique challenges in data acquisition and processing. Unlike conventional sensors that produce a single 8- to 16-bit brightness value per pixel, SPCs record photon arrivals with many more samples per pixel, using high floating-point precision for each photon collected. This means that they must handle potentially millions of timestamps, especially at higher spatial resolutions and in the presence of ambient light, creating bottlenecks within the pixel circuitry. To address these challenges associated with SPCs, this paper proposes adaptive algorithms designed to efficiently distribute hardware resources among groups of pixels. By selectively subsampling the data entering the sensor, the proposed approach significantly reduces system load and opens new paths toward high-quality HDR imaging using SPCs at high spatial resolutions.
Yeganeh Jalalpour, Wu-chi Feng
MMAsia1
2022 Sequential Frame-Interpolation and DCT-based Video Compression Framework
abstract
Video data is ubiquitous; capturing, transferring, and storing even compressed video data is challenging because it requires substantial resources. With the large amount of video traffic being transmitted on the internet, any improvement in compressing such data, even small, can drastically impact resource consumption. In this paper, we present a hybrid video compression framework that unites the advantages of both DCT-based and interpolation-based video compression methods in a single framework. We show that our work can deliver the same visual quality or, in some cases, improve visual quality while reducing the bandwidth by 10--20%.
Yeganeh Jalalpour, Wu-chi Feng, Feng Liu 0015
MMAsia1