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Real time QKD Post Processing based on Reconfigurable Hardware Acceleration

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arxiv 2211.17019 v1 pith:7WKGPBNR submitted 2022-11-30 cs.CR

classification cs.CR
keywords frameworkdesigndistillationfpgahighpost-processingquantumsynthesis
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Key Distillation is an essential component of every Quantum Key Distribution system because it compensates the inherent transmission errors of quantum channel. However, throughput and interoperability aspects of post-processing engine design often neglected, and exiting solutions are not providing any guarantee. In this paper, we propose multiple protocol support high throughput key distillation framework implemented in a Field Programmable Gate Array (FPGA) using High-Level Synthesis (HLS). The proposed design uses a Hadoop framework with a map-reduce programming model to efficiently process large chunks of raw data across the limited computing resources of an FPGA. We present a novel hardware-efficient integrated post-processing architecture that offer dynamic error correction, a side-channel resistant authentication scheme, and an inbuilt high-speed encryption application, which uses the key for secure communication. We develop a semi automated High level synthesis framework capable of handling different QKD protocols with promising speedup. Overall, the experimental results shows that there is a significant improvement in performance and compatible with any discrete variable QKD systems.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Real-Time VPN Traffic over ETSI GS QKD 014 Key Delivery with a LuxQuanta NOVA QKD Platform

    quant-ph 2026-07 conditional novelty 4.5 of 10

    A user-space VPN on Jetson Xavier NX peers ran eight hours of bidirectional real-time audio/video using keys delivered by LuxQuanta NOVA via ETSI GS QKD 014 with in-band key_ID transport.

  2. System design and realisation towards optimising secure key bits in free space QKD

    quant-ph 2025-08 unverdicted novelty 4.0 of 10

    A practical free-space BB84 QKD system design with improved temporal-window selection and random-sampling error estimation is reported, along with EPCD integration to increase key rates.

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