Balancing Timeliness and Privacy in Discrete-Time Updating Systems

Fuente: arXiv
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Main Authors: Sathyavageeswaran, Nitya, Sarwate, Anand D., Mandayam, Narayan B., Yates, Roy D.
Format: Preprint
Published: 2025
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author Sathyavageeswaran, Nitya
Sarwate, Anand D.
Mandayam, Narayan B.
Yates, Roy D.
author_facet Sathyavageeswaran, Nitya
Sarwate, Anand D.
Mandayam, Narayan B.
Yates, Roy D.
contents We study the trade-off between Age of Information (AoI) and maximal leakage (MaxL) in discrete-time status updating systems. A source generates time-stamped update packets that are processed by a server that delivers them to a monitor. An adversary, who eavesdrops on the server-monitor link, wishes to infer the timing of the underlying source update sequence. The server must balance the timeliness of the status information at the monitor against the timing information leaked to the adversary. We consider a model with Bernoulli source updates under two classes of Last-Come-First-Served (LCFS) service policies: (1) Coupled policies that tie the server's deliveries to the update arrival process in a preemptive queue; (2) Decoupled (dumping) policies in which the server transmits its freshest update according to a schedule that is independent of the update arrivals. For each class, we characterize the structure of the optimal policy that minimizes AoI for a given MaxL rate. Our analysis reveals that decoupled dumping policies offer a superior age-leakage trade-off to coupled policies. When subject to a MaxL constraint, we prove that the optimal dumping strategy is achieved by dithering between two adjacent deterministic dump periods.
format Preprint
id arxiv_https___arxiv_org_abs_2512_13439
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Balancing Timeliness and Privacy in Discrete-Time Updating Systems
Sathyavageeswaran, Nitya
Sarwate, Anand D.
Mandayam, Narayan B.
Yates, Roy D.
Systems and Control
We study the trade-off between Age of Information (AoI) and maximal leakage (MaxL) in discrete-time status updating systems. A source generates time-stamped update packets that are processed by a server that delivers them to a monitor. An adversary, who eavesdrops on the server-monitor link, wishes to infer the timing of the underlying source update sequence. The server must balance the timeliness of the status information at the monitor against the timing information leaked to the adversary. We consider a model with Bernoulli source updates under two classes of Last-Come-First-Served (LCFS) service policies: (1) Coupled policies that tie the server's deliveries to the update arrival process in a preemptive queue; (2) Decoupled (dumping) policies in which the server transmits its freshest update according to a schedule that is independent of the update arrivals. For each class, we characterize the structure of the optimal policy that minimizes AoI for a given MaxL rate. Our analysis reveals that decoupled dumping policies offer a superior age-leakage trade-off to coupled policies. When subject to a MaxL constraint, we prove that the optimal dumping strategy is achieved by dithering between two adjacent deterministic dump periods.
title Balancing Timeliness and Privacy in Discrete-Time Updating Systems
topic Systems and Control
url https://arxiv.org/abs/2512.13439