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אקדמי בכיר

False Negative Awareness in Indicator-Based Caching Systems

Distributed caching systems such as content distribution networks often advertise their content via lightweight approximate indicators (e.g., Bloom filters) to efficiently inform clients where each datum is likely cached. While false-positive indications are necessary and well understood, most existing works assume no false-negative indications. Our work illustrates practical scenarios where false-negatives are unavoidable and ignoring them significantly impacts system performance. Specifically, we focus on false-negatives induced by indicator staleness, which arises whenever the system advertises the indicator only periodically, rather than immediately reporting every change in the cache. Such scenarios naturally occur, e.g., in bandwidth-constraint environments or when latency impedes each client's ability to obtain an updated indicator. Our work introduces novel false-negative aware access policies that continuously estimate the false-negative ratio and sometimes access caches despite negative indications. We present optimal policies for homogeneous settings and provide approximation guarantees for our algorithms in heterogeneous environments. We further perform an extensive simulation study with multiple real system traces. We show that our false-negative aware algorithms incur a significantly lower service cost than existing approaches or match the cost of these approaches while requiring an order of magnitude fewer resources (e.g., caching capacity or bandwidth).

שפת פרסום אנגלית
דפים 2674-2687
כתב עת IEEE/ACM Transactions on Networking
כרך 30
נושא מספר 6
סטטוס פרסום פורסם - 01.12.2022

Keywords

Cache memory
content distribution networks
distributed databases
forecast uncertainty
storage area networks

ASJC Scopus subject areas

Software
Computer Science Applications
Computer Networks and Communications
Electrical and Electronic Engineering
גישה למסמך
10.1109/TNET.2022.3177282
קבצים וקישורים אחרים
Link to publication in Scopus