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Semantic Load Shedding over Real-Time Data Streams

Li Ma, Qiongsheng Zhang, Kun Wang, Xin Li, Hongan Wang

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Abstract

When streams rates exceed the system capacity, a Data Stream Management System (DSMS) becomes overloaded and fails to satisfy all kinds of requirements, such as tuple latency and result precision. Especially, in a time-critical environment, queries should be completed not just timely but within certain deadlines. Semantic load shedding is an effective approach to alleviate workloads. In order to improve the efficiency of load shedding over real-time data streams, we present a semantic and flexible load shedding algorithm based on priority table (SLS-PT) which considers about execution costs and tuples' values together when deciding which tuples are dropped.

About this research paper

What this paper is about

When streams rates exceed the system capacity, a Data Stream Management System (DSMS) becomes overloaded and fails to satisfy all kinds of requirements, such as tuple latency and result precision. Especially, in a time-critical environment, queries should be completed not just timely but within certain deadlines. Semantic load shedding is an effective approach to alleviate workloads. In order to improve the efficiency of load shedding over real-time data streams, we present a semantic and flexible load shedding algorithm based on priority table (SLS-PT) which considers about execution costs and tuples' values together when deciding which tuples are dropped.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

When streams rates exceed the system capacity, a Data Stream Management System (DSMS) becomes overloaded and fails to satisfy all kinds of requirements, such as tuple latency and result precision. Especially, in a time-critical environment, queries should be completed not just timely but within certain deadlines. Semantic load shedding is an effective approach to alleviate workloads. In order to improve the efficiency of load shedding over real-time data streams, we present a semantic and flexible load shedding algorithm based on priority table (SLS-PT) which considers about execution costs and tuples' values together when deciding which tuples are dropped.

Key concepts: Tuple, Computer science, Load Shedding, Latency (audio), Data stream mining, STREAMS, Data stream, Response time

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