Application-Aware Power Saving for Online Transaction Processing Using Dynamic Voltage and Frequency Scaling in a Multicore Environment
نویسندگان
چکیده
Power consumption in data centers has been growing remarkably recent years, and power saving of their servers is essential. For power saving of these servers, power saving of an online transaction processing (OLTP) systems, which are major applications in data centers, is important. The OLTP system consumes relatively large amount of power because it is often equipped with a lot of computing and storage resources. Its power saving is difficult because it is required to meet a service level agreement (SLA), and few power saving technologies have been proposed so far. In this paper, we proposed an application-aware power saving for OLTP in a multicore environment. Our proposed methodology aims to save power consumption of OLTP systems by dynamically scaling the operating frequency of processors based on response time observation. Response time is often an important metric of SLA. Application-aware power saving enables power saving in such systems subject to SLAs. In our experimental evaluations using industrial standard benchmark TPC-C and real server workloads, 7.6% of total power consumption was saved. This reduction corresponds to 1000kJ a day in a typical entry level server.
منابع مشابه
Green Energy-aware task scheduling using the DVFS technique in Cloud Computing
Nowdays, energy consumption as a critical issue in distributed computing systems with high performance has become so green computing tries to energy consumption, carbon footprint and CO2 emissions in high performance computing systems (HPCs) such as clusters, Grid and Cloud that a large number of parallel. Reducing energy consumption for high end computing can bring various benefits such as red...
متن کاملParallel Architecture Core (PAC) - the First Multicore Application Processor SoC in Taiwan Part II: Application Programming
Two representative multimedia applications— AAC and H.264/AVC decoders on the parallel architecture core (PAC) SoC are introduced in the second part of the two introductory papers. The applications have been programmed on the PACDSP core and the PAC SoC to demonstrate the high-performance, low-power DSP computations and the effectiveness of the dynamic voltage and frequency scaling (DVFS) capab...
متن کاملEnergy and Synchronization-Aware Mapping of Real-Time Tasks on Asymmetric Multicore Platforms
Efficient task mapping plays a crucial role in saving energy in asymmetric multiprocessor platforms. This paper considers the problem of energy-aware static mapping of periodic realtime dependent tasks sharing resources on asymmetric multi/many-core embedded systems. The paper extends an existing synchronization-aware bin-packing (BP) variant when the full-chip dynamic voltage and frequency sca...
متن کاملMigrating Java Threads with Fuzzy Control on Asymmetric Multicore Systems for Better Energy Delay Product
Asymmetric multicore systems had been studied as a new hardware platform toward performance-power efficiency for the execution of application programs. Each core in the system has distinct performance and power characteristics. When exploiting asymmetric multicore systems, a major issue is to distribute threads to various cores. In this work, we build a pseudo asymmetric system by the dynamic v...
متن کاملMemory-Aware DVFS for CMP Systems
High-performance processors are becoming increasingly power bound with technology scaling. Dynamic voltage and frequency scaling (DVFS) has emerged as an efficient method of reducing power consumption by lowering the operating voltage and frequency of a processor. We propose a multicore memory-aware DVFS scheme based on VSV, a uniprocessor DVFS algorithm that throttles a core based on L2 cache ...
متن کامل