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Published byDominic Todd Modified over 9 years ago
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Liam Newcombe BCS Data Centre Specialist Group Secretary Modelling Data Centre Energy Efficiency and Cost
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BCS Data Centre Simulator Background Overview of Tools Structure of the BCS Simulator Input Data Sample Output Development Path
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Background
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Power Loss Chain – Fossil Fuel – CPU Used
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“For each £ or Watt my Data Centre consumes what output do I get?” vs. “For each Service I deliver what is the financial and energy cost?” Data Centre Cost and Energy
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Overview of Tools
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Tool Coverage Existing tools –Computational Fluid Dynamics –Server benchmarking –Chiller technology comparisons –Carbon ‘calculators’ –Device specific comparators
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Tool Problem When the only tool you have is a hammer everything looks like a nail 1 1) Abraham Maslow
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Tool Problem The data centre is not a set of independent components that can be individually tuned The data centre is a complex and interdependent system Only a holistic tool can give useful answers
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Framework Tool One tool to cover the entire system, allowing the simulation of components in a realistic context. No need to develop more partial tools, you can now contribute to the open, trusted tool instead.
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Framework Tool Designed to facilitate the incorporation of new or enhanced component models and data Publish performance data in standard formats that we can use to compare devices
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Structure of the BCS Simulator
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BCS Data Centre Model IT Workload IT Device Load to Power Function Data Centre Power Transfer Function
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IT Device
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IT Device Costs
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IT Device in a Data Centre
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Energy Costs
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Per Device Costs
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Input Data
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Fully Representative Data
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Open XML Formats
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Sample Output
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Example Scenario Simulator Output Same Computing Workload 100 One App Per Server Servers 15 Virtualised Servers 10 HPC Grid Servers Old N+1 Data Centre, Nameplate Provisioning
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Simulator Output Old N+1 Data Centre, Nameplate
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Simulator Output
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Example Scenario Same Computing Workload 100 One App Per Server Servers 15 Virtualised Servers 10 HPC Grid Servers New N+1 Data Centre, Free Cooling Simulator Output
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New N+1 Data Centre, Free Cooling 19°C Simulator Output
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New N+1 Data Centre, Free Cooling 25°C Simulator Output
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New N+1 Data Centre, Free Cooling 25°C Simulator Output
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New N+1 Data Centre, Free Cooling 25°C Simulator Output
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Development Path
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Data Centre energy use and cost is a complex problem that we are only starting to understand Deliver marginal and fair share, per business service energy and financial costs to enable holistic carbon management
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Development Path Individual component ‘calculators’ are ineffective without the context of a holistic model Device level A-G style simple labelling is not effective in a data centre environment
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Development Path As our understanding of the data centre grows we will be able to use the more complex capabilities of the simulator
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Development Path Opportunities for Further Research and Development IT Device Performance –Configuration –Workload –Generalised Metrics ( Performance / Energy ) –Networking –Storage
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Development Path Opportunities for Further Research and Development Application Performance –Hardware interaction –Impact of the working data set –Optimisation
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Development Path Opportunities for Further Research and Development Economics ( Cost and Energy ) –Intelligent task deployment –Per task accounting –Automated in-source / out-source decisions –Real time cost management and reporting –Policy based management
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Development Path Opportunities for Further Research and Development Physics –Integrated Computational Fluid Dynamics –Chiller plant behaviour and management –Workload assignment
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Development Path Opportunities for Further Research and Development Electrical / Electronic Engineering –Power infrastructure performance and loss characteristics –Dynamic self provisioning electrical infrastructure
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