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- W113154133 abstract "The Performance Design Methods described in this article are based on a multiview approach. The needs are covered by a requirements view. The system design consists of a HW block diagram, a SW decomposition, a functional design and other models dependent on the type of system. The system design is used to create a performance model. Measurements provide a way to get a quantified characterization of the system. Different measurement methods and levels are required to obtain a usable characterized system. The performance model and the characterizations are used for the performance design. The system design decisions with great performance impact are: granularity, synchronization, priorization, allocation and resource management. Performance and resource budgets are used as tool. The complete course ASPTM is owned by Buskerud University College. To teach this course a license from Buskerud University College is required. This material is preliminary course material. The final material and course information can be found at: www.esi.nl/cursus. March 6, 2013 status: draft version: 0.2 determine most important and critical requirements model analyse constraints and design options simulate build proto measure evaluate analyse Positioning in CAFCR diverse complex fuzzy performance expectations needs Customer What Customer How Product What Product How What does Customer need in Product and Why ? C ustomer objectives A pplication F unctional C onceptual R ealization SMART + timing requirements + external interfaces models analysis models analysis simulations measurements simulations measurements execution architecture design threads interrupts timers queues allocation scheduling synchronization decoupling Performance Method Fundamentals c ©2006, Embedded Systems Institute 2 c ©2006, Gerrit Muller version: 0.2 March 6, 2013 EAAandCAFCR Toplevel Performance Design Method 2A Measure performance at 3 levels 1A Collect most critical performance and timing requirements 1B Find system level diagrams 3 Evaluate performance, identify potential problems 2B Create Performance Model 4 Performance analysis and design Re-iterate all steps application, functions and micro benchmarks granularity, synchronization, priorization, allocation, resource management are the right requirements addressed, refine diagrams, measurements, models, and improve design HW block diagram, SW diagram, functional model(s) concurrency model, resource model, time-line Performance Method Fundamentals c ©2006, Embedded Systems Institute 3 c ©2006, Gerrit Muller version: 0.2 March 6, 2013 PMFtopLevel Incremental Approach determine most important and critical requirements model analyse constraints and design options simulate build proto measure evaluate analyse Performance Method Fundamentals c ©2006, Embedded Systems Institute 4 c ©2006, Gerrit Muller version: 0.2 March 6, 2013 EAAspiral Decomposition of System TR in HW and SW or ig in al b y T on K os te lij k system TR hardware TR software TR ns us ms s most and hardest TR handled by HW new control TRs Performance Method Fundamentals c ©2006, Embedded Systems Institute 5 c ©2006, Gerrit Muller version: 0.2 March 6, 2013 EAAhwswRequirements Quantification Steps order of magnitude guestimates calibrated estimates 10 50 200 30 300 100 30 300" @default.
- W113154133 created "2016-06-24" @default.
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- W113154133 date "2013-01-01" @default.
- W113154133 modified "2023-09-23" @default.
- W113154133 title "Performance Method Fundamentals" @default.
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