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TECO-2006 - Geneva1 Integrated Quality Control Functions on AWS-Level Gealog SG Station Manager Gerhard Pevny, Logotronic GmbH, Austria Dietmar Pindeus,

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Presentation on theme: "TECO-2006 - Geneva1 Integrated Quality Control Functions on AWS-Level Gealog SG Station Manager Gerhard Pevny, Logotronic GmbH, Austria Dietmar Pindeus,"— Presentation transcript:

1 TECO-2006 - Geneva1 Integrated Quality Control Functions on AWS-Level Gealog SG Station Manager Gerhard Pevny, Logotronic GmbH, Austria Dietmar Pindeus, Logotronic GmbH, Austria

2 TECO-2006 - Geneva2 Integrated Quality Control IQC Starting Point - User Community  There are still only few, not detailed recommendations regarding quality control procedures  High demand for concrete recommendations for QM on AWS level. (QM-terminology, QC-strategies on AWS level, QC algorithms, required metadata,...)  CIMO Guide (WMO No. 8) contains extensive technical recommendations how to measure meteorological parameters

3 TECO-2006 - Geneva3  New hardware and software platform for AWS: Gealog SG Station Manager  Using most advanced technology in hardware and firmware  Based on this platform implementation of an extensive automatic quality control system which could be an example for future standardization work Integrated Quality Control IQC Starting Point - Logotronic

4 TECO-2006 - Geneva4 Integrated Quality Control IQC Technical Background  Nearly PC-processing power at AWS-level  Implementation of more complex quality control procedures  Use of modern data transfer medias (GPRS, Meteosat HDR,...)  Possibility to transfer higher quantities of data and therefore integration of additional quality information.

5 TECO-2006 - Geneva5 Sensor Station Manager Communication Network Centre Where should Quality Control be applied?  Quality control on all levels of the measuring network 1. User Interventions 3. Working Environment 4. Hardware Plausibility 5. System Time 6. Data Transfer Channels to Network Centre 2. Metadata

6 TECO-2006 - Geneva6 Basic QC Philosophy Basic philosophy for the definition of the quality control procedures: “Detection of an error in advance before the error shows influence on the measured time series”

7 TECO-2006 - Geneva7 QC on User Interventions User Identification

8 TECO-2006 - Geneva8 QC on User Interventions - Log-File  One entry for user-login and logout and each activity- which changes the AWS´s status (i.g. changing of parameters,...)  Log-File entry contains: Date, time, user-id, short description of activity  Readout of Log-File together with stored measuring data

9 TECO-2006 - Geneva9 Metadata Stored on AWS Level

10 TECO-2006 - Geneva10 Metadata on AWS Level

11 TECO-2006 - Geneva11 Monitoring of the working Environment and internal Parameters of the AWS  Gealog SG offers a set of „internal measuring channels“  Station battery voltage and temperature  Voltage of the buffer battery used for the internal real -time clock  Internal temperature  External supply voltage (mains or solar)  Door-open contact

12 TECO-2006 - Geneva12 Gealog Measuring Interface Gealog Measuring Interface Sensor 1 Sensor 2 Broken Wires Loose Wires Standardized Gealog RS485-Fieldbus Intelligent Sensor 1 Hardware related QC - The Galog Measuring Interface Concept External Communication Lines Fan, Heater Sensor Status and Protocol Check Gealog Measuring Interface

13 TECO-2006 - Geneva13 Plausibility Tests - standard Tests

14 TECO-2006 - Geneva14 Additional Plausibility Tests

15 TECO-2006 - Geneva15 Additional Plausibility Test Use of mathematical formulas to compute specific quality criterias. I.g.: Formula for monitoring of a sensor heater: (Value(C1)<3)&(Value(C2)<2) C1 Air temperature C2 Heater current

16 TECO-2006 - Geneva16 Redundant Sensors

17 TECO-2006 - Geneva17 Testing the System Time  Gealog SG offers the synchronization of the real-time clock from the network centre, from GPS or from the Web  At the synchronization the time difference between old and new setting of the clock is computed and checked. If there is a too high time-shift a time-error is detected. Measuring values, influenced by the clock synchronization are marked.

18 TECO-2006 - Geneva18 Recording of a Quality Tag  The information-set for each data item is now:  Time stamp - Measuring value - Quality Tag

19 TECO-2006 - Geneva19 Quality Tag Actually defined quality tag values: IdentifierDescription ANo errors detected PPlausibility error detected CNo measuring value existing, fatal error Dfree WMaintenance ZTime error detected KManually inputted check value

20 TECO-2006 - Geneva20 Support of manual Quality Control  Integrated graphic display with marking of values with Quality Tag below "A" in the graphic output  Direct connection of a video camera - Recording of images - Visual inspection of the AWS from the office desk

21 TECO-2006 - Geneva21 Conclusion  Target: Automatic quality management system for the whole measuring network based on ISO9001 recommendations  Consideration for future revisions of the CIMO Guide: - Integration of Quality Tags into the standard data sets - Definition of a Quality Tag system - Recommendations of sensor specific or measuring parameter specific quality checks and procedures on AWS level - Recommendations for AWS metadata including "on-line metadata" like actual images of the station

22 TECO-2006 - Geneva22 Integrated Quality Control Functions on AWS-Level Gealog SG Station Manager Thank you! Please send comments to gerhard.pevny@logotronic.co.at


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