Swedish
Institute of Space Physics
ESTEC/Contract No.
16953/02/NL/LvH
Monthly Progress Report
GIC-MR-13-04
Period: 2004-04-01--04-30
Author: Lars Eliasson
1.
Progress status
A progress report was given at the SDA
joint progress meeting 29th April at Observatoire de la CÙte díAzur,
Nice. Some additional comments are given below.
A prototype web interface has been
implemented at http://solarwind.lund.irf.se/gic/GeomagMap.html.
The Applet shows the forecasted high-frequency component of the geomagnetic
fluctuation in the X-component (north-south) at Brorfelde, Denmark. The input
is the ACE solar wind data and the Applet shows the last 7 days with a 10
minute cadence. Additional forecasting locations will be added on the map, and
also the variation in the Y-direction (east-west).
Further progress has been made in the
training and validation of neural network for the solar wind - local
geomagnetic field fluctuations (WP401). The technical note has also accordingly
been updated.
A data set, covering 1998, with wavelet
filtered data for Brorfelde has been created and
put on the internal web page (http://www.lund.irf.se/gicpilot/gicpilotinternal/wp/400/401/).
The data set is the type of data that will be the output from the neural
network models and can be used for the study of
the relation to GIC.
A telephone conference was held on April 7
between FMI and IRF.
The SWENET Software Infrastructure User
Requirements Survey has been delivered to eta_max (http://www.lund.irf.se/gicpilot/gicpilotinternal/swenet/).
WP 100 User
requirements
The URD has been accepted.
URD
version 1.5 in pdf-format (2003-12-18).
WP200 Database
Solar wind data have been collected.
GIC data from south Sweden have been collected.
A database with geomagnetic data, solar
wind data, and GIC data exist.
Draft Technical Note is ready see http://www.lund.irf.se/gicpilot/gicpilotinternal/wp/200/.
It contains four parts: the solar wind, the magnetic field, GIC-data, and data
about the power grid.
WP201 Solar
wind and GIC datasets
The solar wind and GIC datasets have been
selected for the project and input given to the
Technical Note (WP200). Statistical analysis of solar wind and GIC
data shall be included in the TN300 and TN400.
Ground magnetic field in a dense grid has been
calculated. The 400 kV power net shall be used. The 220 kV power net will not
be used.
WP202 Dataset with computed geomagnetic data
in a dense grid
Model event set has been constructed and selected.
Data for the geomagnetic database have
been collected.
Ionospheric currents have been calculated.
Data set with geomagnetic data
grid ready and input given to the Technical Note (WP200).
WP300 Model for computation of GIC from
geomagnetic field
Software package
is constructed.
A draft of the Technical Note for WP300
describing the calculation of the geoelectric field in general has been
written.
WP301 Model for computation of geoelectric
field from geomagnetic field
Software applicable to the computation of
geoelectric field from geomagnetic field has been prepared.
Input to draft Technical Note
WP300 has been delivered.
WP302 Model for computation of GIC from
geoelectric field
FMI has prepared software applicable to the
computation of GIC from geoelectric field.
Adjustment of the model and
the final validation to be performed.
WP400 Forecasting model of GIC from solar
wind data
A list of interesting events (WP400) to be used for analysis and
testing has been identified. It is available at http://www.lund.irf.se/gicpilot/gicpilotinternal/wp/200/201/eventList.html
Java software for the neural network has been
developed.
Draft
Technical Note is ready.
WP401 Forecasting model of geomagnetical
grid from solar wind data
Datasets for training, validation, and
testing have been generated.
Neural network architectures have been identified.
Neural networks have been developed and
are being validated.
Optimal neural network for implementation
shall be identified.
Java software has been
developed.
WP402 Forecasting model of observed GIC from
solar wind
Datasets for training, validation, and testing are being modified for
the study.
Neural network architectures have been identified.
Neural networks have been developed and
are being validated.
Optimal neural network for implementation
shall be identified.
Java software has been
developed.
WP500 Service
implemention
Work with implementing services is in
progress and no delay is foreseen. One part of this
is the decision that a
fluxgate magnetometer shall be installed close to
the town of V”xj–.
Software requirements document ready at T0 + 14
according to the schedule
Prototype software system ready at T0 + 14
according to the schedule
System manual ready at T0 + 14 according to the
schedule
User manual ready at T0 + 14 according to the
schedule
Test report ready at T0 + 14 according to the
schedule
WP600
Cost-benefit analysis
Start T0+12
according to the schedule
Cost benefit
report ready at T0 + 24
WP700 Management
Business plan
ready at T0 + 24
2. Problem areas/reasons
for slippages
None
3. Events anticipated to be
accomplished during next reporting period
No major event.
4. Status report on all
long lead or critical delivery items
None
5.
Action items
No open
6.
Milestone payment status
Advance payment
has been received.
7. Expected dates for major
schedule items
Date for the next Progress Meeting is Fall
2004.
Swedish Institute of Space
Physics
PO Box 812
SE-981 28 Kiruna, Sweden
+46 980
790 00 |
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