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MAVEN PFFSW STATUS 5/01/2012

MAVEN PFFSW STATUS 5/01/2012. Operational Status. Interface Documents, Meetings STATIC Specification rev N, 3/29/12 SEP Specification rev C, 2/1/12. SWIA Specification rev H, 3/29/12 DFB-DCB ICD rev E, 1/30/12 (15 th revision, they count 1-10, A-E) MAG PRE-I&T Meeting

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MAVEN PFFSW STATUS 5/01/2012

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  1. MAVEN PFFSW • STATUS • 5/01/2012

  2. Operational Status Interface Documents, Meetings • STATIC Specification rev N, 3/29/12 • SEP Specification rev C, 2/1/12. • SWIA Specification rev H, 3/29/12 • DFB-DCB ICD rev E, 1/30/12 (15th revision, they count 1-10, A-E) • MAG PRE-I&T Meeting • LPW PRE-I&T Meeting Development • Implemented Limit Monitors • Developed LM database process. Need REAL numbers for limits ! • Enabled Fault Protection and had to Revise Logic • Added New Commands, RTS for LPW to fit in PFDPU operational framework • Revised LPW processing to automatically calculate 16-bit checksums. • Sent MAG team sample science data IV&V • Level 5 Requirements Validation Report Next Up • Run through of Flight I&T of MAG, LPW and SEP on the ETU • Need to get agreement on RTS 0-5 , (Cold and Warm Resets, Safe, Normal, Eng modes) • Working on a packet-level compression specification

  3. Op Load Leveling Allocation of interrupt space to processing (LEFT) and time taken in their interrupt (MAX case). Design goal is 50% or less in the interrupt, usually checked by analysis or simulation. Actual measured MAX case in 1/256ths of a second are shown. Orange shows those >= design goal. (Note: measured on DVF with instrument simulation, not ETU with real instruments). Should have a look at load leveling these ISRs. (All work occurring in one interrupt, nothing in another).

  4. Reqts Issues No details available (TBD) Normal to Reboot to start a new Operational program (DELETED) No details available (TBD)

  5. Reqts Moves Move from HSK to PWR (Complete) Move from STA to FP (Complete)

  6. Reqts Build 3 SWIA Moments SWEA Pitch Angle Dists

  7. Old FP SEP1&2 Doors • IsSEP1Open() • FSW Selects SEP1 Door status and directly reads its status. • IsSEP1Allowed() • If either “SEP1 FOV1” or “SEP1 FOV2” ZoneAlerts, then SEP1 Door is not allowed. • If user Enable is low, SEP1 Door is not allowed. • ManSEP1Door() • If open but not allowed, this routine starts RTS[6], SEP1 Door Closure. • If closed but allowed, this routine starts RTS(11), SEP1 Door Open • Does not matter whether SEP is on/off • Shown as a diagram but may be implemented using tables. • Identical logic used in SEP2

  8. New FP SEP1&2 Doors • IsSEP1Open() • FSW Selects SEP1 Door status and directly reads its status. • IsSEP1Allowed() • If either “SEP1 FOV1” or “SEP1 FOV2” ZoneAlerts, then SEP1 Door is not allowed. • If user Enable is low, SEP1 Door is not allowed. • ManSEP1Door() • If open but not allowed, this routine starts RTS[6], SEP1 Door Closure. • Does not matter whether SEP is on/off • Identical logic used in SEP2

  9. Test Environment GSEOS Status: • Instrument simulation (working for MAG science, but others are housekeeping only) • MAG simulated packet has an incorrect checksum. MAG ETU works fine. • Instrument simulation files for LPW, etc. need work. Need for each Instrument: • Case 1. Typical test pattern • Case 2. Anomaly test pattern (e.g Housekeeping violations) • Case 3. Worst case telemetry rate • Limit checking error messages in GSEOS • No limits are being checked GSEOS Python Test Scripts, Displays (no change from April) • # I&T Test Scripts Ready = 0 • # Engineering APIDs displayed : 10 of 13 • # Science APIDs displayed : 10 of 67 • # Total APIDs generated by Version 2.4 : 80

  10. SPRs and SCRs

  11. Charts CHARTS

  12. Op SLOC

  13. Module Status Chart

  14. Metrics Chart

  15. Margin Chart Finished adding LUTs to EEPROM. None in Flash Calculations performed in Analyses.xls

  16. Defect Chart

  17. EEPROM

  18. SRAM

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