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HomeMy WebLinkAbout8d Annual Report Mockup - CordovaACEP Automated Data Report ANNUAL POWER SYSTEM REPORT FOR CORDOVA ELECTRIC HYDRO-DIESEL SYSTEM Marc Mueller-Stoffels Funded by the Alaska Center for Energy and Power March 2014 ©2014 Alaska Center for Energy and Power, Fairbanks, AK, USA. All rights reserved. Alaska Center for Energy and Power Institute of Northern Engineering University of Alaska Fairbanks PO Box 755910 Fairbanks, AK 99775-5910 Gwen Holdmann, Director gwen.holdmann@alaska.edu Dr. Marc Mueller-Stoffels, Power Systems Integration Program Director mmuellerstoffels@alaska.edu 1 INTRODUCTION 1 Introduction Data was provided by Cordova Electric Cooperative (CEC) from their powerplant SCADA. This file is automatically generated from MATLABcode and Cordova’s data. Reporting Time Frame: Start date: 18-Sep-2012 10:07:51 End date: 18-Sep-2013 10:07:50 1.1 Demand and Production Overview Demand : Summary Total demand for the recording period: 279783.6 MWh. Table 1: Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Demand [MWh]1902 1678 1832 2066 2097 2878 3902 4002 2198 1616 1837 1972 Max Demand [kW]4156 3808 4026 3855 4480 6632 7333 8305 4727 3391 3966 4269 Mean Demand [kW]2556 2496 2462 2870 2819 3997 5244 5379 3053 2172 2551 2650 Time-series, distribution and CDF for annual demand. Demand data is the sum of the channels: •’ORCA_VARCTRL_TOTAL_KW’ •’CHBC_BUSPTM_3PH_ACTPOWER’ 3 1.1 Demand and Production Overview 1 INTRODUCTION Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 -1000 0 1000 2000 3000 4000 5000 6000 7000 8000 9000 TimeDemand [kW]Demand time-series 4 1.1 Demand and Production Overview 1 INTRODUCTION 0 1000 2000 3000 4000 5000 6000 7000 8000 9000 0 2 4 6 8 x 10-4 Demand [kW]P(Demand)Demand Distribution and CDF - Full Year 0 1000 2000 3000 4000 5000 6000 7000 8000 9000 0 0.2 0.4 0.6 0.8 1 Demand [kW]CDF(Demand)Montly CDF plots of demand. 5 1.1 Demand and Production Overview 1 INTRODUCTION 0 2000 4000 0 0.5 1 January - Demand [kW]CDF(Demand)0 1000 2000 3000 0 0.5 1 February - Demand [kW]CDF(Demand)0 2000 4000 0 0.5 1 March - Demand [kW]CDF(Demand)0 1000 2000 3000 0 0.5 1 April - Demand [kW]CDF(Demand)0 2000 4000 0 0.5 1 May - Demand [kW]CDF(Demand)0 2000 4000 6000 0 0.5 1 June - Demand [kW]CDF(Demand)0 2000 4000 6000 0 0.5 1 July - Demand [kW]CDF(Demand)0 2000 4000 6000 8000 0 0.5 1 August - Demand [kW]CDF(Demand)0 2000 4000 0 0.5 1 September - Demand [kW]CDF(Demand)0 1000 2000 3000 0 0.5 1 October - Demand [kW]CDF(Demand)0 1000 2000 3000 0 0.5 1 November - Demand [kW]CDF(Demand)0 2000 4000 0 0.5 1 December - Demand [kW]CDF(Demand)Reactive Power: Time-series, distribution and CDF of annual reactive power. Re- active power is the sum of the channels: •’ORCA_VARCTRL_TOTAL_KVAR’, •’CHBC_300G1_3PHS_MVAR’, •’CHBC_300G2_3PHS_MVAR’, •’CHBC_300G3_3PHS_MVAR’ (these channels actually record in kVAR). 6 1.1 Demand and Production Overview 1 INTRODUCTION Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 -3000 -2000 -1000 0 1000 2000 3000 4000 5000 TimeReactive Power Demand [kVAR]Reactive Power Demand time-series 7 1.1 Demand and Production Overview 1 INTRODUCTION 0 500 1000 1500 2000 2500 3000 3500 4000 4500 0 1 2 3 4 x 10-3 Reactive Power Demand [kVAR]P(Reactive Power Demand)Reactive Power Demand Distribution and CDF - Full Year 0 500 1000 1500 2000 2500 3000 3500 4000 4500 0 0.2 0.4 0.6 0.8 1 Reactive Power Demand [kVAR]CDF(Reactive Power Demand)Power Factor: Time-series and power factor vs real demand. Calculated from real power (P) and reactive power (Q) as PF =P/(P 2 +Q2 )1/2 . 8 1.2 Diesel Generators 1 INTRODUCTION 1.2 Diesel Generators All diesel generators are located in the Orca Powerhouse. The following gives an overview of the gensets. Note that operating hours are for the time of the data record only, and are calculated by adding the times the frequency output of the genset is non-zero. Generator Name (CEC SCADA): GEN7 Generator Capacity [kW]: 3800 Generator Run Hours: 2599.0 Generator Name (CEC SCADA): G3EPM Generator Capacity [kW]: 2500 Gen- erator Run Hours: 329.1 Generator Name (CEC SCADA): G4EPM Generator Capacity [kW]: 2450 Gen- erator Run Hours: 1721.2 Generator Name (CEC SCADA): CATCCMG5 Generator Capacity [kW]: 1125 Generator Run Hours: 854.3 9 1.3 Hydro Power Overview 1 INTRODUCTION Generator Name (CEC SCADA): CATCCMG6 Generator Capacity [kW]: 1125 Generator Run Hours: 1434.4 1.3 Hydro Power Overview There are two hydro power stations: Power Creek with 6 MW of nameplate capacity and Hump Back Creek with 1.25 MW of nameplate capacity. Total hydro energy for the recording period: 18114.3 MWh. Table 2: Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Energy [MWh]847 801 175 66 1857 2835 3801 3767 1940 1303 468 253 Hydro [%]45 48 10 3 89 99 97 94 88 81 25 13 Max Power [kW]3096 2677 2312 414 4479 6639 7059 7020 4686 3287 1292 2059 Mean Power [kW]1139 1192 235 92 2496 3938 5109 5063 2694 1752 650 341 Time-series, distribution and CDF for annual Power Creek Production. 10 1.3 Hydro Power Overview 1 INTRODUCTION Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 -1000 0 1000 2000 3000 4000 5000 6000 7000 8000 TimeOutput [kW]Hydro power output time-series 11 1.3 Hydro Power Overview 1 INTRODUCTION 0 1000 2000 3000 4000 5000 6000 7000 8000 10-8 10-6 10-4 10-2 100 Power [kW]P(Power)Hydro Power Distribution and CDF - Full Year 0 1000 2000 3000 4000 5000 6000 7000 0 0.2 0.4 0.6 0.8 1 Power [kW]CDF(Power)Montly CDF plots of Power Creek Production. 12 1.3 Hydro Power Overview 1 INTRODUCTION 0 1000 2000 3000 0 0.5 1 January - Power [kW]CDF(Power)0 1000 2000 0 0.5 1 February - Power [kW]CDF(Power)0 1000 2000 0 0.5 1 March - Power [kW]CDF(Power)0 200 400 0 0.5 1 April - Power [kW]CDF(Power)0 2000 4000 0 0.5 1 May - Power [kW]CDF(Power)0 2000 4000 6000 0 0.5 1 June - Power [kW]CDF(Power)0 2000 4000 6000 0 0.5 1 July - Power [kW]CDF(Power)0 2000 4000 6000 0 0.5 1 August - Power [kW]CDF(Power)0 2000 4000 0 0.5 1 September - Power [kW]CDF(Power)0 1000 2000 3000 0 0.5 1 October - Power [kW]CDF(Power)0 500 1000 0 0.5 1 November - Power [kW]CDF(Power)0 1000 2000 0 0.5 1 December - Power [kW]CDF(Power)Power Creek Hydroplant: The Power Creek hydroplant provides up to 6 MW from two 3 MW turbines. During hydropower-only operation the plant provides fre- quency requlation via a governed deflector blade in the instream jet. This comes at the cost of having to keep 500 kW of spinning reserve on turbine ’H4’.Production Summary: Energy and Power data is given based on the complete time-series. Fre- quency and reactive power data is filtered for times the system is delivering power. Total Energy [MWh]:14803.6 Time-series, distribution and CDF for annual Power Creek Production. 13 1.3 Hydro Power Overview 1 INTRODUCTION Table 3: Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Energy [MWh]628 631 123 15 1355 2181 3342 3372 1556 1018 399 183 Max Power [kW]2373 1908 2240 251 3501 5967 6247 6196 4482 3224 991 1975 Mean Power [kW]845 938 166 22 1821 3029 4491 4532 2161 1369 554 246 Max kVAR [kVAR]1176 1178 855 886 1316 2956 3728 3898 1597 1365 1189 856 Mean kVAR [kVAR]-178 -127 -91 -40 22 965 2066 2215 185 -282 -128 -56 Min kVAR [kVAR]-727 -698 -543 -480 -598 -226 -138 -44 -425 -731 -678 -536 Max Frequency [Hz]60.47 60.71 60.19 60.17 60.35 60.52 60.37 60.39 60.43 60.59 61.26 60.81 Mean Frequency [Hz]59.99 60.00 60.00 60.01 59.99 60.00 59.99 60.00 60.00 60.00 60.00 60.00 Min Frequency [Hz]59.18 0.00 33.76 59.88 0.00 59.64 57.79 59.36 59.41 59.54 0.00 43.27 Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 -1000 0 1000 2000 3000 4000 5000 6000 7000 TimeOutput [kW]Power Creek output time-series 14 1.3 Hydro Power Overview 1 INTRODUCTION 0 1000 2000 3000 4000 5000 6000 7000 10-8 10-6 10-4 10-2 100 Power [kW]P(Power)Power Creek Power Distribution and CDF - Full Year 0 1000 2000 3000 4000 5000 6000 0 0.2 0.4 0.6 0.8 1 Power [kW]CDF(Power)Montly CDF plots of power output of Power Creek. 15 1.3 Hydro Power Overview 1 INTRODUCTION 0 1000 2000 0 0.5 1 January - Power [kW]CDF(Power)0 500 1000 1500 0 0.5 1 February - Power [kW]CDF(Power)0 1000 2000 0 0.5 1 March - Power [kW]CDF(Power)0 100 200 0 0.5 1 April - Power [kW]CDF(Power)0 1000 2000 3000 0 0.5 1 May - Power [kW]CDF(Power)0 2000 4000 0 0.5 1 June - Power [kW]CDF(Power)0 2000 4000 6000 0 0.5 1 July - Power [kW]CDF(Power)0 2000 4000 6000 0 0.5 1 August - Power [kW]CDF(Power)0 2000 4000 0 0.5 1 September - Power [kW]CDF(Power)0 1000 2000 3000 0 0.5 1 October - Power [kW]CDF(Power)0 200 400 600 800 0 0.5 1 November - Power [kW]CDF(Power)0 500 1000 1500 0 0.5 1 December - Power [kW]CDF(Power)Power spilled and power station reserve During low demand water is spilled down Power Creek, instead of being diverted into the penstock. The amount of spilled power can be calculated from the dam height and water level behind the dam by using: Pspilled = 18 ·48.3 ·3.3(hwater -hdam )3 2 for hwater > hdam ,(1) with hwater and hdam being the water level and dam height respectively. Power sta- tion reserve is the difference between the current power level and the maximum possi- ble power level. The maximum possible power level is limited by either the nameplate capacity or the flow. Time-series, distribution and CDF for annual power spilled at Power Creek. 16 1.3 Hydro Power Overview 1 INTRODUCTION Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 0 1 2 3 4 5 6 7 8 x 104 TimeSpilled Power [kW]Power Creek Spilled Power time-series 17 1.3 Hydro Power Overview 1 INTRODUCTION 0 1 2 3 4 5 6 7 8 x 104 10-8 10-6 10-4 10-2 100 Spilled Power [kW]P(Spilled Power)Power Creek Spilled Power Distribution and CDF - Full Year 0 1 2 3 4 5 6 7 x 104 0 0.2 0.4 0.6 0.8 1 Spilled Power [kW]CDF(Spilled Power)Montly CDF plots of spilled power at Power Creek. 18 1.3 Hydro Power Overview 1 INTRODUCTION 0 5000 10000 15000 0 0.5 1 January - Spilled Power [kW]CDF(Spilled Power)0 2 4 x 104 0 0.5 1 February - Spilled Power [kW]CDF(Spilled Power)0 2 4 6 x 104 0 0.5 1 March - Spilled Power [kW]CDF(Spilled Power)0 2 4 6 x 104 0 0.5 1 April - Spilled Power [kW]CDF(Spilled Power)0 2 4 6 x 104 0 0.5 1 May - Spilled Power [kW]CDF(Spilled Power)0 2 4 6 x 104 0 0.5 1 June - Spilled Power [kW]CDF(Spilled Power)0 1 2 x 104 0 0.5 1 July - Spilled Power [kW]CDF(Spilled Power)0 1 2 3 x 104 0 0.5 1 August - Spilled Power [kW]CDF(Spilled Power)0 2 4 6 x 104 0 0.5 1 September - Spilled Power [kW]CDF(Spilled Power)0 2 4 6 x 104 0 0.5 1 October - Spilled Power [kW]CDF(Spilled Power)0 5000 10000 15000 0 0.5 1 November - Spilled Power [kW]CDF(Spilled Power)0 5000 10000 15000 0 0.5 1 December - Spilled Power [kW]CDF(Spilled Power)Time-series, distribution and CDF for annual reserve power at Power Creek. 19 1.3 Hydro Power Overview 1 INTRODUCTION Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 0 200 400 600 800 1000 1200 1400 1600 TimeReserve Power [kW]Power Creek Reserve Power time-series 20 1.3 Hydro Power Overview 1 INTRODUCTION 0 200 400 600 800 1000 1200 1400 1600 10-8 10-6 10-4 10-2 100 Reserve Power [kW]P(Reserve Power)Power Creek Reserve Power Distribution and CDF - Full Year 0 500 1000 1500 0 0.2 0.4 0.6 0.8 1 Reserve Power [kW]CDF(Reserve Power)Montly CDF plots of reserve power at Power Creek. 21 1.3 Hydro Power Overview 1 INTRODUCTION 0 5000 10000 15000 0 0.5 1 January - Reserve Power [kW]CDF(Reserve Power)0 2 4 x 104 0 0.5 1 February - Reserve Power [kW]CDF(Reserve Power)0 2 4 6 x 104 0 0.5 1 March - Reserve Power [kW]CDF(Reserve Power)0 2 4 6 x 104 0 0.5 1 April - Reserve Power [kW]CDF(Reserve Power)0 2 4 6 x 104 0 0.5 1 May - Reserve Power [kW]CDF(Reserve Power)0 2 4 6 x 104 0 0.5 1 June - Reserve Power [kW]CDF(Reserve Power)0 1 2 x 104 0 0.5 1 July - Reserve Power [kW]CDF(Reserve Power)0 1 2 3 x 104 0 0.5 1 August - Reserve Power [kW]CDF(Reserve Power)0 2 4 6 x 104 0 0.5 1 September - Reserve Power [kW]CDF(Reserve Power)0 2 4 6 x 104 0 0.5 1 October - Reserve Power [kW]CDF(Reserve Power)0 5000 10000 15000 0 0.5 1 November - Reserve Power [kW]CDF(Reserve Power)0 5000 10000 15000 0 0.5 1 December - Reserve Power [kW]CDF(Reserve Power)Humpback Creek Hydroplant The Humpback Creek hydroplant provides up to 1.25 MW from two 500 kW turbines and one 250 kW turbine.Production Summary Total Energy [MWh]: 3310.7 Table 4: Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Energy [MWh]219 170 52 51 502 654 459 395 384 285 69 70 Max Power [kW]1112 1122 501 307 1310 1211 1309 1165 1287 1127 354 1086 Mean Power [kW]294 253 70 71 675 908 617 531 533 383 96 95 Max Frequency [Hz]60.45 68.75 60.24 60.26 60.26 60.51 60.39 60.49 60.47 61.54 61.35 60.93 Mean Frequency [Hz]59.92 59.94 59.86 59.82 59.91 59.97 59.98 59.99 59.99 60.00 59.99 59.99 Min Frequency [Hz]0.00 0.00 0.00 0.00 0.00 0.00 17.86 3.94 7.40 13.81 0.00 24.49 Time-series, distribution and CDF for annual Power Creek Production. 22 1.3 Hydro Power Overview 1 INTRODUCTION Jul-12 Oct-12 Jan-13 Apr-13 Jul-13 Oct-13 -200 0 200 400 600 800 1000 1200 1400 TimeOutput [kW]Humpback Creek output time-series 23 1.3 Hydro Power Overview 1 INTRODUCTION 0 200 400 600 800 1000 1200 1400 10-8 10-6 10-4 10-2 100 Power [kW]P(Power)Humpback Creek Power Distribution and CDF - Full Year 0 200 400 600 800 1000 1200 0 0.2 0.4 0.6 0.8 1 Power [kW]CDF(Power)Montly CDF plots of Humpback Creek production. 24 1.4 Appendix 1 INTRODUCTION 0 500 1000 0 0.5 1 January - Power [kW]CDF(Power)0 500 1000 0 0.5 1 February - Power [kW]CDF(Power)0 200 400 0 0.5 1 March - Power [kW]CDF(Power)0 100 200 300 0 0.5 1 April - Power [kW]CDF(Power)0 500 1000 0 0.5 1 May - Power [kW]CDF(Power)0 500 1000 0 0.5 1 June - Power [kW]CDF(Power)0 500 1000 0 0.5 1 July - Power [kW]CDF(Power)0 500 1000 0 0.5 1 August - Power [kW]CDF(Power)0 500 1000 0 0.5 1 September - Power [kW]CDF(Power)0 500 1000 0 0.5 1 October - Power [kW]CDF(Power)0 100 200 300 0 0.5 1 November - Power [kW]CDF(Power)0 500 1000 0 0.5 1 December - Power [kW]CDF(Power)1.4 Appendix Data Quality Assurance Adjust for daylight savings.There are gaps and over- laps in the record due to observance of DST. The record is adjusted by subtracting 1 hour from those time stamps that fall into the DST range.Data Channels: The data consists of the following channels: ’PWRC_TOTAL_KW_OUT’ ’PWRC_BUSPQM_3PHS_MVAR’ ’PWRC_BUSPQM__FREQUENCY’ ’ORCA_VARCTRL_TOTAL_KVAR’ ’ORCA_VARCTRL_TOTAL_KW’ ’GEN7_489__FREQUENCY’ 25 1.4 Appendix 1 INTRODUCTION ’ORCA_G3EPM_RAW_FREQ’ ’ORCA_G4EPM_RAW_FREQ’ ’ORCA_CATCCMG5__FREQ’ ’ORCA_CATCCMG6__FREQ’ ’CHBC_BUSPTM_3PH_ACTPOWER’ ’CHBC_BUSPTM_LINE_FREQ’ ’CHBC_300G1_3PHS_MVAR’ ’CHBC_300G1_3PHS_MW’ ’CHBC_300G2_3PHS_MVAR’ ’CHBC_300G2_3PHS_MW’ ’CHBC_300G3_3PHS_MVAR’ ’CHBC_300G3_3PHS_MW’ ’PCFB_DAM_HEAD_LEVEL’ ’PCFB_DAM_PSI_FTH2O’ ’PCFB_SLC_GATE_PCTOPEN’ ’PWRC_H4_DEF_PCTOPEN’ ’PWRC_H4_KW_RESERVE’ ’PWRC_H5_DEF_PCTOPEN’ ’PWRC_H5_KW_RESERVE’ ’GEN7_FUEL__CURACC’ ’TIMEVEC’ Simple Stats Each channel is scanned for consistency, i.e., it has to be of the same length as the associated time vector. If the consistency check is passed, simple statis- tics are displayed. Note that for generation units that are not always online, some of the stats, particularly mean values are no indicator of actual operation. Scan results for channel PWRC_TOTAL_KW_OUT: summaryMsg: ’All tests passed.’ Minimum measured: -205 Maximum measured: 6247.18 Average measured: 1689.9041 Standard deviation measured: 1698.9826 Percentage of invalid entries: 0% 26 1.4 Appendix 1 INTRODUCTION Scan results for channel PWRC_BUSPQM_3PHS_MVAR: summaryMsg: ’All tests passed.’ Minimum measured: -731.31 Maximum measured: 3897.74 Average measured: 372.6072 Standard deviation measured: 911.6588 Percentage of invalid entries: 0% Scan results for channel PWRC_BUSPQM__FREQUENCY: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 61.65 Average measured: 59.967 Standard deviation measured: 1.4099 Percentage of invalid entries: 0% Scan results for channel ORCA_VARCTRL_TOTAL_KVAR: summaryMsg: ’All tests passed.’ Minimum measured: -1986.52 Maximum measured: 3887 Average measured: 238.0329 Standard deviation measured: 996.4798 Percentage of invalid entries: 0% Scan results for channel ORCA_VARCTRL_TOTAL_KW: summaryMsg: ’All tests passed.’ Minimum measured: -108 Maximum measured: 7727 Average measured: 2815.9412 Standard deviation measured: 1131.7621 27 1.4 Appendix 1 INTRODUCTION Percentage of invalid entries: 0% Scan results for channel GEN7_489__FREQUENCY: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 61.67 Average measured: 17.801 Standard deviation measured: 27.4088 Percentage of invalid entries: 0% Scan results for channel ORCA_G3EPM_RAW_FREQ: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 64 Average measured: 2.2541 Standard deviation measured: 11.4086 Percentage of invalid entries: 0% Scan results for channel ORCA_G4EPM_RAW_FREQ: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 62 Average measured: 11.7882 Standard deviation measured: 23.8391 Percentage of invalid entries: 0% Scan results for channel ORCA_CATCCMG5__FREQ: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 6550.6 28 1.4 Appendix 1 INTRODUCTION Average measured: 5.8449 Standard deviation measured: 17.9558 Percentage of invalid entries: 0% Scan results for channel ORCA_CATCCMG6__FREQ: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 1638.3 Average measured: 9.8152 Standard deviation measured: 22.224 Percentage of invalid entries: 0% Scan results for channel CHBC_BUSPTM_3PH_ACTPOWER: summaryMsg: ’All tests passed.’ Minimum measured: -2 Maximum measured: 1310 Average measured: 377.9354 Standard deviation measured: 361.1742 Percentage of invalid entries: 0% Scan results for channel CHBC_BUSPTM_LINE_FREQ: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 68.75 Average measured: 57.3293 Standard deviation measured: 12.3478 Percentage of invalid entries: 0% Scan results for channel CHBC_300G1_3PHS_MVAR: summaryMsg: ’All tests passed.’ 29 1.4 Appendix 1 INTRODUCTION Minimum measured: -1697.3 Maximum measured: 1582.1 Average measured: 0.0022519 Standard deviation measured: 2.6941 Percentage of invalid entries: 0% Scan results for channel CHBC_300G1_3PHS_MW: summaryMsg: ’All tests passed.’ Minimum measured: -1428.3 Maximum measured: 1734 Average measured: 0.12378 Standard deviation measured: 2.5623 Percentage of invalid entries: 0% Scan results for channel CHBC_300G2_3PHS_MVAR: summaryMsg: ’All tests passed.’ Minimum measured: -1629.9 Maximum measured: 1783.1 Average measured: -0.0017062 Standard deviation measured: 3.3453 Percentage of invalid entries: 0% Scan results for channel CHBC_300G2_3PHS_MW: summaryMsg: ’All tests passed.’ Minimum measured: -1786.2 Maximum measured: 1642.7 Average measured: 0.16769 Standard deviation measured: 2.2537 Percentage of invalid entries: 0% Scan results for channel CHBC_300G3_3PHS_MVAR: 30 1.4 Appendix 1 INTRODUCTION summaryMsg: ’All tests passed.’ Minimum measured: -1699.7 Maximum measured: 1763.4 Average measured: -0.0029009 Standard deviation measured: 2.9814 Percentage of invalid entries: 0% Scan results for channel CHBC_300G3_3PHS_MW: summaryMsg: ’All tests passed.’ Minimum measured: -2457.2 Maximum measured: 1579.3 Average measured: 0.081764 Standard deviation measured: 2.4993 Percentage of invalid entries: 0% Scan results for channel PCFB_DAM_HEAD_LEVEL: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 9.06 Average measured: 7.4188 Standard deviation measured: 0.76116 Percentage of invalid entries: 0% Scan results for channel PCFB_DAM_PSI_FTH2O: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 8.45 Average measured: 6.1924 Standard deviation measured: 1.289 Percentage of invalid entries: 0% 31 1.4 Appendix 1 INTRODUCTION Scan results for channel PCFB_SLC_GATE_PCTOPEN: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 98 Average measured: 15.5498 Standard deviation measured: 22.1925 Percentage of invalid entries: 0% Scan results for channel PWRC_H4_DEF_PCTOPEN: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 100.82 Average measured: 39.8835 Standard deviation measured: 40.7657 Percentage of invalid entries: 0% Scan results for channel PWRC_H4_KW_RESERVE: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 1299 Average measured: 142.9552 Standard deviation measured: 220.1907 Percentage of invalid entries: 0% Scan results for channel PWRC_H5_DEF_PCTOPEN: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 101.3 Average measured: 61.4643 Standard deviation measured: 36.8497 32 1.4 Appendix 1 INTRODUCTION Percentage of invalid entries: 0% Scan results for channel PWRC_H5_KW_RESERVE: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 1267 Average measured: 112.2182 Standard deviation measured: 194.8602 Percentage of invalid entries: 0% Scan results for channel GEN7_FUEL__CURACC: summaryMsg: ’All tests passed.’ Minimum measured: 0 Maximum measured: 999999.6 Average measured: 133181.1985 Standard deviation measured: 329981.308 Percentage of invalid entries: 0% Scan results for channel TIMEVEC: summaryMsg: ’All tests passed.’ Minimum measured: 735130.4638 Maximum measured: 735495.4638 Average measured: 735312.9494 Standard deviation measured: 105.3764 Percentage of invalid entries: 0% 33