Working Standard Control Software

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1 Working Standard Control Software Models WS 2120 WS 2320 Version 3.4b

2 Content 1. Introduction Installation and Uninstallation Installation Start Installation Process WS Control Software Setup Firebird Setup BDE Setup Installation Finish Uninstallation Description Communication Toolbar System Toolbar Context Menu Measurements Load Values Vector Diagram Harmonics Signal Shapes Readouts Filtering and Sorting Filtering Sorting Output Documents Generation and Printing Templates Creation Commands of output document Meter Header Commands Load Point Commands Parameters WS-UGSW34b-EN

3 1. Introduction Working Standard Control Software is a PC software for Working Standard WS 2x20 device. Software communicates with the device via RS-232 or USB communication interface. Basic Software Features: Data readout from Working Standard Data archiving to archive database Data viewing, sorting and filtering Output protocol and/or certificate printing 1 Generating templates for output protocols and certificates Minimum System Requirements: processor Intel Pentium 166 MHz or higher (PII 400 MHz recommended) operation system Microsoft Windows XP or Windows 7 operation memory 128 MB RAM (256 MB recommended) free hard disk space 100 MB monitor with resolution 800x600 or higher mouse or other pointing device 1 The difference between protocol and certificate is only technical. Under the term protocol we mean Word document containing values measured from more than one meter. In case that filtering is disabled protocol can include content of whole archive database (depending on parameters that we use in template some columns don t need to appear in final document even when we are measuring them). Certificate always contains values belonging to one specific meter. So instead of one summary document when using Protocol function we have more Word documents (i.e. more certificates), one for each meter in table. WS-UGSW34b-EN 3

4 2. Installation and Uninstallation Installed components (all are part of the installation package): WS Control Software... control software for Working Standard device Firebird... SQL database for Windows BDE (Borland Database Engine)... layer between database and our software All components have to be installed in PC for correct functioning of software. 2.1 Installation Start To install WS Control Software run installation file (typically install.exe on installation CD). When you are installing from CD and auto-run CD feature in your Windows is enabled then installation is run automatically. You will be presented with screens described below. 2.2 Installation Process WS Control Software Setup 1. Select language for WS Control Software installation and press OK 2. Press Next > 4 WS-UGSW34b-EN

5 3. Select installation type / components and press Next > Full installation... selects all components (typical for new installations) Minimum installation... selects only WS Control Software (typical for upgrades) Custom installation... enables selecting any combination of components 4. Press Next > - changes in this window are allowed 5. Press Next > - changes in this window are allowed WS-UGSW34b-EN 5

6 6. Press Install 7. Wait while installation of WS Control Software is in progress 6 WS-UGSW34b-EN

7 2.2.2 Firebird Setup 1. Select language for Firebird installation and press OK 2. Press Next > 3. Select option I accept the agreement and press Next > WS-UGSW34b-EN 7

8 4. Press Next > 5. Press Next > - changes in this window are not recommended 6. Press Next > - changes in this window are not recommended 8 WS-UGSW34b-EN

9 7. Press Next > - changes in this window are allowed 8. Press Next > - changes in this window are not recommended 9. Press Install WS-UGSW34b-EN 9

10 10. Wait while installation of Firebird is in progress 11. Press Next > 12. Press Finish you can unselect After installation What Next? checkbox 10 WS-UGSW34b-EN

11 1. Wait for initialization of BDE setup BDE Setup 2. Press Next > - BDE will be installed only when checkbox Install BDE 5.2 will be checked 3. Press Next > WS-UGSW34b-EN 11

12 4. Press Next > - changes in this window are not recommended 5. Press Next > 6. Press Finish 12 WS-UGSW34b-EN

13 2.3 Installation Finish Software Installation is finished with Completed screen. Press Finish to complete the installation. WS CS Setup Completed screen Control software for Working Standard device is now prepared for usage. It can be started using WS Control Software icon on Windows desktop or in Start Menu (typically Start / Programs / WS Control Software) Desktop Icon Start Menu Folder Software Package uninstallation: 2.4 Uninstallation 1. Uninstall WS Control Software using Uninstall WS Control Software icon in WS Control Software Start Menu Folder (typically Start / Programs / WS Control Software) 2. Uninstall Firebird database using Uninstall Firebird icon in Firebird Start Menu Folder (typically Start / Programs / Firebird ) WS-UGSW34b-EN 13

14 3. Description Main software window is displayed after program is started. Main window contains the following: 1. Main menu 2. Toolbars with selected summary data and buttons for frequently used functions 3. Table of meters that are stored in archive database together with identification data belonging to them. Each row in the table shows one meter. Content of table is dependent on filtration conditions defined in window for filtering and sorting. 4. Table of measured load points and readouts for meter selected in a top table. 5. Additional parameters for selected load point. 6. Vector diagram, harmonics charts and waveforms. 7. Status bar Main Window Application contains two toolbars whose position and order can be adjusted by mouse (by dragging the left part of toolbar which is highlighted). Width and order of columns in tables can be adjusted with mouse. To permanently store new settings use context menu function. Window number 6 is made as dockable. It means you can dock it in bottom right part of main window. When the need arises it is possible to release it and change it to standard dialog window. This is convenient when you want displayed charts make larger. It is even possible to maximize dialog window. To prevent window docking when moving it, press Ctrl key. You close the window by clicking on X button in top right corner. To reopen it, make a double click on specified load point or use context menu item. Windows 3 6 size ratio can be simply changed by dragging and moving splitters placed on window borders. 14 WS-UGSW34b-EN

15 3.1 Communication Toolbar The purpose of the communication toolbar is to configure and test communication link between device and PC. Communication Toolbar Left part of panel named Port contains: combo box for selecting the communication port (NONE, COM1, COM2 ) COM port number is chosen by MS Windows, and it depends also on used USB port of the PC, where the WS is currently connected. In most cases it will be the highest number. parameters of selected COM port (following format is used: 57600,8N1) button for configuring selected COM port Right part of panel named Device contains: identification string (device model) device serial number (SN) firmware versions (FW) Primary / Secondary / GUI button for reading identification data directly from connected device By using panel s context menu (by right mouse click) it s possible to refresh the list of COM ports currently available in PC. This is useful for communication attempt with device connected to PC after program was started, and also for COM port number check. 3.2 System Toolbar System toolbar contains buttons to quick access frequently used functions. System Toolbar Left part of panel contains information about number of meters that have been filtered (equals number of rows in top table). Right part of panel contains following buttons beginning from left: WS Readout Activates communication with Working Standard Reads all measured and stored data for all meters under test from Working Standard Stores downloaded data to archive database for further processing Filter and Sort Filtering and/or sorting records stored in archive database Searching for records according to various criteria Print Protocol / Certificate Printing output protocols / certificates from filtered records Requires MS Word to have been installed Printing protocol / certificates to MS Word templates Show protocols Opens folder with output protocols / certificates WS-UGSW34b-EN 15

16 3.3 Context Menu Context menu (accessible by right mouse button click) provides quick access to useful functions and edit tools. Context menu for main table containing meters information: Main Table context menu Show All... shows all records stored in database (denies filters previously defined) Edit Record... editing of heading info of selected meter Delete Record... deletes selected meter and all its load points and readouts Save Column Widths... saves widths and order of columns for the table Context menu for load points table: Load Points context menu Show details... displays vector diagram and harmonics chart as well as waveform chart for selected load point Delete Record... deletes selected load point Save Column Widths... saves widths and order of table columns 16 WS-UGSW34b-EN

17 3.4 Measurements List of load points in which measurements were done is displayed on Measurements tab in windows located in region 4 of main window (see page 14). Columns: No.... sequence number of load point Date & time... measurement date & time Type... load point type Load Points - Measurements Load point type depends on accessory connected during measurement and for power measurements also on device firmware screen where user pressed the save button. Load Point types: LOAD VALUES U LOAD VALUES I LOAD VALUES UU LOAD VALUES II LOAD VALUES ENERGY ERROR METER ERROR connected one voltage transducer (3 voltages) connected one set of current clamps (3 currents) connected two voltage transducers (6 voltages) connected two sets of current clamps (6 currents) connected one voltage transducer and one set of current clamps. This type of load point is used when precisely measuring power in system without wanting to test meter. Device in this mode acts as combination of precise multimeter and wattmeter. connected one voltage transducer and one set of current clamps. This type of load point is used when we want to read measured values on meter manually and afterwards calculate meter error from them. connected one voltage transducer and one set of current clamps. This load point is used when measuring meter error. Additional load point details like vector diagram, harmonics and waveform charts are shown in their own window. This window can be closed if needed. To reopen it you must double click on load point in load point table or use context menu item in the same table (region 4 of main window). The content of detail window is automatically updated when moving through the items in meter table or load point table. WS-UGSW34b-EN 17

18 3.4.1 Load Values Detail info about load points is shown in Load Values window located in region 5 of main window (see page 14). Clear layout is used where related parameters are grouped into sections. Content of section can be hidden by clicking on section header. Load Values 18 WS-UGSW34b-EN

19 3.4.2 Vector Diagram Vector Diagram Harmonics Harmonics WS-UGSW34b-EN 19

20 User can choose in Harmonics and Signal Shapes windows: - Selected channel (single channel or Custom value) - Combination of available channels (available if Custom channel is selected) - Amplitude or Phase (available only in Harmonics window) Amplitude / Phase Selection Custom Channel Selection Following channels are available (depend on load point type): U1... voltage in channel L1 I1... current in channel L1 U2... voltage in channel L2 I2... current in channel L2 U3... voltage in channel L3 I3... current in channel L3 Ua1... voltage in channel L1 (primary side) Ia1... current in channel L1 (primary side) Ua2... voltage in channel L2 (primary side) Ia2... current in channel L2 (primary side) Ua3... voltage in channel L3 (primary side) Ia3... current in channel L3 (primary side) Ub1... voltage in channel L1 (secondary side) Ib1... current in channel L1 (sec. side) Ub2... voltage in channel L2 (secondary side) Ib2... current in channel L2 (sec. side) Ub3... voltage in channel L3 (secondary side) Ib3... current in channel L3 (sec. side) Custom... combination of above channels Signal Shapes Signal Shapes 20 WS-UGSW34b-EN

21 3.5 Readouts List of readouts for actual meter is shown in left part of region 4 of main application window on Readouts tab. The readout content is displayed in region located right from list of readouts. The content of readout window is automatically updated when selecting another meter or moving to another readout in readout list. List of Readouts Readout Content Columns: Date & time... readout date & time Length... readout length WS-UGSW34b-EN 21

22 4. Filtering and Sorting Filtering enables to reduce amount of displayed meters (main window top table) for further processing as printing and evaluation. Sorting enables to sort filtered records according to various criteria. Sorting is accessible through column names. Both functions Filtering and Sorting are accessible through main menu as well as through toolbar button Filter and Sort (section 2, see page 14). When sorting by one column quick sorting is accessible through column header. When user clicks on column header records in table are sorted according to data in clicked column. Advanced Sorting and Filtering Filtering Advanced Filtering is accessible through window Advanced sorting and filtering in field Filtration. Records can be filtered according to values in each table column. Conditions for filtration should be written into the filtration table columns MIN and MAX. Filtration will be active only for columns with entered filtration conditions. When only one of values MIN or MAX for desired column is entered, only records which match entered condition will be displayed. When both values MIN and MAX are entered, only records with values inside interval qualified with MIN and MAX will be displayed. Filtering is activated by pressing button OK. Filtering cancelation is made by erasing of all values from MIN and MAX columns and confirmed by OK Sorting Advanced Sorting is accessible through window Advanced sorting and filtering in field Sorting. Selection of columns for sorting is following: The columns available for sorting are displayed in listbox on the left side. Sorting will be according to columns dragged into right listbox. To change order just use up and down arrows. Sorting is activated by OK button. Sorting is deactivated by Clear button followed by OK. 22 WS-UGSW34b-EN

23 5. Output Documents The program enables user defined design of output documents using the MS Word profiting from all of its capabilities (in regard to text and picture formatting). The output documents can be separated into two groups: Protocols - summary protocol with measured results for all selected meters Certificates - one certificate for each meter Generation of the output document is performed by automatic filling-in of the measured and calculated output data into the previously created MS Word output document template. Subsequently output document can be saved in a file with an appropriate name and sent to the printer. As a standard, a number of output document templates are delivered with the program; anyway, the user has an option of creating custom ones. The output document templates necessary for generation of the output documents are automatically generated by the program from the command templates. When creating command templates, you can take advantage from all of the MS Word features. Output document commands - prefix + postfix Measured and calculated values Measured and calculated values Command template Template generating process Output document template Template filling process Output document template filled with data = final output document Output document template Output document printing Saving of output document with new name Templates Usage Diagram Attention! If the user wants to use templates, the MS Word application installed in his PC must be Macro Enabled! WS-UGSW34b-EN 23

24 5.1 Generation and Printing The function of generating the output document has two modes. Generation of Protocols Generation of Certificates For output document generation an output document template is necessary. Protocol or certificate printing is accessible by pressing Print button. When this function is activated Output Document window is displayed. This window changes depending on output document mode. Output Document Protocol Printing Output Document Certificate Printing Generate Output Document enables generation of output document Output Document Template selection of document template. For quick navigation to file there is button Browse. It is always offered template which was used last time. Save To File name of output document (prefix). Before file is saved file name is expanded to include meter index (certificates mode) and.doc file name extension (both modes). Default prefix contains prot (protocol mode) or cert (certificate mode) and date and time information. Print enables automatic printing of document after its creation. This option is available only in protocol mode. 24 WS-UGSW34b-EN

25 5.2 Templates Creation The program can generate the output document template automatically from the previously prepared command template. This is a process in which the command template is gradually analyzed and the recognized protocol commands are substituted by text fields with bookmarks. The purpose of command template is to simplify the process of creating output document template. The creator of command template doesn t have to insert text fields into document. Instead of text fields he uses specially formatted commands beginning with character #. But there is always the option to create output document template directly without intermediate steps. During process of output document creation, the aforementioned text fields are filled with real values obtained by measurements. Before starting of output document template generation, it is necessary to launch MS Word and open the command template intended for output document template generation. If there are more files opened in MS Word, the document with command template has to be activated (selected as last one). Output document template generation is launched from program s main menu by using System Generate Template. Afterwards an information window is opened which shows the progress of generation. After generation is successfully finished it is necessary to save the newly created output document template to be later available for generating output documents. It is recommended to use different file name than command template uses. In case that equal file name is used, original file would be rewritten. As a result the command template would be lost. Then, any subsequent changes in template would have to be done in output document template. Even when this is possible in case of vast changes, this process can be tedious and disarranged. 5.3 Commands of output document The command template is used as a pattern for automatic creation of the output document templates. It is a standard document of the MS Word and therefore during its creation the user can use all MS Word features (insert company s logo, insert tables, change the font, highlight the text etc.). To insert the measured and calculated values into the output document and to specify the type of these data, it is necessary to insert appropriate output document commands into the document. The commands in the command template are marked by defined command prefix. The pattern is: command prefix + command (e.g. #SNUM). The commands from the commands database are recognized only if they are preceded by a valid prefix (#). Commands are separated from the remaining text by white characters. The following characters are considered to be white characters in this case: space, dash, move to next paragraph, tab character, character of moving to another table cell. All command parameters have to follow the command without any white character between them. The command itself must not contain the _ character which is reserved to separate the command parameters. The parameters are described in the following sections. WS-UGSW34b-EN 25

26 5.3.1 Meter Header Commands Command Description ADDRESS Address of meter site location CLASS Class of accuracy CONSTANT Meter constant CONTYPE Connection type (one phase, three phase, two phase, ) CURRENT Current range CUSTOMER Customer name DATETIME Date and time of the test NOTE1 Note NOTE2 Note NOTE3 Note NOTE4 Note REGTYPE Register type (mechanical, digital) SNUM Serial number TYPE Type VOLTAGE Voltage range YMAN Year of manufacture CURPRIM Primary current of current transformer CURSEC Secondary current of current transformer VOLPRIM Primary voltage of voltage transformer VOLSEC Secondary voltage of voltage transformer CONSTUNIT Meter constant unit (i / kwh, MWh / i, kws / i,...) AREA Area LOCATION Location CTRATIO CT-ratio VTRATIO VT-ratio IMIN I-min INOM I-nom IMAX I-max UNOM U-nom ISIDE I-side USIDE U-side ENERMETHOD Energy method FREQUENCY Frequency POINTTYPE Point type PRODUCER Producer MENERGYTYPE Energy type ELM_OUTPUT_TYPE Input type SQRT3 Voltage conversion LPCOUNT Count of loadpoints CONSTTYPE Const. type Command syntax: #COMMANDparameter parameter...sequential number of meter (integer numbered from 0). When equal to 0 special processing is used. When higher than 0 value for meter number parameter will be filled to output document. 26 WS-UGSW34b-EN

27 Example 1: Header of second meter of the selection can be printed using following commands: Serial Number Type Year of Manufacture Class Voltage Current Constant(s) Calibration Date #SNUM2 #TYPE2 #YMAN2 #CLASS2 #VOLTAGE2 #CURRENT2 #CONSTANT2 #DATETIME2 Special processing will only work when command, with parameter equals to 0, will be in the table s last row. Then during process of creating output document program will substitute command with table rows and fill created table cells with appropriate values. The number of new table rows is equal to meters count. Example 2: Headers of all selected meters can be printed using following commands: S/N Type Y/M Class Voltage Current Constant Customer #SNUM0 #TYPE0 #YMAN0 #CLASS0 #VOLTAGE0 #CURRENT0 #CONSTANT0 #CUSTOMER0 WS-UGSW34b-EN 27

28 Load Point type METER ERROR: Load Point Commands Command Description MVOLT1 Measured voltage phase 1 [V] MVOLT2 Measured voltage phase 2 [V] MVOLT3 Measured voltage phase 3 [V] MCURR1 Measured current phase 1 [A] MCURR2 Measured current phase 2 [A] MCURR3 Measured current phase 3 [A] MPHU1 Measured voltage angle phase 1 [ ] MPHU2 Measured voltage angle phase 2 [ ] MPHU3 Measured voltage angle phase 3 [ ] MPHI1 Measured angle between current and voltage - phase 1 [ ] MPHI2 Measured angle between current and voltage - phase 2 [ ] MPHI3 Measured angle between current and voltage - phase 3 [ ] MPHASESEQ Measured Phase Sequence DFVOLT1 Voltage distortion factor phase 1 DFVOLT2 Voltage distortion factor phase 2 DFVOLT3 Voltage distortion factor phase 3 DFCURR1 Current distortion factor phase 1 DFCURR2 Current distortion factor phase 2 DFCURR3 Current distortion factor phase 3 MPOWFACT1 Measured power factor phase 1 MPOWFACT2 Measured power factor phase 2 MPOWFACT3 Measured power factor phase 3 MFREQ Measured frequency [Hz] MPOWER1 Measured active power phase 1 [W] MPOWER2 Measured active power phase 2 [W] MPOWER3 Measured active power phase 3 [W] MQPOWER1 Measured reactive power phase 1 [VAr] MQPOWER2 Measured reactive power phase 2 [VAr] MQPOWER3 Measured reactive power phase 3 [VAr] MSPOWER1 Measured apparent power phase 1 [VA] MSPOWER2 Measured apparent power phase 2 [VA] MSPOWER3 Measured apparent power phase 3 [VA] MPOWERSUM Measured active power total [W] MQPOWERSUM Measured reactive power total [VAr] MSPOWERSUM Measured apparent power total [VA] MENERGY1 Measured active energy phase 1 [Ws] MENERGY2 Measured active energy phase 2 [Ws] MENERGY3 Measured active energy phase 3 [Ws] MQENERGY1 Measured reactive energy phase 1 [VArs] MQENERGY2 Measured reactive energy phase 2 [VArs] MQENERGY3 Measured reactive energy phase 3 [VArs] MSENERGY1 Measured apparent energy phase 1 [VAs] MSENERGY2 Measured apparent energy phase 2 [VAs] MSENERGY3 Measured apparent energy phase 3 [VAs] MENERGYSUM Measured active energy total [Ws] MQENERGYSUM Measured reactive energy total [VArs] MSENERGYSUM Measured apparent energy total [VAs] MENERGYTYPE2 Energy type (active, reactive, apparent) METERERROR Measured meter error (average) [%] METERSTDEV Standard deviation of meter error measurement [%] OPSINPUTTYPE Optical Sensor input type (LED, DISC, S0) OPSINTTIME Optical Sensor integration period [s] OPSSAMPLES Number of samples for meter error measurement LPCONST Meter constant 28 WS-UGSW34b-EN

29 Command Description VCTDIAG Vector diagram for load point MHAU1 Amplitude of the harmonic - voltage phase 1 [%] MHAU2 Amplitude of the harmonic - voltage phase 2 [%] MHAU3 Amplitude of the harmonic - voltage phase 3 [%] MHAI1 Amplitude of the harmonic - current phase 1 [%] MHAI2 Amplitude of the harmonic - current phase 2 [%] MHAI3 Amplitude of the harmonic - current phase 3 [%] MHPU1 Phase angle of the harmonic - voltage phase 1 [ ] MHPU2 Phase angle of the harmonic - voltage phase 2 [ ] MHPU3 Phase angle of the harmonic - voltage phase 3 [ ] MHPI1 Phase angle of the harmonic - current phase 1 [ ] MHPI2 Phase angle of the harmonic - current phase 2 [ ] MHPI3 Phase angle of the harmonic - current phase 3 [ ] LIMIT Limit CONTYPE2 Connection type (one phase, three phase, two phase, ) CONSTUNIT2 Meter constant unit (i / kwh, MWh / i, kws / i,...) INTTIME_IMP Integration time/impulses Load Point type LOAD VALUES: Command Description MVOLT1 Measured voltage phase 1 [V] MVOLT2 Measured voltage phase 2 [V] MVOLT3 Measured voltage phase 3 [V] MCURR1 Measured current phase 1 [ ] MCURR2 Measured current phase 2 [ ] MCURR3 Measured current phase 3 [ ] MPHU1 Measured voltage angle phase 1 [ ] MPHU2 Measured voltage angle phase 2 [ ] MPHU3 Measured voltage angle phase 3 [ ] MPHI1 Measured angle between current and voltage phase 1 [ ] MPHI2 Measured angle between current and voltage phase 2 [ ] MPHI3 Measured angle between current and voltage phase 3 [ ] MPHASESEQ Measured Phase Sequence DFVOLT1 Voltage distortion factor phase 1 DFVOLT2 Voltage distortion factor phase 2 DFVOLT3 Voltage distortion factor phase 3 DFCURR1 Current distortion factor phase 1 DFCURR2 Current distortion factor phase 2 DFCURR3 Current distortion factor phase 3 RVOLT2VOLT1 Ratio U2 / U1 RVOLT3VOLT1 Ratio U3 / U1 RCURR2CURR1 Ratio I2 / I1 RCURR3CURR1 Ratio I3 / I1 PHVOLT2VOLT1 Phase shift between U2 and U1 [ ] PHVOLT3VOLT1 Phase shift between U3 and U1 [ ] PHCURR2CURR1 Phase shift between I2 and I1 [ ] PHCURR3CURR1 Phase shift between I3 and I1 [ ] ERRORVOLT2VOLT1 Transformer ratio U2 / U1 error [%] ERRORVOLT3VOLT1 Transformer ratio U3 / U1 error [%] ERRORCURR2CURR1 Transformer ratio I2 / I1 error [%] ERRORCURR3CURR1 Transformer ratio I3 / I1 error [%] MPOWFACT1 Measured power factor phase 1 MPOWFACT2 Measured power factor phase 2 MPOWFACT3 Measured power factor phase 3 MFREQ Measured frequency [Hz] MPOWER1 Measured active power phase 1 [W] MPOWER2 Measured active power phase 2 [W] MPOWER3 Measured active power phase 3 [W] WS-UGSW34b-EN 29

30 Command Description MQPOWER1 Measured reactive power phase 1 [VAr] MQPOWER2 Measured reactive power phase 2 [VAr] MQPOWER3 Measured reactive power phase 3 [VAr] MSPOWER1 Measured apparent power phase 1 [VA] MSPOWER2 Measured apparent power phase 2 [VA] MSPOWER3 Measured apparent power phase 3 [VA] MPOWERSUM Measured active power total [W] MQPOWERSUM Measured reactive power total [VAr] MSPOWERSUM Measured apparent power total [VA] MENERGY1 Measured active energy phase 1 [Ws] MENERGY2 Measured active energy phase 2 [Ws] MENERGY3 Measured active energy phase 3 [Ws] MQENERGY1 Measured reactive energy phase 1 [VArs] MQENERGY2 Measured reactive energy phase 2 [VArs] MQENERGY3 Measured reactive energy phase 3 [VArs] MSENERGY1 Measured apparent energy phase 1 [VAs] MSENERGY2 Measured apparent energy phase 2 [VAs] MSENERGY3 Measured apparent energy phase 3 [VAs] MENERGYSUM Measured active energy total [Ws] MQENERGYSUM Measured reactive energy total [VArs] MSENERGYSUM Measured apparent energy total [VAs] VCTDIAG Vector diagram for load point MHAU1 Amplitude of the harmonic - voltage phase 1 [%] MHAU2 Amplitude of the harmonic - voltage phase 2 [%] MHAU3 Amplitude of the harmonic - voltage phase 3 [%] MHAI1 Amplitude of the harmonic - current phase 1 [%] MHAI2 Amplitude of the harmonic - current phase 2 [%] MHAI3 Amplitude of the harmonic - current phase 3 [%] MHPU1 Phase angle of the harmonic - voltage phase 1 [ ] MHPU2 Phase angle of the harmonic - voltage phase 2 [ ] MHPU3 Phase angle of the harmonic - voltage phase 3 [ ] MHPI1 Phase angle of the harmonic - current phase 1 [ ] MHPI2 Phase angle of the harmonic - current phase 2 [ ] MHPI3 Phase angle of the harmonic - current phase 3 [ ] CONTYPE2 Connection type (one phase, three phase, two phase, ) Load Point type LOAD VALUES U: Command Description MVOLT1 Measured voltage phase 1 [V] MVOLT2 Measured voltage phase 2 [V] MVOLT3 Measured voltage phase 3 [V] MPHU1 Measured voltage angle phase 1 [ ] MPHU2 Measured voltage angle phase 2 [ ] MPHU3 Measured voltage angle phase 3 [ ] MPHASESEQ Measured Phase Sequence DFVOLT1 Voltage distortion factor phase 1 DFVOLT2 Voltage distortion factor phase 2 DFVOLT3 Voltage distortion factor phase 3 RVOLT2VOLT1 Ratio U2 / U1 RVOLT3VOLT1 Ratio U3 / U1 PHVOLT2VOLT1 Phase shift between U2 and U1 [ ] PHVOLT3VOLT1 Phase shift between U3 and U1 [ ] ERRORVOLT2VOLT1 Transformer ratio U2 / U1 error [%] ERRORVOLT3VOLT1 Transformer ratio U3 / U1 error [%] MFREQ Measured frequency [Hz] VCTDIAG Vector diagram for load point MHAU1 Amplitude of the harmonic - voltage phase 1 [%] MHAU2 Amplitude of the harmonic - voltage phase 2 [%] 30 WS-UGSW34b-EN

31 Command Description MHAU3 Amplitude of the harmonic - voltage phase 3 [%] MHPU1 Phase angle of the harmonic - voltage phase 1 [ ] MHPU2 Phase angle of the harmonic - voltage phase 2 [ ] MHPU3 Phase angle of the harmonic - voltage phase 3 [ ] CONTYPE2 Connection type (one phase, three phase, two phase, ) Load Point type LOAD VALUES I: Command Description MCURR1 Measured current phase 1 [A] MCURR2 Measured current phase 2 [A] MCURR3 Measured current phase 3 [A] MPHI1 Measured current angle phase 1 [ ] MPHI2 Measured current angle phase 2 [ ] MPHI3 Measured current angle phase 3 [ ] DFCURR1 Current distortion factor phase 1 DFCURR2 Current distortion factor phase 2 DFCURR3 Current distortion factor phase 3 RCURR2CURR1 Ratio I2 / I1 RCURR3CURR1 Ratio I3 / I1 PHCURR2CURR1 Phase shift between I2 and I1 [ ] PHCURR3CURR1 Phase shift between I3 and I1 [ ] ERRORCURR2CURR1 Transformer ratio I2 / I1 error [%] ERRORCURR3CURR1 Transformer ratio I3 / I1 error [%] MFREQ Measured frequency [Hz] VCTDIAG Vector diagram for load point MHAI1 Amplitude of the harmonic - current phase 1 [%] MHAI2 Amplitude of the harmonic - current phase 2 [%] MHAI3 Amplitude of the harmonic - current phase 3 [%] MHPI1 Phase angle of the harmonic - current phase 1 [ ] MHPI2 Phase angle of the harmonic - current phase 2 [ ] MHPI3 Phase angle of the harmonic - current phase 3 [ ] CONTYPE2 Connection type (one phase, three phase, two phase, ) Load Point type ENERGY ERROR: Command Description MENERGYTYPE2 Energy type (active, reactive, apparent) COUNTERBEGIN Counter value on tested meter on measurement begin COUNTEREND Counter value on tested meter on measurement end COUNTERDIFF Value of energy measured by tested meter [kwh; kvarh; kvah] MENERGYREF Reference value of energy measured by WS device [kwh; kvarh; kvah] MENERGYERROR Energy measurement error [%] MAVGPOWER Power averaged through whole measurement period [kw; kvar; kva] INTTIME Measurement period in minutes MVOLT1 Measured voltage phase 1 [V] MVOLT2 Measured voltage phase 2 [V] MVOLT3 Measured voltage phase 3 [V] MCURR1 Measured current phase 1 [A] MCURR2 Measured current phase 2 [A] MCURR3 Measured current phase 3 [A] MPHU1 Measured voltage angle phase 1 [ ] MPHU2 Measured voltage angle phase 2 [ ] MPHU3 Measured voltage angle phase 3 [ ] MPHI1 Measured angle between current and voltage phase 1 [ ] MPHI2 Measured angle between current and voltage phase 2 [ ] MPHI3 Measured angle between current and voltage phase 3 [ ] MPHASESEQ Measured Phase Sequence MPOWFACT1 Measured power factor phase 1 MPOWFACT2 Measured power factor phase 2 WS-UGSW34b-EN 31

32 Command Description MPOWFACT3 Measured power factor phase 3 MFREQ Measured frequency [Hz] MPOWER1 Measured active power phase 1 [W] MPOWER2 Measured active power phase 2 [W] MPOWER3 Measured active power phase 3 [W] MQPOWER1 Measured reactive power phase 1 [VAr] MQPOWER2 Measured reactive power phase 2 [VAr] MQPOWER3 Measured reactive power phase 3 [VAr] MSPOWER1 Measured apparent power phase 1 [VA] MSPOWER2 Measured apparent power phase 2 [VA] MSPOWER3 Measured apparent power phase 3 [VA] MPOWERSUM Measured active power total [W] MQPOWERSUM Measured reactive power total [VAr] MSPOWERSUM Measured apparent power total [VA] MENERGY1 Measured active energy phase 1 [Ws] MENERGY2 Measured active energy phase 2 [Ws] MENERGY3 Measured active energy phase 3 [Ws] MQENERGY1 Measured reactive energy phase 1 [VArs] MQENERGY2 Measured reactive energy phase 2 [VArs] MQENERGY3 Measured reactive energy phase 3 [VArs] MSENERGY1 Measured apparent energy phase 1 [VAs] MSENERGY2 Measured apparent energy phase 2 [VAs] MSENERGY3 Measured apparent energy phase 3 [VAs] MENERGYSUM Measured active energy total [Ws] MQENERGYSUM Measured reactive energy total [VArs] MSENERGYSUM Measured apparent energy total [VAs] DFCURR1 Current distortion factor phase 1 DFCURR2 Current distortion factor phase 2 DFCURR3 Current distortion factor phase 3 VCTDIAG Vector diagram for load point MHAU1 Amplitude of the harmonic - voltage phase 1 [%] MHAU2 Amplitude of the harmonic - voltage phase 2 [%] MHAU3 Amplitude of the harmonic - voltage phase 3 [%] MHAI1 Amplitude of the harmonic - current phase 1 [%] MHAI2 Amplitude of the harmonic - current phase 2 [%] MHAI3 Amplitude of the harmonic - current phase 3 [%] MHPU1 Phase angle of the harmonic - voltage phase 1 [ ] MHPU2 Phase angle of the harmonic - voltage phase 2 [ ] MHPU3 Phase angle of the harmonic - voltage phase 3 [ ] MHPI1 Phase angle of the harmonic - current phase 1 [ ] MHPI2 Phase angle of the harmonic - current phase 2 [ ] MHPI3 Phase angle of the harmonic - current phase 3 [ ] CONTYPE2 Connection type (one phase, three phase, two phase, ) LIMIT Limit DFVOLT1 Voltage distortion factor phase 1 DFVOLT2 Voltage distortion factor phase 2 DFVOLT3 Voltage distortion factor phase 3 Load Point type LOAD VALUES II: Command Description MCURR1 Measured current phase 1 (channel A) [A] MCURR2 Measured current phase 2 (channel A) [A] MCURR3 Measured current phase 3 (channel A) [A] MCURR4 Measured current phase 1 (channel B) [A] MCURR5 Measured current phase 2 (channel B) [A] MCURR6 Measured current phase 3 (channel B) [A] MPHI1 Measured current angle phase 1 (channel A) [ ] MPHI2 Measured current angle phase 2 (channel A) [ ] 32 WS-UGSW34b-EN

33 Command Description MPHI3 Measured current angle phase 3 (channel A) [ ] MPHI4 Measured current angle phase 1 (channel B) [ ] MPHI5 Measured current angle phase 2 (channel B) [ ] MPHI6 Measured current angle phase 3 (channel B) [ ] DFCURR1 Current distortion factor phase 1 (channel A) DFCURR2 Current distortion factor phase 2 (channel A) DFCURR3 Current distortion factor phase 3 (channel A) DFCURR4 Current distortion factor phase 1 (channel B) DFCURR5 Current distortion factor phase 2 (channel B) DFCURR6 Current distortion factor phase 3 (channel B) RCURR4CURR1 Ratio Ib1 / Ia1 RCURR5CURR2 Ratio Ib2 / Ia2 RCURR6CURR3 Ratio Ib3 / Ia3 PHCURR4CURR1 Phase shift between Ib1 and Ia1 [ ] PHCURR5CURR2 Phase shift between Ib2 and Ia2 [ ] PHCURR6CURR3 Phase shift between Ib3 and Ia3 [ ] ERRORCURR4CURR1 Transformer ratio Ib1 / Ia1 error ERRORCURR5CURR2 Transformer ratio Ib2 / Ia2 error ERRORCURR6CURR3 Transformer ratio Ib3 / Ia3 error MFREQ Measured frequency [Hz] VCTDIAG Vector diagram for load point MHAI1 Amplitude of the harmonic - current phase 1 (channel A) [%] MHAI2 Amplitude of the harmonic - current phase 2 (channel A) [%] MHAI3 Amplitude of the harmonic - current phase 3 (channel A) [%] MHAI4 Amplitude of the harmonic - current phase 1 (channel B) [%] MHAI5 Amplitude of the harmonic - current phase 2 (channel B) [%] MHAI6 Amplitude of the harmonic - current phase 3 (channel B) [%] MHPI1 Phase angle of the harmonic - current phase 1 (channel A) [ ] MHPI2 Phase angle of the harmonic - current phase 2 (channel A) [ ] MHPI3 Phase angle of the harmonic - current phase 3 (channel A) [ ] MHPI4 Phase angle of the harmonic - current phase 1 (channel B) [ ] MHPI5 Phase angle of the harmonic - current phase 2 (channel B) [ ] MHPI6 Phase angle of the harmonic - current phase 3 (channel B) [ ] CONTYPE2 Connection type (one phase, three phase, two phase, ) Load Point type LOAD VALUES UU: Command Description MVOLT1 Measured voltage phase 1 (channel A) [V] MVOLT2 Measured voltage phase 2 (channel A) [V] MVOLT3 Measured voltage phase 3 (channel A) [V] MVOLT4 Measured voltage phase 1 (channel B) [V] MVOLT5 Measured voltage phase 2 (channel B) [V] MVOLT6 Measured voltage phase 3 (channel B) [V] MPHU1 Measured voltage angle phase 1 (channel A) [ ] MPHU2 Measured voltage angle phase 2 (channel A) [ ] MPHU3 Measured voltage angle phase 3 (channel A) [ ] MPHU4 Measured voltage angle phase 1 (channel B) [ ] MPHU5 Measured voltage angle phase 2 (channel B) [ ] MPHU6 Measured voltage angle phase 3 (channel B) [ ] DFVOLT1 Voltage distortion factor phase 1 (channel A) DFVOLT2 Voltage distortion factor phase 2 (channel A) DFVOLT3 Voltage distortion factor phase 3 (channel A) DFVOLT4 Voltage distortion factor phase 1 (channel B) DFVOLT5 Voltage distortion factor phase 2 (channel B) DFVOLT6 Voltage distortion factor phase 3 (channel B) RVOLT4VOLT1 Ratio Ub1 / Ua1 RVOLT5VOLT2 Ratio Ub2 / Ua2 RVOLT6VOLT3 Ratio Ub3 / Ua3 WS-UGSW34b-EN 33

34 Command Description PHVOLT4VOLT1 Phase shift between Ub1 and Ua1 [ ] PHVOLT5VOLT2 Phase shift between Ub2 and Ua2 [ ] PHVOLT6VOLT3 Phase shift between Ub3 and Ua3 [ ] ERRORVOLT4VOLT1 Transformer ratio Ub1 / Ua1 error ERRORVOLT5VOLT2 Transformer ratio Ub2 / Ua2 error ERRORVOLT6VOLT3 Transformer ratio Ub3 / Ua3 error MFREQ Measured frequency [Hz] VCTDIAG Vector diagram for load point MHAU1 Amplitude of the harmonic - voltage phase 1 (channel A) [%] MHAU2 Amplitude of the harmonic - voltage phase 2 (channel A) [%] MHAU3 Amplitude of the harmonic - voltage phase 3 (channel A) [%] MHAU4 Amplitude of the harmonic - voltage phase 1 (channel B) [%] MHAU5 Amplitude of the harmonic - voltage phase 2 (channel B) [%] MHAU6 Amplitude of the harmonic - voltage phase 3 (channel B) [%] MHPU1 Phase angle of the harmonic - voltage phase 1 (channel A) [ ] MHPU2 Phase angle of the harmonic - voltage phase 2 (channel A) [ ] MHPU3 Phase angle of the harmonic - voltage phase 3 (channel A) [ ] MHPU4 Phase angle of the harmonic - voltage phase 1 (channel B) [ ] MHPU5 Phase angle of the harmonic - voltage phase 2 (channel B) [ ] MHPU6 Phase angle of the harmonic - voltage phase 3 (channel B) [ ] CONTYPE2 Connection type (one phase, three phase, two phase, ) Command syntax: #COMMANDmeter_loadpoint... common command #COMMANDmeter_loadpoint_harmnumb... command for printing harmonics (amplitude, phase) meter... sequential meter index: can be 1 and higher loadpoint... sequential loadpoint index: can be 0 (= special processing) and higher harmnumb... harmonic number: integral number defined by the ratio of the frequency of the harmonic to the fundamental frequency Example: Load points of first meter of the selection can be printed using following commands: No. Error [%] U1 [V] U2 [V] U3 [V] I1 [V] I2 [V] I3 [V] #LOADPOIN T1_0 #METERERRO R1_0 #MVOLT11_ 0 #MVOLT21_ 0 #MVOLT31_ 0 #MCURR11_ 0 #MCURR21_ 0 #MCURR31_ 0 34 WS-UGSW34b-EN

35 6. Parameters Program parameters are accessible through menu Configuration Parameters. Window Parameters Parameters page Readout Delete Data From WS After Successful Readout enables automatic deletion of measured data stored in WS after every successful WS readout Selection of Readout Meters enables possibility to choose measured load points for readout. Only data from selected meters will be stored to local database. Serial Port Settings parameters of communication port used for Working Standard device WS-UGSW34b-EN 35

36 Parameters page Folders Page Folders contains predefined folders for most frequently used features. Parameters page Evaluation Outline values outside limit enables highlighting of measured load points with meter error which is out of limits. Tolerance limit is equal to meter class of accuracy. In case that meter error is higher than meter class of accuracy, character * will be printed into output document or certificate following numerical value of error. Phase normalization enables user to set mode in which phase information will be presented. This setting influences values displayed on screen as well as values exported to output documents. 36 WS-UGSW34b-EN

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