IPEmotion Release News 2016 R1.1

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1 IPEmotion Release News 2016 R1.1 May

2 IPEmotion 2016 R1 General changes Table of contents 1 IPEmotion 2016 R1 General changes YouTube Resources PlugIns included in the Setup Supported languages in the setup Setup and installation Windows 10 compatible IPEcan hardware driver IPEmotion edition overview Acoustic option PlugIn interface Concept of key-value pair configuration for data loggers YouTube Resources New functions in OPTIONS Data import and export overview PAK ASAM ATF/XML export G.I.N. audio export MDF 4 export MDF4 including text channels MDF4 export configuration through XML file New functions in SIGNALS DBC import Display CAN ID in DEZ or HEX format Edit A2L dynamic DAQ list ODT values Import CAN signals from FIBEX files Display of sender name for FIBEX, DBC, AUTOSAR imports A2L import with additional FlexRay parameters import Display port & reference for logger storage group cross reference Display in channel grid sensor calibration date and serial number New functions in ACQUISITION Climate Module new climate formulas FlexRay Traffic generator New functions in VIEW Instrument grouping FlexRay traffic analyzer New functions in DATA MANAGER Campbell operation You tube resources IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 2/ 56

3 IPEmotion 2016 R1 General changes General tab sheet FFT tab sheet Pre-filter tab sheet Weighting tab sheet Impact of different Campbell operation settings Customize key-value pairs in the DATA MANAGER Export Single Value variables for IAD, CSV, XLS, XLXS Single value operations including the source channel unit New functions in ANALYSIS Instrument grouping Multiple diagram synchronization function Campbell diagram You tube resources Instrument configuration functions Campbell diagram head up display General X-axis Y-axis Graph displaying Legend Classification grid Classification grid head up display Traffic analyzer for FlexRay messages IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 3/ 56

4 IPEmotion 2016 R1 General changes 1 IPEmotion 2016 R1 General changes 1.1 YouTube Resources IPEmotion Release 2016 R1 New Feature Overview: PlugIns included in the Setup IPEmotion PlugIn IPETRONIK CAN V IPEmotion PlugIn IPETRONIK LOG V IPEmotion PlugIn IPETRONIK X V IPEmotion PlugIn CAN-Acquisition V IPEmotion PlugIn Protocols V IPEmotion PlugIn CAN-Send V Supported languages in the setup English German French Italian Japanese Korean Chinese (simplified) 1.4 Setup and installation Windows 10 compatible The IPEmotion release ready and tested for Windows 10 in 32 and 64 bit installations. Also at least the.net framework or higher is required. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 4/ 56

5 IPEmotion 2016 R1 General changes IPEcan hardware driver The IPEcan driver is supporting all IPEcan hardware like: IPEcan FD / IPEcan (EoL) IPEcan Pro FD / IPEcan Pro (EoL) 1.5 IPEmotion edition overview The edition overview you can see that a new Module called Acoustic together with a new instrument called Campbell diagram is introduced. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 5/ 56

6 IPEmotion 2016 R1 General changes IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 6/ 56

7 IPEmotion 2016 R1 General changes 1.6 Acoustic option The acoustic module was developed to support acoustic and vibration data analysis using FFT and Campbell diagrams. The data presentation in the Campbell diagram can be scaled logarithmic or in linear, A and C weighting. Data export for the PAK software in the ATFX format is only available with this license option. This option can be purchased as an add-on for Professional, Developer and Analysis Editions. The features of the Campbell operation are explained in chapter [6.1] and the configuration of the Campbell diagram in [7.3]. 1.7 PlugIn interface IPETRONIK is changing the policy for PlugIn development partners. With this release of IPEmotion all PlugIns developed with the Demo code of the PlugIn designer are blocked. These PlugIns cannot be activated any more in the PlugIn option. Information Any PlugIn development partner needs an approved manufacturer code and password in order to create his own PlugIns. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 7/ 56

8 IPEmotion 2016 R1 General changes In this context all old Demo PlugIns and PCAN-USB LIN PlugIns which are based on the demo manufacturer code are blocked too. Information All project based on the Demo PlugIn V and PCAN-USB LIN V are not any more supported. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 8/ 56

9 IPEmotion 2016 R1 General changes 1.8 Concept of key-value pair configuration for data loggers YouTube Resources IPEmotion - Key-Value Pairs and MDF4: IPETRONIK data logger can store customer specific key-value pairs in the data files. The main objective for the user is to add and link important information on channel level to the data file. In the screenshot below you can see how the standard information of measurement channel can be enriched with additional information. The main idea is to add information (meta data tags) on channel level, so that from a data traceability point of view the user can easily identify along the whole hierarchy of the data acquisition system where the data is originating from. The following diagram is showing how the hierarchy can be reduced when using an XML transformation file. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 9/ 56

10 IPEmotion 2016 R1 General changes The logger specific key-value definition XML file is stored in the following directory: C:\ProgramData\IPETRONIK\IPEmotion 2016 R1 RC\MAL\IPETRONIK\IPETRONIK-Logger\ KeyValueDefinition.XML As indicated below this XML file includes parameters which the user would like to store in addition to the general channel properties. Information Only IPETRONIK developers have access to the exact parameter names in order to define them in the XML file. With the Customize.XML file the additional channel parameter can be made accessible and visible to the channel grid of the DATA MANAGER [6.2]. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 10/ 56

11 New functions in OPTIONS 2 New functions in OPTIONS 2.1 Data import and export overview The data manager is supporting and new export format for G.I.N microphones. 2.2 PAK ASAM ATF/XML export The PAK ATFX export was developed to export data in the file format of the PAK acoustic software system from Müller BBM. The export considers all measurement signals in the data file with a sample rate below or equal to 1 khz sample rate as a reference signal for the Campbell instrument in the PAK software. With a reference signal the Campbell diagram can display the results along other measurement parameters like time for example along engine RPM. This export is licenses together with the Acoustic Module mentioned above. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 11/ 56

12 New functions in OPTIONS 2.3 G.I.N. audio export Audio signals recorded from G.I.N microphones based on the CAN traffic format can be exported to WAV format to play back the audio recordings. The audio recording must be stored with an IPETRONIK data logger in the traffic file format and storage group. The audio (WAV) export is automatically considering all traffic messages starting with ID 0x1BFF0008 as audio recordings. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 12/ 56

13 New functions in OPTIONS 2.4 MDF 4 export MDF4 including text channels When exporting data to MDF4 you can now export text channels too. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 13/ 56

14 New functions in OPTIONS MDF4 export configuration through XML file It is explained in chapter [0] how you can add additional user defined parameters to the channel. With a specific Mdf4MetadataConfigurationFile.XML file you can define how the data is converted into the MDF format. The XML file has to be stored in the following directory: C:\ProgramData\IPETRONIK\IPEmotion 2016 R1 RC\ DataPluginSettings\ Mdf4MetadataConfigurationFile.xml The MDF4 validator software shows show as an example how one parameter Bus Name of the XML file are integrated into the MDF4 data file structure. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 14/ 56

15 New functions in SIGNALS 3 New functions in SIGNALS 3.1 DBC import Display CAN ID in DEZ or HEX format When you import a DBC file regardless which PlugIn you are using you can switch the display of the CAN ID from decimal format to a hexadecimal format. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 15/ 56

16 New functions in SIGNALS 3.2 Edit A2L dynamic DAQ list ODT values When you import an A2L file for dynamic DAQ list measurements e.g. for an XCPonCAN for your ECU the import dialog considers by default the maximum ODT count = 252. (ODT = Object Descriptor Table). The DAQ list fill level calculation is based on the default assumption that the 252 ODT can be serviced by the ECU. In practice the user tend to overload the dynamic DAQ list why adding to many ODT. This problem can be solved in the way that the user can define in the import dialog the appropriate values for the MAX ODT and MAX ODT Entries to calculate the fill level correctly. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 16/ 56

17 New functions in SIGNALS If you now like to calculate the DAQ list fill level correctly you must correct the values for MAX ODT and MAX ODT Entries. In order to do this you can take a template file from the following directory: C:\ProgramData\IPETRONIK\IPEmotion 2016 R1 RC\Template\DaqListXcpCan.xml This file has to be transferred into the following directory: C:\ProgramData\IPETRONIK\IPEmotion 2016 R1 RC\UserSettings\DaqListXcpCan.xml You need to close IPEmotion and edit the XML file and set the values for Max ODT and Max ODT Entries for read only into FALSE. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 17/ 56

18 New functions in SIGNALS With this setting in the XML file you are able to modify the ODT setting in the import dialog. In the example above the MAX ODT count was set to 10 and the fill level calculation is now considering this value. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 18/ 56

19 New functions in SIGNALS 3.3 Import CAN signals from FIBEX files You can import on all PlugIn supporting CAN interfaces for CANdb measurements now a FIBEX file. When the FIBEX file includes CAN messages it is an adequate replacement for the DBC file. The import dialog is indicating in the protocol header Free running. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 19/ 56

20 New functions in SIGNALS After the import you see you CAN messages and the channel. The import properties of the CAN message indicate the protocol properties too. 3.4 Display of sender name for FIBEX, DBC, AUTOSAR imports The import properties of the CAN, FIBEX and AUTOSAR messages include now the sender name when defined in the description file. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 20/ 56

21 New functions in SIGNALS 3.5 A2L import with additional FlexRay parameters import When you have an A2L description file for a FlexRay protocol measurement and the A2L is not including any FlexRay parameter the import process will open automatically a file open dialog to load the parameter file. Import dialog to select the FlexRay signals. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 21/ 56

22 New functions in SIGNALS When the FlexRay parameter file as defined in the A2L is not available a second file open dialog will be opened automatically to guide you to the next step and search for the Fibex XML parameter file. New import dialog to select FlexRay parameters. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 22/ 56

23 New functions in SIGNALS 3.6 Display port & reference for logger storage group cross reference In the Logger PlugIn you can add the port and reference column to in the channel usage overview of the storage groups. The screenshot below is indicating the port and reference information for all channels. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 23/ 56

24 New functions in SIGNALS 3.7 Display in channel grid sensor calibration date and serial number The channel grid is supporting new custom specific columns to display read only information about the senior calibration date and the sensor serial number. This information is stored in the sensor in the sensor database of IPEmotion. All sensors in the sensor data can be reached through the scaling calculator. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 24/ 56

25 New functions in ACQUISITION 4 New functions in ACQUISITION 4.1 Climate Module new climate formulas For the climate module are set of new formulas are introduced. The following screenshot gives an overview of all climate formulas. h_liq_p h_liq_p calculates the specific enthalpy (unit: kj/kg) as a function of temperature (unit: C), pressure (unit: bar), and a fluid on the boiling line. The fluid is defined by an index referring to the following list of supported fluids: R134a, R1234yf, R22, R404a, R410a, R507a, R744 (carbon dioxide), R718 (water), R729 (dry air) Syntax: h_liq_p(pressure-operand; index of fluid) Examples: h_liq_p("channelpressure"; 1) calculates the specific enthalpy using a pressure channel for the fluid R134a. h_liq_p(2; 2) calculates the specific enthalpy using a fixed value for the pressure of the fluid R1234yf. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 25/ 56

26 New functions in ACQUISITION h_vap_p h_liq_t h_vap_t h_liqvap_pq h_vap_p calculates the specific enthalpy (unit: kj/kg) as a function of temperature (unit: C), pressure (unit: bar), and a fluid on the dewing line. The fluid is defined by an index referring to the following list of supported fluids: R134a, R1234yf, R22, R404a, R410a, R507a, R744 (carbon dioxide), R718 (water), R729 (dry air) Syntax: h_vap_p(pressure-operand; index of fluid) Examples: h_vap_p("channelpressure"; 1) calculates the specific enthalpy using a pressure channel for the fluid R134a. h_vap_p(20; 2; 2) calculates the specific enthalpy using a fixed value for the pressure of the fluid R1234yf. h_liq_t calculates the specific enthalpy (unit: kj/kg) as a function of temperature (unit: C), pressure (unit: bar), and a fluid on the boiling line. The fluid is defined by an index referring to the following list of supported fluids: R134a, R1234yf, R22, R404a, R410a, R507a, R744 (carbon dioxide), R718 (water), R729 (dry air) Syntax: h_liq_t(temperature-operand; index of fluid) Examples: h_liq_t("channeltemperature"; 1) calculates the specific enthalpy using a temperature channel for the fluid R134a. h_liq_t(2; 2) calculates the specific enthalpy using a fixed value for the temperature of the fluid R1234yf. h_vap_t calculates the specific enthalpy (unit: kj/kg) as a function of temperature (unit: C), pressure (unit: bar), and a fluid on the dewing line. The fluid is defined by an index referring to the following list of supported fluids: R134a, R1234yf, R22, R404a, R410a, R507a, R744 (carbon dioxide), R718 (water), R729 (dry air) Syntax: h_vap_t(temperature-operand; index of fluid) Examples: h_vap_t("channeltemperature"; 1) calculates the specific enthalpy using a temperature channel for the fluid R134a. h_vap_t(20; 2) calculates the specific enthalpy using a fixed value for the temperature of the fluid R1234yf. h_liqvap_pq calculates the specific enthalpy (unit: kj/kg) as a function of pressure (unit: bar), mixing quality, and a fluid. The mixing quality equals 0 for pure liquids, 1 for vapors, and values inbetween for mixes, e.g for 25% liquid and 75% vapor content. The fluid is defined by an index referring to the following list of supported fluids: R134a, R1234yf, R22, R404a, R410a, R507a, R744 (carbon dioxide), R718 (water), R729 (dry air) Syntax: h_liqvap_pq(pressure-operand; quality-operand; index of fluid) Examples: h_liqvap_pq("channelpressure"; "ChannelQuality"; 1) calculates the specific enthalpy using a temperature channel or a pressure channel for the fluid R134a. h_liqvap_pq(1.5; 0.75; 2) calculates the specific enthalpy using fixed values for the pressure and mixing quality of the fluid R1234yf. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 26/ 56

27 New functions in ACQUISITION h_liqvap_tq h_liqvap_tq calculates the specific enthalpy (unit: kj/kg) as a function of temperature (unit: C), mixing quality, and a fluid. The mixing quality equals 0 for pure liquids, 1 for vapors, and values inbetween for mixes, e.g for 25% liquid and 75% vapor content. The fluid is defined by an index referring to the following list of supported fluids: R134a, R1234yf, R22, R404a, R410a, R507a, R744 (carbon dioxide), R718 (water), R729 (dry air) Syntax: h_liqvap_tq(temperature-operand; quality-operand; index of fluid) Examples: h_liqvap_tq("channeltemperature"; "ChannelQuality"; 1) calculates the specific enthalpy using a temperature channel or a pressure channel for the fluid R134a. h_liqvap_tq(20; 0.25; 2) calculates the specific enthalpy using fixed values for the temperature and mixing quality of the fluid R1234yf. 4.2 FlexRay Traffic generator When a FlexRay traffic file is recorded and exported into the ASCII format, the traffic generator can output the standard FlexRay RMSG traffic trace. Information At this point in time there is no PlugIn available supporting FlexRay traffic measurement. This is in development for Q in the scope of the FlexRay Extender. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 27/ 56

28 New functions in VIEW 5 New functions in VIEW 5.1 Instrument grouping Instrument group is implemented. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 28/ 56

29 New functions in VIEW 5.2 FlexRay traffic analyzer The IPETRONIK FlexRay extender is currently undergoing a development to support FlexRay traffic measurement. The FlexRay traffic can be analyzed in the traffic analyzer instrument. The traffic analyzer instrument is supporting the same functions as for CAN, CAN FD traffic analysis. Incoming traffic can be converted into signals when the corresponding Fibex XML file is linked to the instrument. When FlexRay traffic is receive 2 new columns are displayed in the instrument. Slot ID Cycle Message ID Transfer cycle IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 29/ 56

30 New functions in DATA MANAGER 6 New functions in DATA MANAGER 6.1 Campbell operation You tube resources IPEmotion Campbell Operation: The Campbell operation is a based on the FFT operation including additional filter and weighting function to present the data in the Campbell instrument in the ANALYSIS work space. The Campbell operation is the only source channel for the Campbell diagram to display multiple FFT calculation results. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 30/ 56

31 New functions in DATA MANAGER General tab sheet Tab sheet to configure the general properties like name and description of the operation FFT tab sheet The FFT tab sheet offers the most detailed configuration options how the FFT for the Campbell diagram is calculated. Source channel Sample rate Resolution Reference variable This is the signal channel which is subjected to the FFT calculation. Indicating the sample rate of the selected source channel. The resolution is related to the number of taken samples to calculate the FFT. The resolution or number of samples subjected to an FFT calculation is a drop down list. Based on the selected resolution the corresponding frequency and block duration is calculated: Block duration = Resolution / Sample Rate Frequency Resolution = Sample Rate / Resolution When you increase the FFT resolution you increase the accuracy of the sequence but you lose accuracy in regard to the time base. In the standard configuration all FFTs are calculated in regard to the time base. However in many cases it is reasonable to plot FFTs not against time but against another channel which is correlating to the measurement sound and vibration frequencies. A popular channel is the engine RPM when you are investigating acoustic effects in a car. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 31/ 56

32 New functions in DATA MANAGER Reference monotony This setting is related to an increasing or decreasing reference signal e.g RPM. For the FFT calculation it is important that only FFTs included to the Campbell diagram which are originating from an monotony increasing or decreasing signal. Window function The window function is particularly important if only very few periods of signals are included in the calculation and the trigger point of the signal recording gets an important impact on the computed result. The following window functions are supported: Rectangle, Hanning, Hamming, Backman, Bartlett. Step definition Overlap: The overlap function is the same behavior as explained in the FFT analysis. With the overlap you specify how much data of the previous data block is included in the FFT calculation. Absolute: With this setting you can define the absolute step width for the FFT calculation. The default value is calculated by the following formula: (Max value Min value) / 500 The user can change the step definition to other values depending on the desired results in the Campbell diagram. In the example below the default step definition: (4021 rpm 644 rpm) / 500 = 6,75 rpm IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 32/ 56

33 New functions in DATA MANAGER Pre-filter tab sheet The pre-filter tab sheet support the filter functions as discussed in section [Fehler! Verweisquelle konnte icht gefunden werden.]. With the filter operation specific signal frequency can be damped. The Campbell diagram with the pre-filter is showing now values above the 500 Hz line. The filter damping is of course not perfect there some frequencies are still crossing the 500 border line. If you like you can also operate the pre-filter operation before the Campbell operation and use the result of the pre-filter as an input to the Campbell operation. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 33/ 56

34 New functions in DATA MANAGER Weighting tab sheet The weighting function is a very important setting for the Campbell operation. The weighting function parameters have to be configured to present the data in a normative format. The following scaling modes and recommended reference values are defined. Linear Scaling db unweighted db A weighted db C weighted Has no impact to the calculated results. An db reference value has to be defined. An db reference value has to be defined. An db reference value has to be defined. With the weighting function it is possible to compensate different sound pressure levels accordingly to human hears. The reference value for compensating sound /microphone recordings is: 2E-5 = 0,00002 The reference value for structural vibration measurements is: 2E-6 = 0, The correct db reference values have to be selected in reference to the application. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 34/ 56

35 New functions in DATA MANAGER Impact of different Campbell operation settings In this example you will see how the different Campbell operation settings impact the results and the data presentation of the Campbell diagram. The configuration settings of the diagram itself are explained in section [Fehler! Verweisquelle konnte nicht gefunden werden.]. Example Resolution (number of samples considered for FFT calculation) In order to calculate the FFT of 50 khz raw signal, a defined number of samples (resolution) have to be taken into the calculation. In the example below a low the resolution (1024 samples FFT) is compared by a high resolution ( samples) FFT. As you can see along the Y-axis the frequency resolution is about a 50 Hz (low) caused by the small number of samples (1024) and in contrast you see 3 Hz frequency resolution in the Campbell diagram as a result of a high number (16.394) of samples included in the FFT calculation. If you need to investigate high frequency resolution you should consider a high number of samples to calculate the Campbell diagram. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 35/ 56

36 New functions in DATA MANAGER Example: Impacts of using a reference channel (non-time based Campbell) Another configuration option is to use another reference channel than the time base. In this example the engine RPM is used to calculate the Campbell diagram. When we use a reference channel which is correlating with the vibrations and acoustic effects like the engine RPM on vehicles we see a different presentation of the Campbell diagram. The harmonic frequency bands starting from the same point and allow better analysis to identify at which engine RPM level which frequencies which high amplitudes occurred. High amplitudes are indicated in red color and indicated higher noise levels. When you use a separate reference channel you have to consider the setting for the step definition in absolute value. The step definition has a big impact on the result of the Campbell diagram. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 36/ 56

37 New functions in DATA MANAGER When you consider a large step size only a few FFT are calculated and therefore the resolution of the Campbell diagram is going down. The following sketch is indicating how the step size is impacting how many FFT are calculated along the RPM profile. A large step size and block size have an impact on how many FFT are calculated. In the example below you see how different reference profiles have impact to the FFT calculation. When the reference channel has a high gradient (strong rise) the data block for FFT reach still a good overlap when with a small block size (resolution). However when the reference signal is rising very slowly and you define a large step size you need to increase the block length (number of samples) to gain a reasonable overlap. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 37/ 56

38 New functions in DATA MANAGER Example: Impacts of the Window function and the overlap The window functions are very important to ensure a clean FFT calculation without to many artefacts originating from the start and end section of the raw signal. The window function is smoothing the start and end section of data block before the FFT is calculated. Each wind function has a different weighting and smoothing function which has a positive impact on the frequency resolution (Hamming window) or on the amplitude accuracy. With the window function in intake and outlet section of the raw signal are smoothed. This is now the hamming weighted raw signal (time domain signal) IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 38/ 56

39 New functions in DATA MANAGER A window function is very important to smooth the intake and outlet time domain signal.otherwise the FFT is calculating because of the mathematical model unwanted (artefact) frequencies and associated amplitudes. The example below shows the same time domain (raw signal) but the window snapshot is varying and therefore the FFT calculation results from the same signal is different just because of the different waveform from the start and end section. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 39/ 56

40 New functions in DATA MANAGER 6.2 Customize key-value pairs in the DATA MANAGER With the column chooser in the data file tree you can add valuable information to the channel list. By default you can add the following information to the grid: Channel description Channel reference With the Customize.XML file you are able to add individual key value parameters to the channel grid of the data manager tree. The customize XML file has to be installed in the installation directory of IPEmotion. Win 7 C:\Program Files (x86)\ipetronik\ipemotion 2016 R1\Customize.xml Information All properties defined in the Customize.XML are available through the column choose in the SIGNAL channel grid. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 40/ 56

41 New functions in DATA MANAGER The benefit is that you can add additional individual properties on channel level to the grid to more clearly distinguish channels from each other. 6.3 Export Single Value variables for IAD, CSV, XLS, XLXS The results of the post processing operations with a signal value result like Statistic operation Segment operation (by index and by time) Find condition IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 41/ 56

42 New functions in DATA MANAGER 6.4 Single value operations including the source channel unit Single value output operations will display the unit of the source channel in the instrument in the analysis workspace. The units are considered on the following operations: Statistic, Segment, Filter and Campbell. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 42/ 56

43 New functions in ANALYSIS 7 New functions in ANALYSIS 7.1 Instrument grouping All instruments to present results of the 1D or 2D classifications are grouped together. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 43/ 56

44 New functions in ANALYSIS 7.2 Multiple diagram synchronization function The Sync function is effecting the time Yt-chart, XY-chart and the Campbell diagram. It is supporting 3 different settings which will be explained in turn. No Sync With the no sync setting all Yt, XY and Campbell diagrams have individual time axis settings. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 44/ 56

45 New functions in ANALYSIS Time Sync When you hit the Sync button all diagrams (Yt, XK and Campbell diagram on all pages are updated with the time axis settings of the diagram which was most recently configured. The Sync function is only applied to the time axis (x-axis). Multi Sync With the Multi Sync function all time axis of diagrams (Yt, XY, Campbell ) and the Y-axis and color axis scaling of the Campbell diagram are automatically synchronized to all other Campbell diagrams. With this function it is very easy to configure several Campbell diagrams with the same axis and zoom settings. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 45/ 56

46 New functions in ANALYSIS 7.3 Campbell diagram You tube resources IPEmotion Acoustic analysis with Campbell instrument: The configuration settings of the Campbell operation are explained in this chapter Campbell operation [6.1] Instrument configuration functions Y-axis (frequency) On the y-axis you define the frequency range. With the shift + mouse wheel you can in increase or reduce the frequency axis. With a click on the Y-axis and an up/down movement you can shift the complete Y-axis. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 46/ 56

47 New functions in ANALYSIS X-axis (time / ref channel) On the x-axis you can display either the time or a reference channel. The type of axis presented on the x-axis is depending on the Campbell operation settings [6.1.3]. With the shift + mouse wheel you can in increase or reduce the frequency axis. With a click on the x-axis and a left/right movement you can shift the complete X-axis. Color bar scaling The most important function are the move and scaling function in the color bar and the numerical range. With this configuration functions you can achieve the desired contrast for the spectrums and amplitudes. In the example below the upper Campbell diagram shows all areas with amplitude around ZERO (0 db) in dark blue. However in the lower diagram the display color range was changed /shifted where the color blue is indicating all signals with amplitude -100 db. All red signals have amplitude of around ZERO. Because of the shifted color min / max range the FFT amplitude spectrum can better identified in the lower Campbell diagram. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 47/ 56

48 New functions in ANALYSIS Another configuration function is to change the display range. When you left click into the numerical axis of the color scale you can you can stretch and compress the numerical Min / Max display range. In the following example you will see how the selected range on the graphical presentation of the amplitudes and the level of detail. In this example a very good range von 30 db (10 = blue to 40 = red) was selected and there is a good resolution between the red and yellow/green amplitude areas visible. In the example below the range was set to 20 db (10 = blue to 30 = red). In this case all signals above 30 are indicated in red color. The result is that this scaling in the range von db is not well suited as all amplitudes above 20 db cannot be differentiated clearly. They are all grouped together in the red color range. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 48/ 56

49 New functions in ANALYSIS Campbell diagram head up display IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 49/ 56

50 New functions in ANALYSIS General The general settings are only visible when no Campbell operation is linked to the diagram or when the diagram is moved and other empty areas appear. For more details see configuration options in chapter VIEW > Yt- chart [Fehler! Verweisquelle konnte nicht gefunden werden.] X-axis Axis marking Automatic scaling Refers to a name displayed along the x-axis. Takes the time values from the data file into the diagram. You can deactivated the check box and define your own time span for the display range in the diagram. When you configure the Campbell operation with a reference channel then the Min max scaling of the x-axis from the reference channel is considered. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 50/ 56

51 New functions in ANALYSIS Y-axis Axis marking Scaling Refers to a name displayed along the Y-axis which is related to the frequency. The frequency can be scaled in linear and logarithmic mode. In the screenshot below logarithmic scaling was selected. Automatic scaling This included the frequency range which is based on the calculation: sample rate of source channel divided by 2. In this example the source channel was sampled at 50 khz and the frequency display range is up to 25 khz. If you are searching for data in a lower frequency range you should lower the display range. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 51/ 56

52 New functions in ANALYSIS Graph displaying Color style Color minimum/ max Three default color styles can be selected. Rainbow, Fire, Grey Refers to the upper and lower ends of the color scale. Examples are explained in section [7.3.2] Legend Show Show unit Display or hide the legend. This display option includes information about the sample rate in Hz and the IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 52/ 56

53 New functions in ANALYSIS 7.4 Classification grid The classification grid is a complementary display instrument to show the results of 2D classification methods graphically. From to count Rainflow Transition matrix Sample count compound Tim at level compound IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 53/ 56

54 New functions in ANALYSIS Classification grid head up display The configuration properties are related to the Campbell diagram as discussed in section [7.3]. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 54/ 56

55 New functions in ANALYSIS Example: Present results of the classification table in the classification grid IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 55/ 56

56 New functions in ANALYSIS 7.5 Traffic analyzer for FlexRay messages The traffic analyzer instrument can present FlexRay traffic. You can also link a corresponding XML file to convert FlexRay traffic into signals. In the screen shot below all available columns from the column chooser are added to the instrument. IPEmotion Release News 2016 R1.1 IPETRONIK GmbH & Co. KG ipetronik.com 56/ 56

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