WO2009073613A2 - Appareil pour afficher des éléments d'information et procédé - Google Patents

Appareil pour afficher des éléments d'information et procédé Download PDF

Info

Publication number
WO2009073613A2
WO2009073613A2 PCT/US2008/085153 US2008085153W WO2009073613A2 WO 2009073613 A2 WO2009073613 A2 WO 2009073613A2 US 2008085153 W US2008085153 W US 2008085153W WO 2009073613 A2 WO2009073613 A2 WO 2009073613A2
Authority
WO
WIPO (PCT)
Prior art keywords
format
instrument
displayed
parameters
parameter
Prior art date
Application number
PCT/US2008/085153
Other languages
English (en)
Other versions
WO2009073613A3 (fr
Inventor
Young Sun Kim
Original Assignee
Blue System Incorporated
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Blue System Incorporated filed Critical Blue System Incorporated
Publication of WO2009073613A2 publication Critical patent/WO2009073613A2/fr
Publication of WO2009073613A3 publication Critical patent/WO2009073613A3/fr

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/08Auctions

Definitions

  • the present invention relates to apparatus for displaying data elements and a method of displaying data elements.
  • the invention relates to apparatus for providing a real time display of data elements.
  • Some embodiments of the invention provide apparatus for displaying real and synthetic data elements and a method therefor.
  • time-dependent data as a function of time is of substantial importance in a range of practical situations.
  • displays of traffic density as a function of time assists traffic controllers in anticipating flow patterns. This in turn assists them in organising flow management systems including personnel deployment scheduling in a more effective and economical manner.
  • the decision making process employed by a traffic controller in determining an appropriate response to a particular traffic flow scenario, and the decision making process employed by a financial trader in determining an appropriate response to a particular state of the financial markets, are complex processes requiring assimilation of a variety of parameters a number of which may be inter-related.
  • the complexity of the decision making process may be exacerbated by relatively rapid changes in the values of certain parameters.
  • parameters may include the number density of vehicles passing certain predetermined locations, and the length of time required for a given vehicle to transit a particular route.
  • parameters to be analysed may include the value of a parameter of one or more instruments, differences between the values of parameters associated with said one or more instruments, or the relationship between parameters of two or more instruments as defined by a particular mathematical algorithm or formula.
  • Computer systems provide a convenient means by which a traffic controller or a financial trader can acquire and assimilate values of parameters. The form in which values of parameters are displayed is an important factor in determining how rapidly the values of the parameters can be assimilated.
  • data processing apparatus running a computer software application, comprising: a data processing portion; a data input portion; and a display portion, the apparatus being configured to store data elements input to the apparatus, said data elements corresponding to values of each of a plurality of parameters associated with one or more instruments, the apparatus being configurable to display values of one or more parameters associated with an instrument, the apparatus being operable by means of the data input portion to display said values according to a selected one of a plurality of predetermined user-configurable formats and to change the format according to which said values are displayed to a different one of said plurality of formats, each of said formats being defined by the identity of one or more instruments of which one or more parameters are to be displayed; the identity of said one or more parameters of each respective instrument that are to be displayed; and a location on said display portion at which said values of said parameters are to be displayed.
  • data processing apparatus running a computer software application, comprising: a data processing portion; a data input portion; and a display portion, the apparatus being configured to store data elements input to the apparatus, said data elements corresponding to values of a plurality of parameters, said parameters being associated with one or more instruments, the data input portion being operable by a user to input one or more mathematical functions comprising one or more operands, an operand corresponding to a parameter of one or more instruments, thereby to define a parameter of one or more synthetic symbols, the apparatus being further configurable to calculate a value of said parameter of said one or more synthetic symbols based on said data elements input to the apparatus, the apparatus being configured to display values of one or more parameters associated with an instrument and one or more parameters associated with a synthetic symbol on the display portion, the apparatus being operable to display said values according to one of a plurality of predetermined user-selectable formats, each of said formats being defined by the identity of one or more instruments and/or synthetic symbols of which one or more parameters are to
  • a method of processing and displaying data in a data processing apparatus comprising the steps of: receiving data elements input to the data processing apparatus and storing said data elements, said data elements corresponding to values of each of a plurality of parameters associated with one or more instruments; displaying values of one or more parameters associated with an instrument according to a selected one of a plurality of predetermined user-configurable formats; and changing the format according to which said values are displayed to a different one of said plurality of formats, each of said formats being defined by the identity of one or more instruments of which one or more parameters are to be displayed; the identity of said one or more parameters of each respective instrument that are to be displayed; and a location on said display portion at which said values of said parameters are to be displayed.
  • Embodiments of the invention have the feature that a user can change the format in which data is displayed in a data display window in order to optimise the display according to a given task the user is required to perform.
  • a user may be required to assess a state of a financial market with respect to the values of stock of telecommunications companies and the values of stock of financial institutions.
  • the user may require to display a particular set of parameters associated with a given set of instruments.
  • the instruments may be stocks of a given company, bonds, or any other financial instrument associated with a given entity.
  • the software application may be configured by a user to display values of a particular set of parameters of a set of instruments in which the user is interested. Values may be displayed corresponding to a given required moment in time, or corresponding to a given required period of time.
  • the apparatus may be configured to allow a user to input to the apparatus one or more mathematical relationships between parameters of one or more instruments thereby to define a parameter of one or more synthetic symbols, the apparatus being further configured to calculate a value of said parameter of said one or more synthetic symbols based on said data elements input to the apparatus.
  • the user may require to compare values of one or more parameters of two or more stocks for a given moment in time. For example, the user may require to compare the bid prices of two or more instruments, or the ask prices of two or more instruments. Alternatively or in addition, the user may require to compare the bid price of one instrument with the ask price of a second instrument.
  • the software application is operable to allow the user to accomplish these requirements.
  • the application allows the user to select an instrument and the one or more parameters of that instrument for which comparative data is to be displayed, and to display the difference between values of the one or more parameters selected.
  • Synthetic symbol data may be displayed on the display portion in one or more of the user- selectable formats. Synthetic symbol data may be displayed together with non-synthetic symbol data in a given user-selectable format. Alternatively synthetic symbol data may be displayed with no non-synthetic symbol data in a given user-selectable format.
  • FIGURE 1 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments according to a standard view format
  • FIGURE 2 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments according to a grid view format
  • FIGURE 3 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments according to a list view format
  • FIGURE 4 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments according to a matrix triangle view format
  • FIGURE 5 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments according to a matrix rectangle view format
  • FIGURE 6 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments and a plurality of predetermined synthetic symbols according to a standard view format;
  • FIGURE 7 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments and a plurality of predetermined synthetic symbols according to a grid view format;
  • FIGURE 8 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments, together with values corresponding to predetermined synthetic parameters associated with the plurality of predetermined instruments; and
  • FIGURE 9 is a screenshot showing values of a plurality of predetermined parameters of a plurality of predetermined instruments according to a standard view format together with graphical plots of values of a predetermined parameter for each of two predetermined instruments as a function of time over a predetermined time period.
  • computer apparatus running a software application program.
  • the apparatus is connected to a network and configured to access the network to receive data and to store the data in a data memory of the system.
  • the apparatus has a display portion in the form of a computer monitor, a data processing portion, and a data input portion.
  • the data input portion is provided by a keyboard and a mouse.
  • a touch screen is provided.
  • Other data input devices generally may be used.
  • the apparatus is configured to receive data substantially in real time from a remote server or other remote source of data, and to store the data in a local data memory of the apparatus. Storage in the local data memory has the advantage that the data can generally be accessed more quickly than data stored at a remote location.
  • the apparatus is configured to allow a user to display data stored in the data memory on the display portion of the apparatus.
  • the data are displayed as a frame of data.
  • the content of the frame may be customised by the user according to their requirement.
  • the user may input the identities of financial instruments for which it is required to display values of one or more user-selectable parameters associated with the instruments. In some embodiments some parameters are also user-definable.
  • the user can also select the format in which the data will be displayed (in terms of the physical layout of the display) from a plurality of different format types. The format types themselves may be customised by the user to suit their individual requirements.
  • the user may input a list of stock instrument identities (such as VODAFONE (VOD), BARCLAYS (BARC), etc) and select the parameters associated with these instruments that it is required to display (such as open price, high price, low price, last price, bid price and/or ask price).
  • VODAFONE VODAFONE
  • BARCLAYS BARCLAYS
  • the user can select an appropriate data display format type from a list of predetermined format types, or the user can generate a new data format type according to their individual requirement.
  • the different display formats may be referred to as 'quote board' formats.
  • the apparatus is configured to allow a user to switch between different 'quote board' formats by means of a keyboard, mouse, touch screen or any other general user input device. In some embodiments the apparatus is configured to allow the user to switch between different 'quote board' formats in a rapid and efficient manner. In some embodiments the switch is performed by a single user input, such as by pressing one or more keyboard buttons generally simultaneously, selecting an option from a menu, pressing a graphical button on a display, or any other suitable method.
  • FIG. 1 is a screenshot taken from the display portion of computing apparatus according to an embodiment of the invention in which parameters associated with a list of stock instruments are displayed in a window 10 in a 'standard view' format.
  • the identity of the stock instrument is indicated down the left hand portion of the display.
  • the first column 11 shows the stock instrument symbol
  • the second column 12 provides a description of the stock instrument (such as the full name of the company), whilst parameters associated with the stock instrument are provided in the remaining columns 13 of the display.
  • Parameters displayed in the screenshot of FIG. 1 include open bid price, highest bid price and lowest bid price.
  • FIG. 2 is a screenshot taken from the display portion of apparatus according to the embodiment of FIG. 1 in which parameters are displayed in window 10 in a 'grid view' format.
  • the display is divided into a plurality of rows of tile elements 15 defining a 'grid', each tile element corresponding to a different financial instrument.
  • the identity of the instrument associated with a given tile element 15 is indicated in the first row of each tile element 15, with the values of parameters associated with the instrument being listed below the identity of the instrument within the corresponding tile element 15.
  • each tile element 15 Five parameters associated with each instrument are displayed in each tile element 15. This is contrast to the standard view of FIG. 1 in which seventeen parameters associated with each instrument are displayed in the window 10. In some embodiments, a greater or lesser number of parameters are displayed in each grid element. In some embodiments the size of the grid elements is changed automatically according to the amount of data to be displayed in each grid element. In some embodiments the number of grid elements displayed in a window 10 is also adjusted in a corresponding manner according to the size of the grid elements.
  • a panel 30 is provided in which values of further parameters corresponding to a given instrument may be displayed.
  • the instrument for which further parameters are displayed in the panel 30 is selected using a mouse, by clicking on the corresponding instrument in the list of instruments of the window 10.
  • the apparatus is configured to highlight parameters associated with a given instrument when predetermined conditions exist.
  • the apparatus is configured to highlight the value of a parameter of a given view format when the value of that parameter changes; for example, the colour in which the value is displayed may be changed.
  • the value of the parameter increases, the value is displayed in a first colour. The value may be displayed in the first colour until a decrease in the value of the parameter occurred, or for a predetermined period of time before the colour is changed to a second colour, the second colour corresponding to a parameter whose value has not changed for at least said predetermined period of time.
  • the colour in which the value of the parameter is displayed may be changed to a third colour when a decrease in the value of the parameter occurs
  • the value may be displayed in the third colour either until an increase in the value of the parameter occurs, or for a predetermined period of time. After the predetermined period, if no change has occurred in the value of the parameter, the colour may be changed to the second colour.
  • the feature of displaying panel 30 may be turned on or off by a user for any given view format, depending upon whether the user requires to view the panel 30.
  • FIG. 3 is a screenshot taken from the display portion of apparatus according to the embodiment of FIG. 1 in which parameters are displayed in window 10 in a 'list view' format.
  • the values of predetermined parameters associated with a given instrument are displayed in rows across the screen.
  • only two parameters are displayed per stock instrument, allowing multiple columns of instruments 16 to be displayed in the window 10, with corresponding columns of parameters 17.
  • FIG. 4 is a screenshot taken from the display portion of apparatus according to the embodiment of FIG. 1 in which parameters are displayed in window 10 in a 'matrix view - triangle' format.
  • the identities of the stock instruments are laid out in an upper row of a table in an upper region of a window 10 of the display portion, and in a staggered column of the table below the upper row, to define a table having a generally triangular shape.
  • 'Comparison' parameters corresponding to comparisons between stock instruments are displayed in grid elements at the intersections of corresponding columns and rows of the table.
  • the comparison parameters are an 'ask price spread symbol' (upper parameter of each grid element) and a 'bid price spread symbol' (lower parameter of each grid element).
  • the ask price spread symbol parameter corresponds to the 'spread' or 'difference' between the asking price of one instrument and the bid price of another instrument.
  • the ask price spread symbol parameter corresponds to the difference between the asking price of the instrument displayed along the staggered column along the lower edge of the table, and the bid price of the instrument displayed along the upper row of the table.
  • the ask price spread symbol "BARCLSE LLOY.LSE. ask” would be the difference between the asking price of BARCLSE and the bid price of LLOY.LSE (a value of 92.50 in the particular example shown in FIG. 4).
  • the ask price spread symbol parameter could instead correspond to the difference between the asking price of the instrument displayed along the upper row of the table and the bid price of the instrument displayed along the staggered column along the lower edge of the table
  • the bid price spread symbol corresponds to the difference between the bid price of the instrument displayed along the staggered column along the lower edge of the table and the asking price of the instrument displayed along the upper row of the table (or vice versa as discussed above).
  • the bid price spread symbol "BARCLSE LLOY.LSE. bid” is the difference between the bid price of BARCLSE and the asking price of LLOY.LSE (a value of 91.00 in the particular example shown in FIG. 4).
  • FIG. 5 is a screenshot taken from the display portion of apparatus according to the embodiment of FIG. 1 in which parameters are displayed in window 10 in a 'matrix view- rectangle' format.
  • the format is similar to that of FIG. 4 except that the column of stock instrument identities is not staggered.
  • the comparison parameters displayed in some view formats such as those of FIG. 4 and FIG. 5 may be customised by a user.
  • the user can select the comparison parameter to be displayed in the window 10 either from a predetermined list of comparison parameters, or by inputting a customised comparison parameter to the apparatus.
  • Input of a customised comparison parameter requires a user to define the identity of the instruments to be compared, the one or more parameters of each instrument that are to be compared, and the relationship between the parameters that defines the customised comparison parameter.
  • the user can also define a value of a 'spread ratio parameter', k for one or each of the parameters used in calculating the comparison parameter.
  • the spread ratio parameter is a factor by which a value of a parameter used in calculating a spread value between two parameters will be multiplied before the apparatus calculates the spread value.
  • the two parameters are two different parameters of a given instrument (e.g. the bid price and the ask price of a particular instrument), or the same parameter but for different instruments (e.g. the bid price of one instrument and the bid price of another instrument) or one parameter of one instrument and another parameter of a different instrument (e.g. the bid price of one instrument and the ask price of a different instrument).
  • k A is the value of the spread ratio parameter for the parameter with value A and k B is the value of the spread ratio parameter for the parameter with value B.
  • a user may select a different value of the one or more spread ratio parameters. For example, in the event that a user wishes to define a comparison parameter as the value of a first parameter less half the value of a second parameter, the spread ratio parameter of the first parameter would be '1' and the spread ratio parameter of the second parameter would be '0.5'. This would result in the spread value being given by the equation
  • FIG. 6 is a screenshot taken from the display portion of apparatus according to the embodiment of FIG. 1 in which financial instruments and parameters associated with the instruments are displayed in window 10 in the standard view format.
  • conventional financial instruments such as BARC, AZN etc
  • synthetic financial instruments correspond directly to the identity of financial instruments traded in the financial markets.
  • Synthetic symbols correspond to user-defined instruments.
  • a user-defined instrument may be defined in terms of an algorithmic relationship between parameters of one or more instruments.
  • the apparatus is configured to allow a user to input a required algorithmic relationship between the parameters in order to define a synthetic symbol.
  • synthetic symbols are shown in the lower rows 20 of the window 10.
  • the synthetic symbols according to the embodiment shown are configured to display a spread between values of corresponding parameters of two predetermined financial instruments.
  • the first synthetic symbol is configured to provide a spread between corresponding parameters of BARC and VOD stocks on the London Stock
  • the values displayed include values of the spread in opening bid price, highest bid price and closing bid price.
  • comparison parameters of FIG. 4 and FIG. 5 may be considered to be parameters of a synthetic symbol corresponding to the spread between parameters of two instruments.
  • FIG. 7 shows a corresponding grid view format display of data including conventional and synthetic financial instruments.
  • the ability of the software application to allow a user to input their own synthetic symbols to the application, and to display values of parameters associated with the synthetic symbols is a powerful feature of the application. It enables a user to configure the apparatus to display information in a manner allowing rapid assimilation of the information by the user.
  • the user is not required to perform mathematical calculations to determine particular relationships between financial instruments (such as values of spread between parameters of two or more instruments). Rather, calculations are performed by the apparatus and the results of the calculations are displayed directly on the display portion.
  • data elements are received by the apparatus from a remote location in real time.
  • the user is provided with real time or 'live' data in respect of a particular financial instrument.
  • FIG. 8 shows a window 10 displaying data in the list view format.
  • the user has preselected a series of financial instruments for display.
  • Apparatus according to some embodiments is further configured to allow a user to select an instrument (a conventional instrument or a synthetic symbol) and to display a graphical plot of values of a user-selected parameter as a function of time over a user-selected time period.
  • FIG. 9 shows a screenshot of a window 10 showing values of instrument parameters in list view format together with two graphical display windows 60, 70.
  • the apparatus is operable by a user to display values of a preselected parameter of a preselected synthetic symbol as a function of time over a preselected time period in each of the graphical display windows 60, 70.
  • a list of thirteen instruments is provided in lower window 10 of the display portion.
  • Two graphical display windows 60, 70 are also shown.
  • a first graphical display window 60 is configured to display values of a parameter of a synthetic instrument being the spread between BARC and VOD stock instruments as a function of time over a period from 18 th September 2007 to 20 th September 2007. The most recently acquired value of this parameter is displayed on the first line of the list of instruments in the lower display window 10.
  • a second graphical display window 70 is configured to display values of spread between two further stock instruments as a function of time over the same time period.
  • the data plotted graphically in the graphical display windows 60, 70 may be configured to display historical values of the highest and lowest values of the spread between predetermined parameters of the two instruments.
  • a bar of the graphical display corresponding to (say) a given day may be drawn between the lowest value of the spread on that day and the highest value of the spread on that day.
  • Other methods of displaying the data graphically are also useful.
  • the graphical display may alternatively or in addition indicate the opening value of the spread and the closing value of the spread over a given period of time, such as one day.
  • the apparatus is configured to receive data over a network.
  • the apparatus is configured to store data received via the network in a local data memory (such as a hard disk drive) of the apparatus. This feature allows the apparatus more rapidly to access the data at a later stage since it is not required to download data over a network. This is because, as discussed above, downloading of data over a network is typically slower than accessing the data from a local storage device.
  • a graphical display of data over a predetermined time period may be required by a user. If the apparatus has the corresponding required data stored on a local storage medium the apparatus can access the storage medium to display the data. If the required data is not available on a local storage medium, the apparatus is configured to access the network to download the required data from a corresponding remote source.
  • the apparatus is configured to download data that the apparatus has determined may be required by a user at a given future moment in time and to store the data in a data memory of the apparatus.
  • the user may switch the display of window 10 between the different view formats by a simple click of a mouse button, or other suitably convenient input command or commands.
  • the feature of allowing a user to program their own synthetic symbol has the advantage that the user may input algorithms relating one or more parameters of one or more instruments thereby to plan their activities. Financial market experts such as traders frequently develop their own personalised methods and methodologies of analysing financial data.
  • a software application according to embodiments of the present invention allows the user to implement their personalised methods of analysis to assist them in the complex decision making processes in which they engage.

Landscapes

  • Business, Economics & Management (AREA)
  • Finance (AREA)
  • Accounting & Taxation (AREA)
  • Marketing (AREA)
  • Development Economics (AREA)
  • Economics (AREA)
  • Entrepreneurship & Innovation (AREA)
  • Strategic Management (AREA)
  • Physics & Mathematics (AREA)
  • General Business, Economics & Management (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Indicating Measured Values (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

L'invention a pour objet un appareil de traitement de l'information exécutant un logiciel informatique et comprenant : une partie traitement de l'information ; une partie saisie de l'information ; et une partie affichage. L'appareil est configuré pour stocker les éléments d'information saisis sur l'appareil, lesdits éléments d'information correspondant aux valeurs de chacun d'une pluralité de paramètres associés à un ou plusieurs instruments. L'appareil peut être configuré pour afficher les valeurs d'un ou de plusieurs paramètres associés à un instrument. L'appareil peut être utilisé par le biais de la partie saisie de l'information pour afficher lesdites valeurs selon un format spécifique sélectionné parmi une pluralité de formats prédéterminés configurables par l'utilisateur, et pour modifier le format en fonction desdites valeurs qui sont affichées dans un format différent parmi ladite pluralité de formats. Chacun desdits formats est défini par l'identité d'un ou de plusieurs instruments dont un ou plusieurs des paramètres doivent être affichés ; l'identité desdits un ou plusieurs paramètres de chaque instrument respectif à afficher ; et un emplacement sur ladite partie affichage sur lequel lesdites valeurs desdits paramètres doivent être affichées.
PCT/US2008/085153 2007-11-30 2008-12-01 Appareil pour afficher des éléments d'information et procédé WO2009073613A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US99141607P 2007-11-30 2007-11-30
US60/991,416 2007-11-30

Publications (2)

Publication Number Publication Date
WO2009073613A2 true WO2009073613A2 (fr) 2009-06-11
WO2009073613A3 WO2009073613A3 (fr) 2011-10-27

Family

ID=40718475

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2008/085153 WO2009073613A2 (fr) 2007-11-30 2008-12-01 Appareil pour afficher des éléments d'information et procédé

Country Status (1)

Country Link
WO (1) WO2009073613A2 (fr)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020174043A1 (en) * 2001-05-14 2002-11-21 Gilbert Andrew C. Systems and methods for financial instrument inspection
US20040059654A1 (en) * 2000-07-07 2004-03-25 Hans Schroder Method and system for processing and display of variables in a user generated network diagram representing a balanced system
US20040164983A1 (en) * 2003-02-25 2004-08-26 Bahram Khozai System and method to present and display multiple data using enhanced box charts
US20070276918A1 (en) * 2003-12-05 2007-11-29 Ian Alderson Symbol Mapping For Browser-Based Data Retrieval

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040059654A1 (en) * 2000-07-07 2004-03-25 Hans Schroder Method and system for processing and display of variables in a user generated network diagram representing a balanced system
US20020174043A1 (en) * 2001-05-14 2002-11-21 Gilbert Andrew C. Systems and methods for financial instrument inspection
US20040164983A1 (en) * 2003-02-25 2004-08-26 Bahram Khozai System and method to present and display multiple data using enhanced box charts
US20070276918A1 (en) * 2003-12-05 2007-11-29 Ian Alderson Symbol Mapping For Browser-Based Data Retrieval

Also Published As

Publication number Publication date
WO2009073613A3 (fr) 2011-10-27

Similar Documents

Publication Publication Date Title
US11314372B2 (en) Dynamic functionality based on window characteristics
US6583794B1 (en) Interface system for information mapping
US6012042A (en) Security analysis system
US7986323B2 (en) Two dimensional user interface for multidimensional data analysis
Halkos et al. Industry performance evaluation with the use of financial ratios: An application of bootstrapped DEA
US6211880B1 (en) Display apparatus
US7603308B2 (en) Security analyst estimates performance viewing system and method
US7509277B1 (en) Security analyst estimates performance viewing system and method
US8266040B2 (en) Virtual trading floor system and method
US20120271748A1 (en) Engineering process for a real-time user-defined data collection, analysis, and optimization tool (dot)
US20070156479A1 (en) Multivariate statistical forecasting system, method and software
US20100262901A1 (en) Engineering process for a real-time user-defined data collection, analysis, and optimization tool (dot)
US20060111931A1 (en) Method for the use of and interaction with business system transfer functions
US20060106637A1 (en) Business system decisioning framework
US10275411B2 (en) Management system for computer system
US20130238399A1 (en) Computer-Implemented Systems and Methods for Scenario Analysis
US20040030628A1 (en) Asset management support system and method
CN108369713A (zh) 交互式期权交易图形用户界面及其生成系统
US11269504B2 (en) System and method for market visualization
US9740382B2 (en) Methods and apparatus to monitor tasks in a process system enterprise
US20200133448A1 (en) Visual Analysis of a Dataset Using Linked Interactive Data Visualizations
JP2001518222A (ja) 意思決定支援システムにおけるデータ分析を精巧にし表現するための方法及び装置
WO2002047311A9 (fr) Systeme et procede d'organisation, de navigation et d'analyse de donnees
US20150154706A1 (en) Systems and methods for financial asset analysis
US10353958B2 (en) Discriminative clustering

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 08856238

Country of ref document: EP

Kind code of ref document: A2

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 05/11/2010)

122 Ep: pct application non-entry in european phase

Ref document number: 08856238

Country of ref document: EP

Kind code of ref document: A2