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Viewing software matching the following properties:

  • OPC Toolbox

    OPC Toolbox™ provides a connection to OPC DA and OPC HDA servers, giving you access to live and historical OPC data directly from MATLAB® and Simulink®. You can read, write, and log OPC data from devices, such as distributed control systems, supervisory control and data acquisition systems, and programmable logic controllers, that conform to the OPC Foundation Data Access (DA) standard. You can read and analyze data from any data historian that conforms to the OPC Foundation Historical Data Access (HDA) standard.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Real-Time Windows Target

    Real-Time Windows Target™ provides a real-time engine for executing Simulink® models on a Microsoft® Windows® PC and blocks that connect to a range of I/O boards. It enables you to create and control a real-time system for rapid prototyping or hardware-in-the-loop simulation. Real-Time Windows Target supports two Simulink simulation modes: normal mode, for simple real-time operation with access to I/O devices, and external mode, for higher real-time performance (with Simulink Coder™).

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Simulink 3D Animation

    Simulink 3D Animation™ provides apps for linking Simulink® models and MATLAB® algorithms to 3D graphics objects. It lets you visualize and verify dynamic system behavior in a virtual reality environment. Objects are represented in the Virtual Reality Modeling Language (VRML), a standard 3D modeling language. You can animate a 3D world by changing position, rotation, scale, and other object properties during desktop or real-time simulation. You can also inject virtual sensor signals and access 3D animation data in Simulink or MATLAB for postprocessing. Simulink 3D Animation includes viewers for rendering and interacting with virtual scenes. With the 3D World Editor, you can author detailed scenes assembled from 3D models exported from CAD-based or web-based sources. You can incorporate multiple 3D scene views inside MATLAB figures and interact with these views via a force-feedback joystick, space mouse, or other hardware device.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Simulink Coder

    Simulink Coder™ (formerly Real-Time Workshop®) generates and executes C and C++ code from Simulink® diagrams, Stateflow® charts, and MATLAB® functions. The generated source code can be used for real-time and nonreal-time applications, including simulation acceleration, rapid prototyping, and hardware-in-the-loop testing. You can tune and monitor the generated code using Simulink or run and interact with the code outside MATLAB and Simulink.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Simulink Control Design

    Simulink Control Design™ lets you design and analyze plants and control systems modeled in Simulink® and automatically tune PID controller gains to meet performance requirements You can also find operating points and compute exact linearizations of Simulink models at various operating conditions. Simulink Control Design provides tools that let you compute simulation-based frequency responses without modifying your model. A graphical interface lets you design and analyze arbitrary control structures modeled in Simulink, including cascaded, prefilter, regulation, and multiloop architectures.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Simulink Fixed Point

    Simulink Fixed Point enables the fixed-point capabilities of the Simulink product family, letting you use those products to design, simulate, and implement fixed-point control and signal processing algorithms. With Simulink Fixed Point, you specify fixed-point data attributes, including word length and scaling for signals and parameters, in your model. You can perform bit-true simulations to observe the effects of limited range and precision on designs built with Simulink, Stateflow, DSP System Toolbox™, and other Simulink products. Automated fixed-point advisors guide you through the steps of converting floating-point models to fixed point. Additional tools analyze your model or use simulation results to recommend data types and scaling. Simulink Fixed Point supports C, HDL, and PLC code generation with Simulink code-generation products.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Simulink Report Generator

    The Simulink® Report Generator™ product can automatically create documentation from Simulink® and Stateflow® models. It lets you document software requirements and design specifications and produce reports from your models, all in a standard format.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Simulink Verification and Validation

    Simulink Verification and Validation™ automates requirements tracing, modeling standards compliance checking, and model coverage analysis. You can create detailed requirements traceability reports, author your own modeling style checks, and develop check configurations to share with engineering teams. Requirements documentation can be linked to models, test cases, and generated code. You can generate harness models for testing model components and code, and use model coverage analysis to ensure that models have been thoroughly tested. Simulink Verification and Validation provides modeling standards checks for DO-178, ISO 26262, IEC 61508, and related industry standards. Additional support is available through DO Qualification Kit and IEC Certification Kit.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • System Identification Toolbox

    System Identification Toolbox™ provides MATLAB® functions, Simulink® blocks, and an app for constructing mathematical models of dynamic systems from measured input-output data. It lets you create and use models of dynamic systems not easily modeled from first principles or specifications. You can use time-domain and frequency-domain input-output data to identify continuous-time and discrete-time transfer functions, process models, and state-space models. The toolbox also provides algorithms for embedded online parameter estimation. The toolbox provides identification techniques such as maximum likelihood, prediction-error minimization (PEM), and subspace system identification. To represent nonlinear system dynamics, you can estimate Hammerstein-Wiener models and nonlinear ARX models with wavelet network, tree-partition, and sigmoid network nonlinearities. The toolbox performs grey-box system identification for estimating parameters of a user-defined model. You can use the identified model for system response prediction and plant modeling in Simulink. The toolbox also supports time-series data modeling and time-series forecasting.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
  • Vehicle Network Toolbox

    Vehicle Network Toolbox™ provides connectivity to CAN devices from MATLAB® and Simulink® using industry-standard CAN database files. The toolbox provides MATLAB functions and Simulink blocks to send, receive, encode, and decode CAN and XCP messages, enabling you to exchange messages between a CAN bus and your programs and models. You also can connect to an ECU via XCP on CAN using A2L description files. From MATLAB or Simulink, you can monitor, filter, and analyze live CAN bus data or log and record CAN messages for later analysis and replay. You also can simulate message traffic on a virtual CAN bus or connect Simulink models to a live network or ECU. Vehicle Network Toolbox supports CAN interface devices from Vector, Kvaser, PEAK-System, and National Instruments.

    • Usage:
      AcademicEducationalCommercial⁄ProfessionalClassroomResearch
    • License type:
      StandaloneNetwork
    • Organisational Unit: Vice Rector for Science - Latvia, Rīga
    • Price: Contract price
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