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Average Ratings 0 Ratings

Total
ease
features
design
support

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Write a Review

Description

DPKG serves as a utility for managing Debian packages, allowing users to install, build, and remove them efficiently. Aptitude acts as the primary and more intuitive interface for DPKG. The functionality of DPKG is accessed solely through command line parameters, which include a single action paired with zero or more options that modify the action's behavior. The action parameter indicates the specific task DPKG should perform, while options adjust how this task is executed. Additionally, DPKG can function as a front-end for DPKG-deb(1) and DPKG-query. A detailed list of supported actions is provided in the actions section. When an action is called, DPKG executes either DPKG-deb or DPKG-query with the supplied parameters, but without passing any specific options; to utilize those options, the back-ends must be directly invoked. DPKG also keeps track of relevant information about available packages, categorizing it into three types: states, selection states, and flags, which are primarily managed using dselect. This organization of information aids in the effective management of package statuses within the Debian ecosystem.

Description

Electromagnetic sensors are composed of two main components: a "front-end" that both generates and detects electromagnetic waves via a subsystem known as the Receiver/Exciter (REX), and a "back-end" responsible for signal and data processing, which is generally carried out through software. Each of these subsystems must be developed independently before they can be seamlessly integrated. The process of creating the complete sensor becomes increasingly complex and time-consuming due to unforeseen challenges that arise during integration testing. This complexity largely stems from the interdependencies between the subsystems that are not easily testable during their individual development phases. As a result, any necessary software updates, configuration adjustments, waveform modifications, and technology upgrades can incur significantly higher costs since they often require on-site verification with the actual front-end hardware. To mitigate these issues, the Virtual Receiver/Exciter (VREX) utilizes a simulated front-end, thus streamlining the testing and integration process. By employing a virtual model, developers can identify and address potential integration issues much earlier in the development cycle.

API Access

Has API No 

API Access

Has API No 

Screenshots View All

Screenshots View All

Integrations

Debian Yes 
Fink Yes 

Integrations

Debian No 
Fink No 

Pricing Details

Free
Free Trial No 
Free Version Yes 

Pricing Details

No price information available.
Free Trial No 
Free Version No 

Deployment

Web-Based No 
On-Premises No 
iPhone App No 
iPad App No 
Android App No 
Windows No 
Mac No 
Linux Yes 
Chromebook No 

Deployment

Web-Based Yes 
On-Premises No 
iPhone App No 
iPad App No 
Android App No 
Windows No 
Mac No 
Linux No 
Chromebook No 

Customer Support

Business Hours No 
Live Rep (24/7) No 
Online Support Yes 

Customer Support

Business Hours No 
Live Rep (24/7) No 
Online Support No 

Types of Training

Training Docs Yes 
Webinars No 
Live Training (Online) No 
In Person No 

Types of Training

Training Docs No 
Webinars No 
Live Training (Online) No 
In Person No 

Vendor Details

Company Name

Ubuntu

Country

United States

Website

manpages.ubuntu.com/manpages/xenial/en/man1/dpkg.1.html

Vendor Details

Company Name

FishEye

Website

fisheye.net/products/vrex/

Product Features

Product Features

Simulation

1D Simulation No 
3D Modeling Yes 
3D Simulation No 
Agent-Based Modeling Yes 
Continuous Modeling No 
Design Analysis No 
Direct Manipulation No 
Discrete Event Modeling No 
Dynamic Modeling No 
Graphical Modeling No 
Industry Specific Database Yes 
Monte Carlo Simulation No 
Motion Modeling No 
Presentation Tools Yes 
Stochastic Modeling No 
Turbulence Modeling Yes 

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