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Aptiv PLC is an Irish-American [3] [4] automotive technology supplier with headquarters in Schaffhausen, Switzerland. [1] Aptiv grew out of the now-defunct American company, Delphi Automotive Systems , which itself was formerly a component of General Motors .
NuTonomy began testing its software on cars in early 2016. One of the cars used to test its software included Mitsubishi i-MiEV. [2] The product is still in research and development phase. In August 2016, it launched its autonomous taxi service using a fleet of 6 modified Renault Zoes and Mitsubishi i-MiEVs. [3] [4]
VxWorks is a real-time operating system (or RTOS) developed as proprietary software by Wind River Systems, a subsidiary of Aptiv.First released in 1987, VxWorks is designed for use in embedded systems requiring real-time, deterministic performance and in many cases, safety and security certification for industries such as aerospace, defense, medical devices, industrial equipment, robotics ...
The Target Identification System Electro-Optical (TISEO) is the Target identification device used in the F-4 Phantom and F-14 Tomcat that provides sharp close-up images of hostile aircraft outside of visual range.
This will be used when the amount of data (set in "Request Download" or "Upload Request") has not been transferred. 0x38 0x78 Request File Transfer This service is used to initiate a file download from the client to the server or upload from the server to the client. Additionally information about the file system are available by this service. 0x7F
Wind River Systems, Inc., also known as Wind River (trademarked as Wndrvr), is an Alameda, California–based company, subsidiary of Aptiv PLC. The company develops embedded system and cloud software consisting of real-time operating systems software, industry-specific software, simulation technology, development tools and middleware .
Automatic target recognition (ATR) is the ability for an algorithm or device to recognize targets or other objects based on data obtained from sensors.. Target recognition was initially done by using an audible representation of the received signal, where a trained operator who would decipher that sound to classify the target illuminated by the radar.
The GCP provides a common framework for communication between meters and data collection systems, ensuring interoperability across different manufacturers and devices. It defines a set of basic objects, services, and communication methods for exchanging metering data, including energy consumption, demand measurements, and meter status. [2]