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Physical, Mechanical, and Electromagnetic Sensors, Chemical, Environmental, Biological and Medical Sensors and Biophotonics, Interferometric and Polarimetric Sensors including Gyroscopes, Micro and Nano structured Fiber Sensors including the Photonic Crystal Fibers and Gratings Sensors, Multiplexing and Sensor Networking, Distributed Sensing, Smart Structures and Sensors including the SHM systems, Sensor Application, Field Tests and Standardization, New fibers, Devices and Subsystems for Photonic Sensing including the ones for security and defence, New Concepts for Photonic Sensing.
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This IEEE Standard is part of the C37 Family on Switchgear, Substations & Protective Relays. Project scope: This standard describes the interconnection details for N times 64 kilobit per second connections of teleprotection equipment to digital multiplexers using optical fiber. Requirements for both physical connection and the communications timing are also included. Project purpose: The purpose of this standard is to define an interconnection of different vendors' relays with different vendors' multiplex equipment, without any restriction on the ocntent of the N times 64 kilobit per second data, using up to 2 kilometer of 50 micrometer or 62.5 micrometer multimode fiber.
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This corrigendum corrects the temperature associated with the Stress-Strain clause; and corrects the use of the term velocity in the Aeolian Vibration clause of IEEE Std 1138(TM)-2009.
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This standard provides multi-source and ⁰́plug and play⁰́₊ environment for the millions of metering devices in the field now and the future using the ANSI Type 2 optical port interface. It solves the problems associated with single source systems and with multi-source systems based upon proprietary communications protocols. Electric, water, and gas utilities and corresponding vendors can realize cost savings which ultimately shall benefit the client consumers of the utilities. Keywords: ANSI C12.18, ANSI Type II, Optical Port, PSEM.
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The construction, mechanical, electrical, and optical performance, installation guidelines, acceptance criteria, test requirements, environmental considerations, and accessories for a nonmetallic, all-dielectric self-supporting (ADSS) fiber optic cable are covered by this standard. The ADSS cable is designed to be located primarily on overhead utility facilities.
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This amendment to IEEE Std 802.3-2018 adds Physical Layer specifications and management parameters for 100 Gb/s and 400 Gb/s Ethernet optical interfaces for reaches up to 10 km based on 100 Gb/s per wavelength optical signaling.
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Terms critical to the use of fiber optic DAS interrogators along with key definitions of performance parameters used to both fully describe a fiber optic DAS based sensor system and readily compare systems from different suppliers are defined and explained in this standard.
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