Standard
Standard
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Technical committeeTypeAcronymIEEE 2813-2020CommitteePublished year2020KeywordsDescription
This standard can be applied to internet-based business scenarios, and can also be served serve as a practical guide to achieve help assess business security risk control through the big data technology. This standard can be applied in other types of organization, including public or privately-owned or state-owned enterprises, associations, or organizations, or by individuals, to improve assessment of their protection capability against business security risks based on big data technology.
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Technical committeeTypeAcronymIEEE 2778-2020CommitteePublished year2020KeywordsDescription
This guide is primarily concerned with the grounding system design for photovoltaic solar power plants that are utility owned and/or utility scale (5 MW or greater). The focus of the guide is on differences in practices from substation grounding as provided in IEEE Std 80. This guide is not intended for the substations to interconnect the plant; however, if the substation is included within the plant, portions of this guide may be applicable. Similarly, this guide does not directly cover small scale solar power plants (such as rooftop type systems), substation grounding, or lightning protection.
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Technical committeeTypeAcronymIEEE 2760-2020CommitteePublished year2020Description
The collector system grounding for wind power plants (WPPs) is the primary concern of this guide. This guide is not intended for the WPP substation; however, since the substation is typically interconnected with the collector system, its design might affect or be affected by the collector system. With proper consideration, the methods described herein could be used in determining the impact of the collector system on substation safety and vice versa. Quantitative analysis of the effects of lightning surges is beyond the scope of this document. Similarly, this guide does not cover offshore wind power plants, battery energy storage facilities, solar power plants, or substation grounding.
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Technical committeeTypeAcronymIEEE 2755.2-2020CommitteePublished year2020KeywordsDescription
Utilizing terminology as established in IEEE 2755-2017 and technology taxonomy as established in IEEE 2755.1 – 2019, this Recommended Practice provides a comprehensive methodology for technology domain exploration, development of strategy, technology evaluation, Implementation, management, operations, program optimization and successful enterprise scaling for IPA programs. This Recommended Practice provides the reader a compilation of best practices from industry leaders on the proven methods from the initial discovery and exploration of the transformative capabilities of IPA technology through to developing and running an enterprise-wide program
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Technical committeeTypeAcronymIEEE 2755.1-2019CommitteePublished year2019KeywordsDescription
Utilizing terminology as established in IEEE Std 2755-2017, defined and classified in this guide are approximately 150 features and functions across five core areas of technology capability in the family of new technology products collectively referred to as Intelligent Process Automation. This guide is published to create clarity for individuals involved with Software-Based Intelligent Process Automation products so that industry participants may rely on a product manufacturer’s functionality claims and understand the underlying technological methods used to produce those functions and how one might approach evaluating the relative sophistication and importance of each function or feature. This guide represents the consensus of a diverse panel of industry participants.
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Technical committeeTypeAcronymIEEE 2755-2017CommitteePublished year2017KeywordsDescription
An all new family of software based intelligent process automation technologies has emerged recently. Because of the newness of this kind of automation capability, there are no common definitions of concepts, capabilities, terms, technology, types, etc. This standard is published for the purpose of promoting clarity and consistency in the use of Software Based Intelligent Process Automation (SBIPA) terminology. The definitions represent the consensus of a diverse panel of industry participants.
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Technical committeeTypeAcronymIEEE 2746-2020CommitteePublished year2020KeywordsDescription
IEEE Guide for Evaluating AC Interference on Linear Facilities Co-Located Near Transmission Lines
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TypeAcronymIEEE 2745.2-2021CommitteePublished year2021KeywordsDescription
A glossary and definition of unified power flow controller (UPFC) related areas, including the structure, equipment, control and protection, test, and maintenance utilized by UPFC are specified in this guide. The guide is applicable in flexible ac transmission system (FACTS) such as UPFC, static synchronous compensator (STATCOM), and static synchronous series compensator (SSSC).
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Technical committeeTypeAcronymIEEE 269-2019CommitteePublished year2019KeywordsDescription
Practical methods for making electroacoustic laboratory measurements of analog and digital speech communications terminals and connected audio devices are contained in this standard. The methods are applicable to a wide variety of wired, wireless, cordless, and mobile communication terminals. Examples include Voice over Internet Protocol (VoIP), Wi-Fi®, and softphone devices. Tests applicable to connected audio devices such as wired, Bluetooth®, and universal serial bus (USB) handsets, headsets, and wearables are included. The standard contains objective metrics, subjective metrics, and subjective metric predictors. Application is in the frequency range from 20 Hz to 20 kHz.
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Technical committeeTypeAcronymIEEE 2400-2016CommitteePublished year2016KeywordsDescription
Techniques to select wind turbine and wind farm aero acoustic noise measurements, including instrumentation standards and metrology technology, measurement set, measurement procedures, data processing, and noise source data analysis are described in this standard. Nearfield sound measurement similar to IEC 61400-11 distance and far-field sound measurement both outside and inside concerned houses or buildings are within the scope of this standard. This standard focuses on amplitude modulation noise, however, guidelines for low-frequency noise including infrasound near-field measurement are provided. IEC 61400-11 provides overall wind turbine noise measurement standards, while this standard focuses more on the aero acoustic noise of wind turbines to avoid overlap with IEC 61400-11.
Technology