This document establishes a Standard Profile for communications with Distributed Energy Resources (DERs) using IEEE Std 1815, IEEE Standard for Electric Power Systems Communications - Distributed Network Protocol (DNP3). The profile described in this standard provides a high-level data model for DERs based on IEC 61850-7-420 edition 2, a data points list, and a list of DER modes and functions. This document also provides a DNP3 implementation table for the profile.
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This standard specifies test procedures for compliance and interoperability testing of devices implementing IEEE Std 1901.3. This standard also describes application scenarios and use cases for IEEE Std 1901.3-based implementations and associated channel models and performance expectations. The standard provides a collection of examples of real life implementations allowing enhancement of test procedures with the input from the field.
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This standard describes the system-level requirements needed to provide service-level, multi-vendor interoperability of Ethernet Passive Optical Network (EPON) equipment. The specifications complement the existing IEEE 802.3(TM) and IEEE 802.1Q(TM) standards, which enable the interoperability at the Physical Layer and Data Link Layer. Specifically included in this specification are: - 25G-EPON and 50G-EPON system-level interoperability specifications covering equipment functionality, traffic… read more engineering, and service-level quality of service/class of service (QoS/CoS) mechanisms; - Management specifications covering equipment management, service management, and power utilization. read less
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This standard provides an architecture and framework for digital transformation development, usage, implementation and interfaces for applications. The architecture and framework addresses scalability, systems and interfaces, security and privacy challenges for digital transformation applications.
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This standard defines a framework of integrated consortium chain stations for the consumer market. The standard specifies technical requirements on necessary hard- and software components and modules. Furthermore, the standard specifies development and operation methods as well as security requirements, including cryptographic algorithms, privacy protection, and hardware protection. It also lists deployment scenarios.
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This standard describes a parameterized and abstracted power model enabling system, software, and hardware intellectual property (IP)-centric power analysis and optimization. It defines concepts for the development of parameterized, accurate, efficient, and complete power models for systems and hardware IP blocks usable for system power analysis and optimization. These concepts include, but are not limited to, process, voltage, and temperature (PVT) independence; power and thermal management… read more interface; and workload and architecture parameterization. Such models are suitable for use in software development flows and hardware design flows, as well as for representing both pre-silicon-estimated and post-silicon-measured data. This standard also defines the necessary requirements for the information content of parameterized, accurate, efficient, and complete power models to help guide development and usage of other related power, workload, and functional modeling standards, such as UPF IEEE Std 1801(TM)-2018, SystemC IEEE Std 1666(TM)-2016, and SystemVerilog IEEE Std 1800(TM)-2017. Beyond defining the concepts and related standard requirements, this standard also recommends the use of other relevant design flow standards (e.g., IP-XACT IEEE Std 1685(TM)-2014 [B2]2), with the objective of enabling more complete and usable power-aware design flows. read less
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This standard identifies requirements for trusted high assurance analytic exchange services over secured and unsecured networks. The standard defines metadata and frameworks used to support interactions between nodes that are involved in a trusted multipart handshake including discovery of data models and processing aspects available at a remote location, appropriate analytic configuration, and exchange of vetted critical analytic results. This standard supports the exchange of trusted,… read more actionable, and appropriate information for use between analytic producing and consuming nodes. The multipart handshake is designed for use between computing nodes operating in potentially denied, disrupted intermittent limited bandwidth (DDIL) environments. These environment involve critical infrastructure (e.g., medical, transportation and utilities) and might be austere compute environments such as those present in IoT and industrial control systems (ICS). The standard does not preclude other applications that employ analytic exchanges. read less
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This standard defines the system architecture of digital representation for physical objects in factory environments. The system architecture describes the objective, important components, required data resources and basic establishing procedure of digital representation in factory environments.
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This recommended practice defines the concepts, techniques, benchmark models, validation procedures, uncertainties and limitations of computational electromagnetics techniques and tools used for modeling and simulation of antennas in free space. It recommends and provides guidance on the numerical modeling of antennas and benchmark results to verify the general approach for the numerical simulations of such antennas. It defines acceptable numerical modeling requirements and guidance on meshing.
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This standard provides recommended measurement techniques for evaluating, and methods for specifying, the capabilities or effectiveness of shielding on cable/connector assemblies for the control of Electromagnetic Interference (EMI) to allow product compliance to common government, regulatory, and customer requirements, and for achieving system Electromagnetic Compatibility (EMC). This standard also provides measurement techniques to evaluate, and methods to specify, cable/connector assemblies… read more shielding capabilities for reducing the coupling of electromagnetic energy between cable/connector assemblies. Emphasis is placed on measurement techniques that have been adopted through incorporation into standards, both commercial and military, or that have been used extensively. read less
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This standard specifies touch events, parameters, procedures and interfaces that facilitate troubleshooting helping and improve the accuracy of touchscreen operation for mobile gaming. Furthermore, this standard defines the data format for logging and status reporting by mobile devices and games.
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This standard addresses the anthropometric and topo-physiological attributes that contribute to the quality of experience of 3D body processing, as well as identifying and analyzing metrics and other useful information, as well as data relating to these attributes. The standard defines a harmonized framework, suite of objective and subjective methods, tools, and workflows for assessing 3D body processing quality of experience attributes. The standard specifies and defines methods, metrics, and… read more mechanisms to facilitate interoperability, communication, security and trusted operation of 3D body processing technologies. This includes quality of output of devices (such as sensors and/or scanners), digitization, simulation and modeling, analytics and animation, data transmission and visualization in the 3D body processing ecosystem, the ecosystem being in the near environment that interacts with the body. read less
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