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Displaying 20 of 160 Results
This paper offers electrical design engineers a guide to the most relevant, up-to-date standards and technology to help specify and design future-proof electrical systems that deliver optimal energy efficiency throughout the entire building life cycle. Green, energy-efficient building design and operation is becoming common worldwide. This is being driven by international agreements to combat climate change, evolving country-based standards and regulations, and increasing demand by building owners. Designers need to be prepared to deliver electrical system designs that comply with the newest building codes, help achieve green building certifications, and support ‘active’ energy management programs compliant with global best practices.
Keywords: English,White Paper,whitepaper_filter
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Generally the Oil & Gas infrastructure is designed to import power from the grid depending on several factors and it is necessary to have a mechanism to ensure power balance with faster response in improving the system stability. It is essential to analyze issues of dynamic performance for infrastructures with embedded power generation and apply modern approaches to ensure the availability of power to key electrical processes under various contingencies. This paper discusses the need of tools for operating time performance estimation of an Ethernet based 61850 system during design of EMCS for large Oil & Gas refineries. We discuss an intelligence based model that works on Pre-selection computation based approach to identify contingencies that improve the dynamic performance of the system and maintain balance between Generation & Load. The paper illustrates the results of the proposed model based on a simulation environment with a simple power system network.
Keywords: English,White Paper,Power Management,Energy Automation,whitepaper_filter
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Historically, protection and control (P&C) schemes relied on hardwired connections between Intelligent Electronic Devices (IEDs). This approach makes correcting, modifying, and updating the P&C logic difficult. Using Ethernet in lieu of hardwiring and the IEC 61850 standard’s GOOSE messaging have simplified engineering changes. This paper discusses the pros and cons of two Ethernet protocols for GOOSE messaging — Parallel Redundancy Protocol (PRP) and High Availability Seamless Redundancy Protocol (HSR) — and strategies for using them in P&C schemes.
Keywords: English,White Paper,Power Management,Energy Automation,whitepaper_filter
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Independent report on the first version of “CO2 Impact Methodology: Saved and Avoided Emissions by Schneider Electric Offers” dated June 30th, 2019.
Keywords: White Paper,English,French,Energy Efficiency & Sustainability,whitepaper_filter
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A Review of Process Bus Ethernet Network Toplogies
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Historically, substation protection and control has employed direct point-to-point connections between intelligent electronic devices. The process bus approach utilizing digital IEC 61850 GOOSE messaging offers many advantages, but the standards limited the number of available topologies. IEC 61869 now expands the number of available solutions. This paper details the opportunities and limitations of various substation process bus topologies within the IEC standards.
Keywords: English,White Paper,Power Management,Energy Automation,Exclude,whitepaper_filter
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Automatic Transfer System - Generic Book
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This documentation is an overview of the Automatic Transfer Systems with the associated benefit is to improve supply availability by automatically switching from main supply to an alternative source in case of main supply failure. Most Industrial and Building installations like XL Datacenters, Oil & Gas and Mining projects include ATS function in MV and LV networks. ATS is also a key element in other segments like Healthcare, Water & Waste Water and Marine. This document is for general use and can be distributed internally and externally.
Keywords: English,White Paper,Power Management,Energy Automation,Exclude,whitepaper_filter
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ISO 50001 allows business leaders to establish a practice around the use of energy that reduces business risk and improves productivity and operations.
Keywords: English,White Paper,Buildings,Energy Efficiency & Sustainability,Industry,whitepaper_filter
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Building owners and operators are facing growing demands for buildings that are more sustainable, resilient, efficient, and people-centric. New cloud-hosted power and building management applications can help meet these business, regulatory, and occupant requirements with a scalable solution that minimizes the costs of onsite IT services, computing hardware, and software. Additionally, cloud-hosting secures data storage, simplifies remote operations and cross-team collaboration, and enables facilities with limited resources to engage expert advisory services.
Keywords: English,Power Management,White Paper,Asset Management & Maintenance,Exclude,whitepaper_filter
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Analytics-Enabled by Waveform Analysis
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Waveform analysis has long been a useful tool for troubleshooting power-quality events within a facility’s electrical system. Waveform captures, taken during anomalous power events, provide clues to an events’ causes, frequency, and their effects.
Interpreting waveform captures used to be the job of experienced power systems engineers. Today, though, non-engineers often are called on to understand their meanings. Doing so successfully requires an understanding of the ways various disturbances can present themselves during a captured event.
Keywords: English,White Paper,Power Management,Power Quality Monitoring & Analysis,whitepaper_filter
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The architecture described in this document has been fully tested and validated in our laboratories using all the specific devices and accessories references available all along this document. Of course, your specific application requirements may be different and will require additional and/or different components. In this case, information provided in this document shall to be adapted to your specific needs. To do so, you will need to consult the specific product documentation of the components that you are substituting in this architecture. Pay attention in conforming to any safety information, different electrical requirements and normative standards that would apply to your adaptation. It should be noted that there are some major components in the architecture described in this document that cannot be substituted without completely invalidating the architecture, descriptions, instructions, wiring diagrams and compatibility between the various software / firmware and hardware components specified herein. You must be aware of the consequences of component substitution in the architecture described in this document as substitutions may impair the compatibility and interoperability of software and hardware.
Keywords: English,White Paper,Power Management,Power Quality Monitoring & Analysis,whitepaper_filter
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Today, the pressure is on enterprises to meet environmental targets. The prospect of losing business if sustainability objectives are not met is very real. This is leading to a future where top environmental performers will become market leaders. To remain competitive, companies need to produce goods in an energy efficient manner. This paper examines industrial efficiency improvement measures that focus on equipment, process, and people.
Keywords: English,Industry,White Paper,Power Management,Energy Efficiency & Sustainability,whitepaper_filter
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Voltage Sag Analysis and Load Loss Detection
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This paper discusses the impacts of voltage events such as sags/dips and short interruptions related to power quality issues. Whether originating at the utility or inside an end user’s facility, it is important to understand operational impacts, and to differentiate nuisance events from disruptive events. Ascertaining the level of impact from voltage events allows easier prioritizing of alarms, creating and trending historical effects from disruptive perturbations, and determining locations and sizes of mitigation equipment.
Keywords: English,White Paper,Power Management,Power Quality Monitoring & Analysis,whitepaper_filter
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Smart Grids are electricity networks that use digital technology to co-ordinate the needs and capabilities of all generators, grid operators, end users and electricity market stakeholders in such a way that it can optimize asset utilization and operation while maintaining system reliability, resilience and stability. However, Smart Grids are increasingly proposing a much more distributed architecture with the integration of multiple Distributed Energy Resources (DERs) that demand different control and protection schemes. In that sense, the implementation of standards such as IEC 61850 and the integration with Ethernet-based communication networks provide novel tools to manage DER efficiently. This paper analyses the potential usage and benefits of ANSI 67/67N protection in combination with Generic Object Oriented Substation Event (GOOSE) communication service, from the standard 61850 of the International Electro-technical Commission (IEC), for providing adaptive network protection, specifying the configuration and implementation and exposing the obtained results.
Keywords: English,White Paper,Power & Grid,Microgrids,Power Management,Energy Automation,whitepaper_filter
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Most public, commercial, and industrial buildings are not energy efficient, representing an enormous untapped potential for decarbonization and sustainability efforts, as well as utility bill savings. Power digitalization plays a foundational role in active energy management and efficient facility operations. For existing buildings, this can be done by retrofitting electrical systems with smart devices and using energy and power management software that improves energy efficiency and reduces risk. This power digitalization investment helps facility management and maintenance personnel make better decisions, resolve issues more quickly, minimize downtime, and use less energy. In this paper, we define power digitalization for buildings, and describe a 3-step process to achieve it.
Keywords: English,White Paper,Buildings,Industry,Power Management,Energy Efficiency & Sustainability,whitepaper_filter
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Many commercial property owners view energy as a costly and seemingly unmanageable expense. Enterprise energy management technology—metering and software, for example—provides actionable intelligence that allows property managers to view fixed, variable, and exceptional energy use in financial terms. This paper examines strategies for reducing energy bills, allocating energy expenses equitably among tenants (sub-billing), shadow metering, and expansion planning.
Keywords: English,White Paper,Buildings,Power Management,Industry,Energy Efficiency & Sustainability,whitepaper_filter
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Smart grid implementation is facilitated by multi-source energy systems development, i.e., microgrids, which are considered the key smart grid building blocks. Whether they are alternative current (AC) or direct current (DC), high voltage or low voltage, high power or small power, integrated into the distribution system or the transmission network, multi-source systems always require an intelligent energy management that is integrated into the power system. A comprehensive intelligent energy system aims at providing overall energy eciency with regard to the following: increased power generation flexibility, increased renewable generation systems, improved energy consumption, reduced CO2 emission, improved stability, and minimized energy cost. This Special Issue presents recent key theoretical and practical developments that concern the models, technologies, and flexible solutions to facilitate the following optimal energy and power flow strategies: the techno-economic model for optimal sources dispatching (mono and multi-objective energy optimization), real-time optimal scheduling, and real time optimization with model predictive control.
Keywords: English,White Paper,Power & Grid,Microgrids,Power Management,Energy Automation,whitepaper_filter
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This case study describes the implementation of new technology and Active Harmonic Filters at the Ford Silverton Plant in order to reduce direct and indirect costs that are caused by harmonic pollution on the electrical power system.
Keywords: English,White Paper,Industry,Power Management,Power Quality Monitoring & Analysis,whitepaper_filter
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Circuit breakers require regular maintenance to ensure electrical safety, comply with safety regulations, and avoid costly facility downtime. Typically, this maintenance is performed at regular intervals, which do not account for usage patterns or environmental conditions. This paper explores how IoT and analytic technologies enable a condition-based, predictive approach that can increase levels of safety and reliability while tailoring maintenance to optimize costs.
Keywords: English,White Paper,Power Management,Electrical Safety,Asset Management & Maintenance,Exclude,whitepaper_filter
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Smarter Metering - New Technologies for T&D Networks
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“Smart metering” has demonstrated how advances in technology may be used to solve a utility's changing needs in a dynamic market- place. But where smart metering is effective at the end-customer metering point, new technologies in multifunction “smarter meters” provide a broader range of benefits at any metering point within a utility network.
This paper describes how new communications technologies — including local mastering, gateway functionality, web-based presentment, e-mail data transfers and Ethernet support of SCADA protocols — have been used by power utilities around the world to provide integrated network control and monitoring. With these technologies, communications costs to remote substations are drastically reduced while still increasing the number of monitored points and improving network awareness. It is shown how these communication links can provide billing data, operational data to supervisory control and data acquisition (SCADA) systems, and regulatory- compliant power quality information so that the needs of multiple departments are met within a single device.
Keywords: English,White Paper,Power Management,Power & Grid,Power Quality Monitoring & Analysis,whitepaper_filter
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For the electric power system, “Connectivity” describes the completed, widespread deployment of communicating equipment that integrates data streams and functions related to decisions and actions along the energy value chain – from power plants to consumers and, potentially, their equipment and devices. Through connectivity, the power system can better integrate advanced digital functionality to become more flexible and resilient. This paper describes challenges and opportunities related to the power system’s connectivity and its effective use of technological innovations.
Keywords: English,Power & Grid,White Paper,Energy Automation,Advanced Distribution Management Systems,Exclude,whitepaper_filter
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4 MB
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