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IEC 62864-1

English -- Railway applications ? Rolling stock ? Power supply with onboard energy storage system ? Part 1: Series hybrid system - Edition 1.0;
French -- Applications ferroviaires ? Mat‚riel roulant ? Alimentation ‚quip‚e d'un systŠme embarqu‚ de stockage de l'‚nergie ? Partie 1: SystŠme hybride s‚rie - Edition 1.0

Organization:
IEC - International Electrotechnical Commission
Year: 2016

Abstract: Scope: This part of IEC 62864 applies to series hybrid systems (electrically connected) with onboard energy storage (hereinafter referred as hybrid system). A hybrid system has two (or more) power sources including energy storage system (ESS) on board to achieve the following features by combining converter and motors and performing energy management control: • improving energy and fuel efficiency, improving acceleration characteristics, increasing running distance and uninterrupted running in the event of the loss of the primary power source (PPS), by using an ESS in addition to the primary power source under conditions where the power and capacity of the power source including regenerative power are limited, thus alleviating those limitations; • reducing fuel consumption, reducing emissions (e.g. CO2, NOx, PM, etc.); • reducing environmental impact (e.g. visible obstruction, noise, etc.). By extension, systems that have only onboard ESS, without other PPSs, is also considered in this standard. This standard intends to specify the following basic requirements, characteristics, functions and test methods for hybrid systems: • energy management to control the power flow among primary power source, energy storage system and power converters; • energy consumption, energy efficiency and regenerated energy; • vehicle characteristics achieved by energy storage system; • test methods of combined test; and • test methods of completed vehicles based on factory (stationary) and field (running) tests. NOTE Converter in this standard means combined equipment consisting of one or more converters (e.g. rectifier, inverter, chopper, etc.). The interfaces between the following power sources are covered: • external electric power supply system; • onboard ESSs (including pure onboard energy storage); • fuel cell, diesel electric generator; and • other power sources. As for the combination of inverters and motors, this standard applies to asynchronous motors or synchronous motors that are powered via voltage-source inverters. Power source systems and combination of inverters and motors are not limited to the listed above, but this standard can also be applied to future systems. This part of IEC 62864 covers electrically connected systems (series hybrid), and not systems that mechanically transmit the driving force (parallel hybrid).
URI: http://yse.yabesh.ir/std;jsessioutho1623177793325273135A68A10958014/handle/yse/235450
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    IEC 62864-1

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contributor authorIEC - International Electrotechnical Commission
date accessioned2017-10-18T11:08:04Z
date available2017-10-18T11:08:04Z
date copyright2016.06.01
date issued2016
identifier otherVDFGQFAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std;jsessioutho1623177793325273135A68A10958014/handle/yse/235450
description abstractScope: This part of IEC 62864 applies to series hybrid systems (electrically connected) with onboard energy storage (hereinafter referred as hybrid system). A hybrid system has two (or more) power sources including energy storage system (ESS) on board to achieve the following features by combining converter and motors and performing energy management control: • improving energy and fuel efficiency, improving acceleration characteristics, increasing running distance and uninterrupted running in the event of the loss of the primary power source (PPS), by using an ESS in addition to the primary power source under conditions where the power and capacity of the power source including regenerative power are limited, thus alleviating those limitations; • reducing fuel consumption, reducing emissions (e.g. CO2, NOx, PM, etc.); • reducing environmental impact (e.g. visible obstruction, noise, etc.). By extension, systems that have only onboard ESS, without other PPSs, is also considered in this standard. This standard intends to specify the following basic requirements, characteristics, functions and test methods for hybrid systems: • energy management to control the power flow among primary power source, energy storage system and power converters; • energy consumption, energy efficiency and regenerated energy; • vehicle characteristics achieved by energy storage system; • test methods of combined test; and • test methods of completed vehicles based on factory (stationary) and field (running) tests. NOTE Converter in this standard means combined equipment consisting of one or more converters (e.g. rectifier, inverter, chopper, etc.). The interfaces between the following power sources are covered: • external electric power supply system; • onboard ESSs (including pure onboard energy storage); • fuel cell, diesel electric generator; and • other power sources. As for the combination of inverters and motors, this standard applies to asynchronous motors or synchronous motors that are powered via voltage-source inverters. Power source systems and combination of inverters and motors are not limited to the listed above, but this standard can also be applied to future systems. This part of IEC 62864 covers electrically connected systems (series hybrid), and not systems that mechanically transmit the driving force (parallel hybrid).
languageEnglish, French
titleIEC 62864-1num
titleEnglish -- Railway applications ? Rolling stock ? Power supply with onboard energy storage system ? Part 1: Series hybrid system - Edition 1.0en
titleFrench -- Applications ferroviaires ? Mat‚riel roulant ? Alimentation ‚quip‚e d'un systŠme embarqu‚ de stockage de l'‚nergie ? Partie 1: SystŠme hybride s‚rie - Edition 1.0other
typestandard
page124
statusActive
treeIEC - International Electrotechnical Commission:;2016
contenttypefulltext
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