GET https://dev.normadoc.fr/products/ieee-1013-2007-ieee00003712-241792

Components

3 Twig Components
13 Render Count
6 ms Render Time
348.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
6 1.32ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
6 4.22ms
ProductType
"App\Twig\Components\ProductType"
components/ProductType.html.twig
1 0.22ms

Render calls

ProductState App\Twig\Components\ProductState 348.0 MiB 0.30 ms
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          Revision Standard - Superseded.<br />\n
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Component
App\Twig\Components\ProductState {#93054
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          Revision Standard - Superseded.<br />\n
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          Sizing batteries for hybrid and grid-connected PV systems is beyond the scope of this recommended practice. Recommended practices for the remainder of the electrical systems associated with standalone PV installations are also beyond the scope of this recommended practice.<br />\n
          Sizing examples are given for various representative system applications. Iterative techniques to optimize battery costs, which include consideration of the interrelationship between battery size, PV array size, and weather, are beyond the scope of this recommended practice.<br />\n
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ProductType App\Twig\Components\ProductType 348.0 MiB 0.22 ms
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          Sizing batteries for hybrid and grid-connected PV systems is beyond the scope of this recommended practice. Recommended practices for the remainder of the electrical systems associated with standalone PV installations are also beyond the scope of this recommended practice.<br />\n
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          Sizing batteries for hybrid and grid-connected PV systems is beyond the scope of this recommended practice. Recommended practices for the remainder of the electrical systems associated with standalone PV installations are also beyond the scope of this recommended practice.<br />\n
          Sizing examples are given for various representative system applications. Iterative techniques to optimize battery costs, which include consideration of the interrelationship between battery size, PV array size, and weather, are beyond the scope of this recommended practice.<br />\n
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ProductMostRecent App\Twig\Components\ProductMostRecent 348.0 MiB 0.66 ms
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          Sizing batteries for hybrid and grid-connected PV systems is beyond the scope of this recommended practice. Recommended practices for the remainder of the electrical systems associated with standalone PV installations are also beyond the scope of this recommended practice.<br />\n
          Sizing examples are given for various representative system applications. Iterative techniques to optimize battery costs, which include consideration of the interrelationship between battery size, PV array size, and weather, are beyond the scope of this recommended practice.<br />\n
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          Sizing batteries for hybrid and grid-connected PV systems is beyond the scope of this recommended practice. Recommended practices for the remainder of the electrical systems associated with standalone PV installations are also beyond the scope of this recommended practice.<br />\n
          Sizing examples are given for various representative system applications. Iterative techniques to optimize battery costs, which include consideration of the interrelationship between battery size, PV array size, and weather, are beyond the scope of this recommended practice.<br />\n
          This recommended practice is meant to assist system designers in sizing lead-acid batteries for residential, commercial, and industrial stand-alone PV systems.
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ProductState App\Twig\Components\ProductState 348.0 MiB 0.27 ms
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          New IEEE Standard - Superseded.<br />\n
          Methods for sizing both vented and valve-regulated lead-acid batteries used with terrestrial photovoltaic (PV) systems are described. The purpose of this document is to assist system designers in sizing batteries for residential, commercial, and industrial PV systems. Iterative techniques to optimize battery costs, installation, maintenance, safety, testing procedures and consideration of battery types other than lead-acid, are beyond the scope of this document. Recommended practices for the remainder of the electrical systems associated with PV installations are also beyond the scope of this document.<br />\n
          \t\t\t\t<br />\n
          This Recommended Practice describes methods for sizing both vented and valve regulated lead-acid batteries used with terrestrial photovoltaic (PV) systems. Installation, maintenance, safety, testing procedures, and consideration of battery types other than lead-acid, are beyond the scope of this document. Recommended practices for the remainder of the electrical systems associated with PV installations are also beyond the scope of this document. The purpose of this Recommended Practice is to assist system designers in sizing batteries for residential, commercial, and industrial PV systems. Sizing examples are given for various representative system applications. Iterative techniques to optimize battery costs, which include consideration of the interrelationship between battery size, PV array size, and weather, are beyond the scope of this document.
          """
        #metaKeywords: null
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        #shortDescription: "IEEE Recommended Practice for Sizing Lead-Acid Batteries for Photovoltaic (PV) Systems"
        -notes: "Superseded"
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