Cost-Effectiveness of Distributed Generation Technologies

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Cost-Effectiveness of Distributed Generation Technologies ( cost-effectiveness-distributed-generation-technologies )

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SGIPce User Guide 4.2 SGIPce Opening Screen The worksheet named SGIPce, seen in Figure 4-1 above, is the opening sheet for the SGIPce system. Whenever this workbook is opened the user will automatically be presented with this worksheet. This section describes the three areas of interest on this worksheet. 4.2.1 Global Assumptions Table The Global Assumptions table, found in the upper left corner of the screen, is the area where the user controls various aspects of how the system is going to function. Figure 4-2: Global Assumptions Shown in Figure 4-2, the global assumptions table defines the following useful concepts.  Program Scenario Name is a drop-down control that allows the user to change between the two specifically defined scenarios available in the system. ─ This control is used as one of two identifiers and identifies which scenario the stored workbooks were run under. - The scenarios currently defined in the system are the Base Case and the Greenhouse Gas (GHG) scenarios. ─ This identifier is used to help construct the default identifier for the Results workbook(s) and is used to build a sub-directory in the CalcEngines directory where the copies of the calculation engines are stored, if this option is selected by the user. - For example: SGIPce_Results_BaseCase_TestVersion.xlsx uses Base Case in the name as the scenario identifier for the Results workbook. This name implies a business as usual scenario. - The GHG scenario implies a scenario with higher GHG costs, higher avoided costs due to the GHG costs, and higher renewable energy credits (RECs).  Version Description holds the name given by the user to identify the version of the scenario run defined using the program scenario name, which further defines the identifier used for the selected group of technologies. Itron, Inc. 4-2 Run Processor

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