JDA软及项目介绍.ppt

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* * * * * Each planogram is considered in sequence, along the fixture path determined above, and for each the process is: The location of the planogram is determined by where the last planogram ended (or the start point if this is the first). The ideal size of the planogram is determined by using the ‘Allocation Target Space’ calculation. This respects min/max values for planogram width if specified. The size is adjusted depending on the setting of the ‘size to multiples of’ option. If set, the resulting size is the nearest available multiple (0), by rounding. If the planogram is wider than the available fixture space, and option b. does not allow the planogram to be split, then it is moved entirely to the next fixture in the ‘Allocation Group’. If the ‘minimum split size’ for a planogram is wider than the available fixture space, then it is moved entirely to the next fixture in the ‘Allocation Group’. Planograms forced to move to the next fixture due to their split setting or ‘minimum split size’ will result in the last fixture in the ‘Allocation Group’ being overfilled. Resizing planograms is not applied directly to the planogram’s ‘Width’ field to avoid conflicts with the source planogram’s fixtures and product positions. The planogram’s section field ‘Width Override’ is used for the adjusted width. A planogram that is split or segmented will result in multiple sections, with each section allocated the appropriately subdivided ‘Width Override’ dimensions. If there is a source planogram, then users can report the actual planogram size vs. target space allocated size (the ‘Section Override’ results) so the user is in control of follow-up actions. If there is no source planogram (the planogram originated within Floor Planning and there are no fixture/position details), then Floor Planning can use its “Create Planogram” function and export it to Space Planning using the section-level override sizes, facilitating a ‘top down’ approach that creates the planogram foo

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