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  2. Economic production quantity - Wikipedia

    en.wikipedia.org/wiki/Economic_production_quantity

    This figure graphs the holding cost and ordering cost per year equations. The third line is the addition of these two equations, which generates the total inventory cost per year. This graph should give a better understanding of the derivation of the optimal ordering quantity equation, i.e., the EPQ equation

  3. Economic order quantity - Wikipedia

    en.wikipedia.org/wiki/Economic_order_quantity

    There is a fixed cost for each order placed, regardless of the quantity of items ordered; an order is assumed to contain only one type of inventory item. There is also a cost for each unit held in storage, commonly known as holding cost, sometimes expressed as a percentage of the purchase cost of the item. Although the EOQ formulation is ...

  4. Carrying cost - Wikipedia

    en.wikipedia.org/wiki/Carrying_cost

    Cycle inventory. First of all, we need to go through the idea of economic order quantity (EOQ). [6] EOQ is an attempt to balance inventory holding or carrying costs with the costs incurred from ordering or setting up machinery. The total cost will minimized when the ordering cost and the carrying cost equal to each other.

  5. Dynamic lot-size model - Wikipedia

    en.wikipedia.org/wiki/Dynamic_lot-size_model

    There is a setup cost s t incurred for each order and there is an inventory holding cost i t per item per period (s t and i t can also vary with time if desired). The problem is how many units x t to order now to minimize the sum of setup cost and inventory cost. Let us denote inventory:

  6. Economic batch quantity - Wikipedia

    en.wikipedia.org/wiki/Economic_batch_quantity

    The figure graphs the holding cost and ordering cost per year equations. The third line is the addition of these two equations, which generates the total inventory cost per year. The lowest (minimum) part of the total cost curve will give the economic batch quantity as illustrated in the next section.

  7. Silver–Meal heuristic - Wikipedia

    en.wikipedia.org/wiki/Silver–Meal_heuristic

    The average cost = only the setup cost and there is no inventory holding cost. To satisfy the demand for period 1, 2 Producing lot 1 and 2 in one setup give us an average cost: = + The average cost = (the setup cost + the inventory holding cost of the lot required in period 2.) divided by 2 periods.

  8. Newsvendor model - Wikipedia

    en.wikipedia.org/wiki/Newsvendor_model

    This cost always exists when the production of a series is started. [$/production] – variable cost. This cost type expresses the production cost of one product. [$/product] – the product quantity in the inventory. The decision of the inventory control policy concerns the product quantity in the inventory after the product decision.

  9. Inventory turnover - Wikipedia

    en.wikipedia.org/wiki/Inventory_turnover

    An item whose inventory is sold (turns over) once a year has higher holding cost than one that turns over twice, or three times, or more in that time. Stock turnover also indicates the briskness of the business. The purpose of increasing inventory turns is to reduce inventory for three reasons. Increasing inventory turns reduces holding cost ...