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Real-time Utility System Optimization

机译:实时公用事业系统优化

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At the 2002 IETC, we described the benefits of a site-wide utility system simulation model that can translate all in-plant process modifications to the resulting changes in fuel, water, and electricity at the factory fence to ensure that process Btus are accurately expressed in real dollars. Last year, we demonstrated how such a model could be upgraded to an optimizer to determine the most cost-effective way to operate specific equipment items wherever the operator is faced with choices as to which equipment items to run at any time, which fuel to use, etc. The last 12 months have seen a number of "second generation" optimizers delivered to clients in Europe, the Far East, and the Americas, operating in real time. These latest models employ sophisticated data validation and reconciliation techniques to account for incomplete or conflicting plant measurements. Web-enabled reports are generated and the results of the data reconciliation can even be fed back to the site data historian as corrected plant measurements. This approach will typically reduce day-to-day utility system operating costs by between 2 and 5 percent in addition to the long-term capital and operating cost savings already identified by using this type of model at the project planning and design stage.
机译:在2002年IETC上,我们描述了整个站点范围的公用事业系统模拟模型的好处,该模型可以将所有工厂内过程的修改转换为工厂围栏上燃料,水和电的变化,从而确保过程Btus的准确表达。以实际美元计。去年,我们演示了如何将这种模型升级到优化器,从而确定操作员可以随时选择运行哪些设备,使用哪种燃料的最经济有效的方式来操作特定设备。等等。在过去的12个月中,已经向欧洲,远东和美洲的客户实时交付了许多“第二代”优化器。这些最新模型采用复杂的数据验证和对账技术来解决工厂测量数据不完整或相互矛盾的情况。生成基于Web的报告,数据对帐的结果甚至可以作为校正后的工厂测量值反馈给站点数据历史学家。除了在项目规划和设计阶段已经使用这种类型的模型已经确定的长期资本和运营成本节省之外,这种方法通常将日常公用事业系统的运营成本降低2%至5%。

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