生醫園區提供用戶租用標準廠房,用戶為了滿足多元生產需求,可能同時租用多空間和使用多電表維持生產運作。因此可以透過不同配電規劃達到降低用成本和節費。本研究針對租用標準廠房製藥廠提供一套區域建置和電力規劃流程圖,使用手法如資源整平和品管統計分析來協助租用者進行生產設備規劃和用電配置。 台電低壓電力限制最大量499kW以下,其中屬於需量契約,時間電價和非時間電價最大差異,即是前者有分尖峰和半離峰和離峰電費計價方式,其需量契約限制條件為99 KW以下,超過需繳交超約附加費,後者是全時單一費率計價方式。利用每一度電多少錢的成本概念,配合代數求解方式,研究時間電價和非時間電價最佳契約需量當量數為109KW和尖峰用量53.6%之基準。引用案例分析用電方式,將空調系統之佔比例60%耗電冰水主機用電歸戶一分為二,降低尖峰時間需量用電,避免支付超約附加費,降低用電成本。利用統計方法假設檢定判定改善成果。用電數據分析,訂定指標,穩定監控,標準化管控用電行為。
The biomedical park provides users with renting standard workshops. In order to meet diversified production needs, users may rent multiple spaces and use multiple meters to maintain production operations. Therefore, it is possible to reduce usage costs and save expenses through different power distribution plans. This study provides a set of regional construction and power planning flowcharts for renting a standard factory-built pharmaceutical factory, using techniques such as resource leveling and quality control statistical analysis to assist the renter in the planning of production equipment and power configuration. Tai-power’s low-voltage power limit is less than 499kW. The biggest difference between time price and non-time price is that the former has peak and half off-peak With the off-peak electricity tariff pricing method, the demand contract limit is below 99 KW, and an over-contract surcharge is required for exceeding the contract. The latter is a full-time single rate pricing method. Using the cost concept of how much electricity per kilowatt-hour, combined with the algebraic solution method, study the basis of the optimal contracted demand equivalent of 109KW and 53.6% of peak consumption for time and non-time electricity prices. Citing case studies, we divide the 60% of the electricity consumed by the air-conditioning system into two for the ice water mainframe to reduce the demand for electricity during peak hours, avoid paying over-contract surcharges, and reduce electricity costs. Use statistical methods to test hypotheses to determine the improvement results. Analysis of electricity consumption data, setting indicators, stable monitoring, and standardized control of electricity consumption behavior.
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