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FEASIBILITY OF LOAD-SHEDDING TO IMPROVE EFFICIENCY AND REDUCE ENERGY CONSUMPTION ON PASSENGER LOCOMOTIVES

机译:装载的可行性,提高乘客机车的效率,降低能源消耗

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This paper discusses the feasibility of shedding electrical demand associated with passenger coach HVAC systems during periods of peak traction needs, with the goal of right-sizing the main engine on a passenger locomotive, and possibly eliminating the HEP. In this study, train operation simulations were conducted to determine the sustained durations of peak traction needs on typical commuter and long distance routes. The simulation results were combined with thermal analyses of a sample passenger coach to investigate whether the required comfortable temperature range could be maintained for the durations of peak traction needs, with the HVAC system deactivated. Additionally, a review of available technology for load-shedding, and an economic analysis were conducted to evaluate the feasibility of implementing load shedding on passenger trains. The study showed that an appropriate load shedding strategy can be implemented without adversely impacting the industrywide passenger comfort standards and eliminating the capital and maintenance costs associated with an HEP.
机译:本文讨论了在高峰牵引需求期间与乘客Coach HVAC系统相关的脱落电气需求的可行性,其目标是在乘客机车上右侧尺寸,并可能消除HEP。在这项研究中,进行了火车操作模拟,以确定典型通勤者和长距离路线上的高峰牵引需求的持续持续时间。仿真结果与样品乘客教练的热分析相结合,以研究是否可以维持所需的舒适温度范围,以便HVAC系统停用。此外,对负载脱落的可用技术以及经济分析进行了审查,以评估在客车上实施负载脱落的可行性。该研究表明,可以实施适当的负载脱落策略,而不会对世贸署的乘客舒适标准进行不利影响,消除与HEP相关的资本和维持成本。

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