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POWER MANAGEMENT CONTROL OPTIMIZATION OF A HYBRID ELECTRIC-DIESEL LOCOMOTIVE

机译:混合电动柴油机机车的电源管理控制优化

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The interest of this work is to develop a control strategy to most effectively manage the power split between the energy storage system (ESS) and the diesel generator of a hybrid locomotive. The overall goal is to minimize fuel consumption of the diesel engine, while maximizing battery life of the onboard ESS. This problem proves to be complex due to the conflicting cost functions of fuel economy and battery state-of-health (SOH). In other words, during a typical drive cycle, fuel consumption is minimized by placing high loads upon the battery while minimizing negative effects on SOH requires more specific loading characteristics of the ESS for the same drive cycle. This work highlights the development of several power split control strategies for effective power management of a hybrid locomotive. The progression from a strict rule-based (RB) control strategy to an equivalent consumption minimization strategy (ECMS) is realized through simulation. Likewise, the advantage of Model Predictive Control (FLC) is also shown in simulation.
机译:这项工作的兴趣是制定一个控制策略,以最有效地管理能量存储系统(ESS)与混合机车的柴油发电机之间的功率分配。总体目标是最大限度地减少柴油发动机的燃料消耗,同时最大化船上ESS的电池寿命。由于燃料经济性和电池状态的矛盾函数相互冲突,因此该问题证明是复杂的。换句话说,在典型的驱动循环期间,通过在电池上放置高负载时,燃料消耗最小化,同时最小化对SOH的负效应,需要对同一驱动循环的ESS的更具体的负载特性。这项工作突出了多个电力分裂控制策略的开发,以实现混合机车的有效电力管理。通过模拟实现了对等效消耗最小化策略(ECM)的严格规则的基于(RB)控制策略的进展。同样地,模拟预测控制(FLC)的优点也在模拟中示出。

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