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Optimal Energy Management in Hybrid Electric Trucks Using Route Information

机译:使用路线信息的混合动力电动卡车的最佳能源管理

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摘要

To benchmark a hybrid vehicle’s Energy Management Strategy (EMS) usually a given, often certified, velocity trajectory is exploited. In this paper it is reasoned that it is also beneficial to optimize the velocity trajectory. Especially optimizing the vehicle braking trajectories, through maximization of energy recuperation, results in considerable fuel savings on the same traveled distance. Given future route (target velocities as function of traveled distance/location), traffic, and possibly weather information, together with the vehicle’s road load parameters, the future power request trajectory can be estimated. Dynamic Programming (DP) techniques can then be used to predict the optimal power split trajectory for the upcoming route, such that a desired state-of-charge at the end of the route is reached. The DP solution is re-calculated at a certain rate in order to adapt to changing conditions, e.g., traffic conditions, and used in a lower level real-time EMS to guarantee both battery state-of-charge as well as minimal fuel consumption.
机译:为了对混合动力汽车的能源管理策略(EMS)进行基准测试,通常会使用给定且经过认证的速度轨迹。在本文中,有理由认为优化速度轨迹也是有益的。通过最大化能量回收,尤其是优化车辆制动轨迹,可以在相同的行驶距离上节省大量燃油。给定未来的路线(目标速度与行进距离/位置的关系),交通以及可能的天气信息,以及车辆的道路负载参数,就可以估算未来的动力需求轨迹。然后可以使用动态编程(DP)技术来预测即将到来的路线的最佳功率分配轨迹,以便在路线末端达到所需的荷电状态。为了适应不断变化的条件(例如交通条件),以一定的速率重新计算了DP解决方案,并在较低级别的实时EMS中使用了DP解决方案,以确保电池的充电状态以及最小的燃料消耗。

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