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Simulation-Based Comparisons of Mobile and Stationary Energy Storage Systems Applied for Electric Transport

机译:基于仿真的电力运输移动式和固定式储能系统比较

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Electric public transport infrastructure with its electric trolleybuses plays an important role in large-scale consumption of electrical energy. The most important feature of trolleybuses that are equipped with AC traction drive systems is the ability to generate electrical braking energy. Instead of dissipating in brake resistors, this regenerated energy can be either transferred to other accelerating trolleybus or stored in energy storage system (ESS) for repeated use. However, there are also rather well known technical disadvantages of ESS, for example, mobile ESS causes additional load for trolleybus and stationary ESS might be located so far from trolleybus that most of the energy might be lost in transmission. For this reason, the purpose of this paper was to present a method that compares energy consumptions of trolleybuses unequipped and equipped with mobile or stationary energy storage systems by analyzing the results acquired from simulations of travelling equal distances at equal motion condition cycles. Trolleybus mass increase in case of mobile ESS was considered. Overhead DC line (ODCL) transmission resistance of the portion between substation (SUB) and trolleybus was considered, and ODCL transmission resistance of the portion between stationary ESS and trolleybus was also considered. Losses in both traction drive converter and ESS bidirectional DC/DC converter and also losses in both SUB transformer and SUB rectifier were considered by assuming certain efficiency ratios. Efficiency of regenerated energy storing and substation energy consumption reduction is analyzed and corresponding conclusions are drawn.
机译:带有电动无轨电车的电动公共交通基础设施在大规模消耗电能中发挥着重要作用。配备有AC牵引驱动系统的无轨电车的最重要特征是能够产生电制动能量。代替耗散制动电阻,该再生能量既可以转移到其他加速无轨电车,也可以存储在能量存储系统(ESS)中以便重复使用。但是,ESS还存在众所周知的技术缺点,例如,移动式ESS会给无轨电车带来额外的负担,而固定式ESS可能离无轨电车太远,以至于大部分能量会在传输中损失。因此,本文的目的是提出一种方法,该方法通过分析在相同运动条件下行驶相等距离的模拟获得的结果,比较未配备和配备有移动或固定式储能系统的无轨电车的能耗。考虑移动ESS时无轨电车的质量增加。考虑了变电站(SUB)和无轨电车之间的部分的架空DC线路(ODCL)传输电阻,还考虑了固定式ESS和无轨电车之间的部分的ODCL传输电阻。通过假设一定的效率比,考虑了牵引驱动转换器和ESS双向DC / DC转换器中的损耗,以及SUB变压器和SUB整流器中的损耗。分析了再生储能的效率和变电站的能耗降低,并得出了相应的结论。

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