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A PLUGPLAY BOARDNET CONCEPT SUPPORTING NEW VEHICLE FUNCTIONS AT REDUCED WEIGHT AND EXTENDED STANDBY TIME

机译:一个即插即用的车载网络概念可以在减轻重量和延长待机时间的同时支持新的车辆功能

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Lead acid batteries have been the exclusive vehicle energy storage for more than a century. Driven by the introduction of new safety, control, and comfort functions, the overall energy requirements are continually rising, driving lead acid battery technology to its limits.New Boardnet extensions and topologies are under development or entering the market, mainly driven by existing issues like insufficient supply stability, short standby times or the need to improve fuel efficiency.The all present cost pressure has so far limited the development of an integrated energy management approach, excluding the 12V Boardnet from technical progress and development methods now used in hybrid vehicle applications.Based on hybrid topologies a new Boardnet concept has been developed, superior in energy density, life time, weight and volume, improving cold start capability and start/stop functions. Provisions are made to support eDrag (dropping the alternator during acceleration) and regenerative braking for further improved fuel economy.Unlike a conventional lead acid system the new concept is based on the separation of energy storage and the allocation of electrical power. An energy management efficiently controls the energy flow, supervising the charge/discharge processes while monitoring the state of charge and health of battery and DLC. Energy transfer between the storage devices and the electrical system is established by means of high efficiency DC/DC converters based on a modular concept. Fuel consumption and standby power losses are reduced by means of efficient energy storage, a dedicated architecture and combined recuperation and start/stop strategy. Double Layer capacitors, Lithium Polymer batteries and lead acid battery arc re arranged for improving both vehicle cold start performance and stop phase supply. A simulation of the vehicle's longitudinal dynamic, along with a proposed E/E-architecture on equivalent circuit level reduces development time significantly. Special is taken to reduce fuel consumption while maintaining engine start ability. This can be realized in an elegant manner just by separating energy storage and the allocation of electrical power.First prototypes, combining Double Layer capacitors and lead acid batteries or Lithium Polymer batteries were developed and successfully tested along with a new energy management system. Everything is packaged into the shape of a standard starter battery, offering easy adaptation and implementation into existing vehicles with minimum modifications, making it a plug&play battery replacement even for the after market. Compared to a conventional electrical system the new storage system leads to 65% weight reduction while extending vehicle standby time up to 25%.
机译:铅酸电池已成为一个多世纪以来汽车专用的储能设备。在引入新的安全性,控制性和舒适性功能的推动下,总体能量需求不断提高,从而将铅酸电池技术推向了极限。 新的Boardnet扩展和拓扑正在开发或进入市场,这主要是由诸如供应稳定性不足,待机时间短或需要提高燃油效率等现有问题驱动的。 迄今为止,目前所有的成本压力限制了集成能源管理方法的开发,目前混合动力汽车应用中使用的12V Boardnet不在技术进步和开发方法之列。 基于混合拓扑,已经开发了一种新的Boardnet概念,其能量密度,使用寿命,重量和体积均优越,从而改善了冷启动能力和启动/停止功能。提供了支持eDrag(在加速过程中放下交流发电机)和再生制动以进一步改善燃油经济性的措施。 与传统的铅酸系统不同,新概念基于能量存储和电力分配的分离。能量管理可以有效地控制能量流,监督充电/放电过程,同时监视充电状态以及电池和DLC的健康状况。通过基于模块化概念的高效DC / DC转换器,可以在存储设备和电气系统之间建立能量传输。通过高效的能量存储,专用的架构以及组合的换热和启动/停止策略,减少了燃油消耗和待机功耗。重新布置了双层电容器,锂聚合物电池和铅酸电池,以改善车辆的冷启动性能和停止相供电。车辆纵向动态仿真以及拟议的等效电路级E / E体系结构可显着减少开发时间。在保持发动机启动能力的同时,采取了减少燃油消耗的特殊措施。仅通过分开能量存储和电力分配,就可以以优雅的方式实现这一点。 结合双电层电容器和铅酸电池或锂聚合物电池的第一批原型机已开发出来,并与新的能源管理系统一起成功进行了测试。一切都包装成标准起动机电池的形状,只需进行最少的改动即可轻松地适应和实施到现有车辆中,从而使其成为即插即用电池的替代品,甚至适用于售后市场。与传统的电气系统相比,新的存储系统使重量减轻了65%,同时将车辆待机时间延长了25%。

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