首页> 外文会议>Transportation Electrification Conference and Expo (ITEC), 2012 IEEE >Integrating battery energy storage with a BMS for reliability, efficiency, and safety in vehicles
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Integrating battery energy storage with a BMS for reliability, efficiency, and safety in vehicles

机译:将电池能量存储与BMS集成在一起,以提高车辆的可靠性,效率和安全性

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The choice of energy storage chemistry and battery management for transportation applications is at best challenging. The use of regenerative braking puts strain on some chemistries and the BMS (Battery Management System) needs to manage disparate criteria (temperature, altitude, maximum C rate, state of charge, cycle life, etc) to obtain maximum energy storage, round trip efficiency and safety. The different requirements of POWER needs compared with ENERGY needs are yet another set of constraints. The advent of PHEV (Plug in Hybrid Electric Vehicles) adds more complication and the vision of V to G (Vehicle to Grid) complicates the matter significantly more. This paper reviews safety criteria for lithium ion battery chemistries system and then introduces criteria for matching the battery type to the BMS system. The question of why a computer notebook type BMS isn't the best choice for a vehicle is discussed. Since most vehicles can stop faster than they start, there is more kinetic power available with regenerative braking than the power necessary for accelerating the vehicle. This gives rise to either choosing symmetric charge-discharge chemistries or over designing for a non-symmetric case. The marriage of the battery energy storage system to the BMS/power electronics provides the system with efficiency, reliability, and safety. This marriage must be completely understood for optimized system design.
机译:在运输应用中选择储能化学和电池管理是最大的挑战。再生制动的使用给某些化学药品带来了压力,BMS(电池管理系统)需要管理不同的标准(温度,高度,最大C速率,充电状态,循环寿命等),以获得最大的能量存储,往返效率和安全。与能源需求相比,电力需求的不同需求是另一组约束。 PHEV(插电式混合动力汽车中的插头)的出现增加了更多的复杂性,而V到G(车辆到电网)的愿景则使问题变得更加复杂。本文回顾了锂离子电池化学系统的安全标准,然后介绍了将电池类型与BMS系统匹配的标准。讨论了为什么笔记本型BMS并不是车辆的最佳选择的问题。由于大多数车辆的停车速度都比起步速度快,因此再生制动提供的动能比使车辆加速所需的动力更多。这导致要么选择对称的充放电化学性质,要么为非对称情况过度设计。电池储能系统与BMS /电力电子设备的结合为系统提供了效率,可靠性和安全性。为了优化系统设计,必须完全了解这种结合。

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