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Smart Battery Technology for Lifetime Improvement

电池(电) 计算机科学 数码产品 过程(计算) 储能 汽车工程 可靠性工程 测距 嵌入式系统 功率(物理) 电气工程 电信 工程类 量子力学 操作系统 物理
作者
Remus Teodorescu,Xin Sui,Søren Byg Vilsen,Pallavi Bharadwaj,Abhijit Kulkarni,Daniel‐Ioan Stroe
出处
期刊:Batteries [Multidisciplinary Digital Publishing Institute]
卷期号:8 (10): 169-169 被引量:41
标识
DOI:10.3390/batteries8100169
摘要

Applications of lithium-ion batteries are widespread, ranging from electric vehicles to energy storage systems. In spite of nearly meeting the target in terms of energy density and cost, enhanced safety, lifetime, and second-life applications, there remain challenges. As a result of the difference between the electric characteristics of the cells, the degradation process is accelerated for battery packs containing many cells. The development of new generation battery solutions for transportation and grid storage with improved performance is the goal of this paper, which introduces the novel concept of Smart Battery that brings together batteries with advanced power electronics and artificial intelligence (AI). The key feature is a bypass device attached to each cell that can insert relaxation time to individual cell operation with minimal effect on the load. An advanced AI-based performance optimizer is trained to recognize early signs of accelerated degradation modes and to decide upon the optimal insertion of relaxation time. The resulting pulsed current operation has been proven to extend lifetime by up to 80% in laboratory aging conditions. The Smart Battery unique architecture uses a digital twin to accelerate the training of performance optimizers and predict failures. The Smart Battery technology is a new technology currently at the proof-of-concept stage.
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