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State of charge

About: State of charge is a research topic. Over the lifetime, 12013 publications have been published within this topic receiving 201419 citations. The topic is also known as: SoC & SOC.


Papers
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Journal ArticleDOI
TL;DR: In this article, a stable and accurate estimation framework for battery pack with multi-cells connected in series with passive balance control is proposed, which can accurately estimate the state of charge (SOC) and state of health (SOH) of battery systems.

132 citations

Journal ArticleDOI
TL;DR: The results show that the FFNN-based method is an effective method to estimate SoC accurately in complex EV application environment and the SoC estimation errors can be stabilized within 2% after convergence, which applies to all the cases discussed in this paper.

132 citations

Journal ArticleDOI
TL;DR: In this article, a battery energy storage scheme to enable short-term dispatch commitment from a grid-connected wind-turbine generating power station is considered, in which the generated wind power charges one BESS while concurrently, the second BESS is to discharge power into the grid.
Abstract: A battery energy storage scheme to enable short-term dispatch commitment from a grid-connected wind-turbine generating power station is considered. Among the various types of energy storage medium, technical factors leading to the selection of battery are explained. The scheme utilizes two battery energy storage systems (BESS) in which the generated wind power charges one BESS while concurrently, the second BESS is to discharge power into the grid. The role of the two BESS interchanges when the BESS reaches specified state of charge/discharge. Furthermore, based on forecasted charging wind power and the monitored states of charge of the two BESS, the discharge power level from the generating station is determined and scheduled a few hours ahead. The dispatch scheme maximizes wind energy harnessed, achieved with the minimum number of the BESS switch-overs. The design thus prolongs the service life of the BESS. Numerical examples to demonstrate the performance of the scheme are also included.

130 citations

Journal ArticleDOI
TL;DR: A new energy management scheme is proposed for the grid connected hybrid energy storage with the battery and the supercapacitor under different operating modes and the effectiveness of the proposed method is validated by both simulation and experimental studies.
Abstract: DC-coupled microgrids are simple as they do not require any synchronization when integrating different distributed energy generations. However, the control and energy management strategy between the renewable energy sources and the energy storages under different operating modes is a challenging task. In this paper, a new energy management scheme is proposed for the grid connected hybrid energy storage with the battery and the supercapacitor under different operating modes. The main advantages of the proposed energy management scheme are effective power sharing between the different energy storage systems, faster dc link voltage regulation to generation and load disturbances, dynamic power sharing between the battery and the grid based on the battery state of charge, reduced rate of charge/discharge of battery current during steady state and transient power fluctuations, improved power quality features in ac grid and seamless mode transitions. The effectiveness of the proposed method is validated by both simulation and experimental studies.

130 citations

Patent
07 Jul 1999
TL;DR: In this article, a shared vehicle system includes a central station, at least one vehicle distribution port facility and a plurality or fleet of vehicles, each having a vehicle subsystem, where the information is processed to select a vehicle from the fleet to allocate to the user at the port facility.
Abstract: A shared vehicle system includes a central facility, at least one vehicle distribution port facility and a plurality or fleet of vehicles, each having a vehicle subsystem. In general, the central station and port facility and the vehicle subsystems communicate in a manner to allow a user to enter information at a port facility. That information is then communicated to the central facility, where the information is processed to select a vehicle from the fleet to allocate to the user at the port facility. Selection of a vehicle for allocation to a user may be based on selecting an available or soon to be available vehicle according to various algorithms that take into account the vehicles state of charge. The central station also communicates with the port facility and the vehicle subsystem to notify the user of the selected vehicle, to provide secure user access to the selected vehicle, to monitor the location and operating status of vehicles in the fleet, to monitor the state of charge of electric vehicles and to provide other functions. The vehicles communicate with the central station to notify the central station of the PIN number of the individual attempting to use the vehicle, and of vehicle parameters such as state of charge and location of the vehicle.

130 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
2023692
20221,326
2021926
20201,245
20191,285
20181,147