Energy Storage Systems for Power Supply of Ultrahigh Speed Hyperloop Trains

Author(s):  
Marcos Lafoz ◽  
Gustavo Navarro ◽  
Marcos Blanco ◽  
Jorge Torres
Author(s):  
B. V. Rajanna ◽  
Malligunta Kiran Kumar

The battery energy storage systems are very essential for maintaining constant power supply when using solar photovoltaic systems for power generation. The viability and ability of battery energy storage systems are assessed based on battery usage in Solar Photovoltaic utility grid-connected systems. The power supply quality and reliability are improved by utilizing battery energy storage technologies in conjunction with solar photovoltaic systems. This paper presents a comparative analysis of Lead-Acid Storage battery and Lithium-ion battery banks connected to a utility grid. The battery mathematical model simulation study gives their performance characteristics of these batteries under grid-connected loads. Cost-benefit analysis of battery usage for determining the best battery suitable for solar photovoltaic system applications is also presented in this paper.


2020 ◽  
Vol 186 ◽  
pp. 01001
Author(s):  
Kamil Bakhteev ◽  
Alexander Fedotov ◽  
Rinat Misbakhov

The paper presents the results of scientific research, firstly, the effectiveness of the use of energy storage systems as stabilizers of alternating current frequency as a part of gas piston installations in decentralized and centralized (operating in parallel with the power system) and their simultaneous use for excitation forcing of generators during voltage dips is proved, secondly, The efficiency of using increased field-forcing ratio of the synchronous generator of the gas piston installations is proved to improve the power quality of industrial consumers.


2013 ◽  
Vol 860-863 ◽  
pp. 568-571
Author(s):  
Wen Peng Yu ◽  
Dong Liu

With the charging and discharging of grid-tied Energy Storage Systems (ESS), distribution network could shift load from peak period or suppress the fluctuation of renewable energy. Constraints of both grid and ESS are analyzed in the present paper, and definition of power supply & storage capacity of distribution network with ESS is proposed, which quantifies the ability of distribution network to shift load or adopt renewable energy generation. Operating optimization model is proposed for the operation of distribution network considering peak load shifting based on power supply & storage capacity, and the model is tested and verified in case study.


2021 ◽  
Vol 19 (3) ◽  
pp. 82-95
Author(s):  
V. L. Nezevak

The use of regenerative braking by electric rolling stock on DC railways makes it possible to increase the energy efficiency of the transportation process. The effective use of regenerative braking is associated with creation of conditions for receiving energy obtained through it. For these purposes, rectifier-inverter converters and energy absorbing devices are currently used in the traction power supply system.A promising technology that provides an increase in theefficiency of the use of regenerative braking is energy storage, which allows this energy to be used in the future to cover the traction load curve. A feature of the use of regenerative braking on singletrack sections of DC railways with low traffic intensity is the need to use converters or energy absorbing devices. One of the options for increasing the efficiency of recuperation energy use is the adoption of energy storage systems for the own needs of traction substations. The use of this technical solution is advisable on single-track sections with intensive use of regenerative braking, the effectiveness of which is explained through a decrease in power consumption for own needs of the substation from the external grid.The international research allows us to identify the widespread trend towards the application of electricity storage technology in various fields: from renewable energy sources to electric power systems, including transport power supply systems. International practices demonstrate successful implementation of pilot projects of adoption of energy storage systems for solving problems of increasing the efficiency of electric urban and suburban transport, as well as of metro systems.The objective of the work is to assess the energy performance of energy storage systems when using recovered energy for own needs of a traction substation. The study is based on the methods of mathematical and simulation modelling, optimisation, and mathematical statistics.The discussed issues refer to the use of energy storage systems to provide power supply for own needs of DC traction substations. Main issues of operation of storage systems are considered with the help of a substation case study. The features of the recuperation load curve are described to explain the use of hybrid technologies for developing a storage system. The example of the considered traction substation helps to demonstrate the solution to the problem of determining main parameters of the storage system, considering the specifics of operation of electrochemical and electrical modules.


Author(s):  
А.Ю. Никишин ◽  
М.С. Харитонов ◽  
Р.В. Зубавичюс

В мире наблюдается рост роли технологий накопления электроэнергии в составе современных систем электроснабжения, работающих в рамках концепции умных сетей. К новым направлениям относится их использование в составе систем электроснабжения морских портов, которые до недавнего времени считались одними из самых консервативных. В работе рассмотрены основные предпосылки и тенденции развития систем электроснабжения морских портов. С использованием методологии Prisma представлены результаты анализа современных исследований в области устойчивого развития электроэнергетики морских портов. Определены современные и перспективные направления использования накопителей электроэнергии в системах электроснабжения морских портов. На примере Калининградского морского торгового порта рассмотрены особенности технологических отношений с точки зрения обмена мощностью и энергией с энергосистемой. Приведены результаты анализа электропотребления порта за период в один год, показаны особенности и выделены причины неравномерности суточных графиков нагрузки. С целью оценки возможных режимов работы накопителя электроэнергии предложен алгоритм обработки данных суточных графиков нагрузки. Показана роль прогнозирования электропотребления при использовании систем хранения электроэнергии и дан анализ зависимостей электропотребления от внешних факторов. One of the modern global trends is the growing role of energy storage technologies as part of modern power supply systems operating within the framework of the smart grid concept. New research areas include energy storage systems introduction into power supply systems of seaports, which until recent times were considered as one of the most conservative. The paper considers the background and trends in the development of marine ports power supply systems. The paper provides the results of the modern research analysis in the field of sustainable development of the marine ports electric power industry obtained with the Prisma methodology. The existing and promising directions for the energy storage systems application in the power supply systems of marine ports have been identified. On the example of the Kaliningrad Sea Trade Port, the author considers the peculiarities of technological relations from the point of view of exchange of power and energy with the power system. The results of the analysis of the port’s power consumption for a period of one year are given, the features are shown and the reasons for the unevenness of the daily load schedules are highlighted. In order to assess the possible modes of energy storage systems operation, an algorithm for processing the data of daily load curves is proposed. The role of power consumption forecasting for energy storage systems is shown and an analysis of the dependences of power consumption on external factors is given.


2017 ◽  
Vol 137 (8) ◽  
pp. 596-597
Author(s):  
Kenta Koiwa ◽  
Kenta Suzuki ◽  
Kang-Zhi Liu ◽  
Tadanao Zanma ◽  
Masashi Wakaiki ◽  
...  

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