2017
DOI: 10.3390/en10091428
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Super Capacitor Energy Storage Based MMC for Energy Harvesting in Mine Hoist Application

Abstract: This paper proposes a super capacitor energy storage-based modular multilevel converter (SCES-MMC) for mine hoist application. Different from the conventional MMCs, the sub-modules employ distributed super capacitor banks, which are designed to absorb the regenerative energy of mine hoist and released in the traction condition, so as to improve energy utilization efficiency. The key control technologies are introduced in detail, followed by analysis of the configuration and operation principles. The feasibilit… Show more

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Cited by 9 publications
(7 citation statements)
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References 23 publications
(25 reference statements)
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“…Reference [41] uses a different number of networks according to the simulation time step. Figure 5b shows the model implemented in Simscape with the described Equations (5) and (6).…”
Section: Transmission Line Modelmentioning
confidence: 99%
See 1 more Smart Citation
“…Reference [41] uses a different number of networks according to the simulation time step. Figure 5b shows the model implemented in Simscape with the described Equations (5) and (6).…”
Section: Transmission Line Modelmentioning
confidence: 99%
“…Many application areas in which supercapacitors are used can be mentioned like magnetic resonance imaging (MRI) that needs very short pulses with high current [2] or fuel cell supercapacitor hybrid bus, where the supercapacitor satisfy the dynamic power demand [3]. In addition, the supercapacitor can be used for the integration of a photovoltaic power plant [4], grid integration of renewable energies [5] and the improvement of energy utilization for mine hoist applications [6]. However, many applications are limited by the self-discharge behavior in wireless sensor network applications [7], where the new techniques of chemical modification to suppress this phenomenon are shown in reference [8] and reference [9].…”
Section: Introductionmentioning
confidence: 99%
“…The MMC shows good prospects for HVDC transmission. But the complex controls (e.g., capacitor voltage balancing control and circulating current suppression control) and relative high primary investment make the MMC less attractive in medium-voltage applications [13].…”
Section: Introductionmentioning
confidence: 99%
“…Thanks to the increasing spread and development of performing microprocessors, the computation time of controller processors has been drastically reduced over the past decade, allowing the implementation of more and more complex control architectures. This fact, combined with the current more and more pressing issue of increased efficiency in each industrial field (e.g., in power generation [1][2][3][4], the transport sector [5][6][7], energy utilization [8,9], renewable energy [10][11][12], and so on), strongly favors the development and implementation of more sophisticated control theories, such as model-based ones. Among model-based control techniques experiencing wide popularity, model predictive control (MPC) [13][14][15], feedback linearization (FBL) [16,17], and sliding mode (SM) control [18] stand out.…”
Section: Introductionmentioning
confidence: 99%