CN204720520U - Storage battery devulcanization device - Google Patents

Storage battery devulcanization device Download PDF

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Publication number
CN204720520U
CN204720520U CN201520485545.6U CN201520485545U CN204720520U CN 204720520 U CN204720520 U CN 204720520U CN 201520485545 U CN201520485545 U CN 201520485545U CN 204720520 U CN204720520 U CN 204720520U
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China
Prior art keywords
resonance frequency
battery
signal
storage battery
distribution density
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CN201520485545.6U
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Chinese (zh)
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黎舟洋
王铁柱
高士森
叶欢欢
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Huizhou Power Supply Bureau of Guangdong Power Grid Co Ltd
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Huizhou Power Supply Bureau of Guangdong Power Grid Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

The utility model provides a kind of storage battery devulcanization device, comprise the battery resonant frequency sensor for gathering battery resonance frequency signal, resonance frequency distribution density calculator and exciting element, described resonance frequency distribution density calculator is connected with battery resonant frequency sensor and exciting element respectively.Described resonance frequency distribution density calculator generates resonance frequency corrected signal and resonance frequency distribution density signal according to battery resonance frequency signal, exciting element generates resonance frequency correction electric pulse according to described resonance frequency corrected signal and resonance frequency distribution density signal, and described resonance frequency correction electric pulse is sent to storage battery, storage battery dissolves the lead sulfate crystal of its inside according to described resonance frequency correction electric pulse, lead sulfate crystal is made to be reduced into lead or brown lead oxide from pole plate, thus the lead sulfate crystal in storage battery is decomposed in realization by applying electric pulse, extend the object in the useful life of storage battery.

Description

Storage battery devulcanization device
Technical field
The utility model relates to a field of power transmission, particularly a kind of storage battery devulcanization device of electric power system.
Background technology
Storage batteries of transformer substation group is along with the increase of the time limit that puts into operation, and backward, degradation phenomena appears in increasing storage battery, affects whole group storage battery performance, threatens power grid security.All the time, the service object of teams and groups of power transformation department to storage battery is the storage battery of serious deterioration, but there is a lot of storage battery to be in the sub-health state at initial stage in actual motion, namely the inside performance of this inferior health is storage battery vulcanization phenomenon, so that active substance of battery reduces, capacity declines, as processed not in time, will certainly be deteriorated serious, sulfuration is more rapid, serious, increases the weight of personnel's maintenance load in later stage.
Utility model content
The purpose of this utility model is that the shortcoming overcoming prior art is with not enough, provides a kind of storage battery devulcanization device, decomposes the lead sulfate crystal in storage battery, extend the object in the useful life of storage battery by applying electric pulse.
A kind of storage battery devulcanization device, comprise the battery resonant frequency sensor for gathering battery resonance frequency signal and resonance frequency distribution density calculator, battery resonance frequency signal is transferred to resonance frequency distribution density calculator by described battery resonant frequency sensor, also comprise the exciting element for sending resonance frequency correction electric pulse to storage battery, described resonance frequency distribution density calculator is connected with battery resonant frequency sensor and exciting element respectively.
The storage battery devulcanization device that the utility model provides, described battery resonance frequency signal for gathering the battery resonance frequency signal of internal storage battery lead sulfate crystalline substance, and is transferred to resonance frequency distribution density calculator by described battery resonant frequency sensor; Described resonance frequency distribution density calculator generates resonance frequency corrected signal according to described battery resonance frequency signal on the one hand, be sent to exciting element, synchronization simulation is carried out on the other hand according to described battery resonance frequency signal, described battery resonance frequency signal is revised, generate the resonance frequency distribution density signal of lead sulfate crystal, and be sent to exciting element; Described exciting element generates resonance frequency correction electric pulse according to described resonance frequency corrected signal and resonance frequency distribution density signal, and sends described resonance frequency correction electric pulse to storage battery; Storage battery dissolves the lead sulfate crystal of its inside according to described resonance frequency correction electric pulse, and along with the charging process of storage battery, lead sulfate crystal is made to be reduced into lead or brown lead oxide from pole plate, thus the lead sulfate crystal in storage battery is decomposed in realization by applying electric pulse, extend the object in the useful life of storage battery.
Wherein in an embodiment, described storage battery devulcanization device also comprises interconnective filter and signal amplifier, filter for filtered noise signal is connected with described battery resonant frequency sensor, is connected with described resonance frequency distribution density calculator for the signal amplifier amplifying battery resonance frequency signal.
Described filter for filtering the noise signal be mingled in battery resonance frequency signal, thus reduces the interference signal in the battery resonance frequency signal collected; Described signal amplifier for amplifying battery resonance frequency signal, thus makes described battery resonance frequency signal more easily be processed.
Wherein in an embodiment, described storage battery devulcanization device also comprises:
Sender unit, described sender unit is connected with battery resonant frequency sensor, resonance frequency distribution density calculator and exciting element respectively;
Control background apparatus far away, described control background apparatus far away comprises the signal receiver for communicating with described sender unit, and the display device be connected with described signal receiver respectively and audio frequency apparatus.
Described sender unit is used for obtaining battery resonance frequency signal from battery resonant frequency sensor, obtains resonance frequency corrected signal and resonance frequency distribution density signal from resonance frequency distribution density calculator, obtains resonance frequency correction electric pulse from exciting element, and described battery resonance frequency signal, resonance frequency corrected signal, resonance frequency distribution density signal and resonance frequency correction electric pulse is sent to the signal receiver of control background apparatus far away; Described control background apparatus far away is used for man-machine interaction, realizes storage battery devulcanization on-line alarm; Wherein, described signal receiver is used for the described battery resonance frequency signal received, resonance frequency corrected signal, resonance frequency distribution density signal and resonance frequency correction electric pulse to be sent to display device; Described display device and audio frequency apparatus are used for man-machine interaction, send alarm, thus realize storage battery devulcanization on-line alarm.
Wherein in an embodiment, described battery resonant frequency sensor is spherical crown cone gold nano signal transducer.
Described battery resonant frequency sensor is can coupled resonance field strengthen the spherical crown cone gold nano signal transducer of signal, can gather the battery resonance frequency signal of storage battery rapidly, strengthen battery resonance frequency signal, improve the efficiency of storage battery devulcanization.
Accompanying drawing explanation
Fig. 1 is the structural representation of the storage battery devulcanization device of an embodiment;
Fig. 2 is the structural representation of the storage battery devulcanization device of another embodiment;
Fig. 3 is the structural representation of the storage battery devulcanization device of another embodiment.
Embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearly, below in conjunction with accompanying drawing, the utility model is described in further detail.
Refer to the structural representation of the storage battery devulcanization device of an embodiment in Fig. 1.
A kind of storage battery devulcanization device, comprise the battery resonant frequency sensor 101 for gathering battery resonance frequency signal and resonance frequency distribution density calculator 102, battery resonance frequency signal is transferred to resonance frequency distribution density calculator 102 by described battery resonant frequency sensor 101, also comprise the exciting element 103 for sending resonance frequency correction electric pulse to storage battery, described resonance frequency distribution density calculator 102 is connected with battery resonant frequency sensor 101 and exciting element 103 respectively.
The present embodiment, described battery resonance frequency signal for gathering the battery resonance frequency signal of internal storage battery lead sulfate crystalline substance, and is transferred to resonance frequency distribution density calculator 102 by described battery resonant frequency sensor 101; Described resonance frequency distribution density calculator 102 1 aspect generates resonance frequency corrected signal according to described battery resonance frequency signal, be sent to exciting element 103, synchronization simulation is carried out on the other hand according to described battery resonance frequency signal, described battery resonance frequency signal is revised, generate the resonance frequency distribution density signal of lead sulfate crystal, and be sent to exciting element 103; Described exciting element 103 generates resonance frequency correction electric pulse according to described resonance frequency corrected signal and resonance frequency distribution density signal, and sends described resonance frequency correction electric pulse to storage battery; Storage battery dissolves the lead sulfate crystal of its inside according to described resonance frequency correction electric pulse, and along with the charging process of storage battery, lead sulfate crystal is made to be reduced into lead or brown lead oxide from pole plate, thus the lead sulfate crystal in storage battery is decomposed in realization by applying electric pulse, extend the object in the useful life of storage battery.
Wherein, described resonance frequency distribution density calculator 102 is the two-wire journey calculator of the resonance frequency distribution density for calculating lead sulfate crystal, one thread, for performing the resonance frequency heuristic algorithm based on Logistic chaos traversal actualizing technology, generates resonance frequency corrected signal according to described battery resonance frequency signal; Another thread, for performing the synchronization simulation based on moment method, is revised described battery resonance frequency signal, generates the resonance frequency distribution density signal of lead sulfate crystal, and is sent to exciting element 103.
Wherein in an embodiment, as shown in Figure 2, described storage battery devulcanization device also comprises interconnective filter 204 and signal amplifier 205, filter 204 for filtered noise signal is connected with described battery resonant frequency sensor 201, is connected with described resonance frequency distribution density calculator 202 for the signal amplifier 205 amplifying battery resonance frequency signal.
Described filter 204 is for filtering the noise signal be mingled in battery resonance frequency signal, thus the interference signal reduced in the battery resonance frequency signal collected, thus raising exciting element 203 pairs of storage batterys send described resonance frequency correction electric pulse, carry out the accuracy of devulcanization; Described signal amplifier 205 for amplifying battery resonance frequency signal, thus makes described battery resonance frequency signal more easily be processed.
Wherein in an embodiment, as shown in Figure 3, described storage battery devulcanization device also comprises:
Sender unit 306, described sender unit 306 is connected with battery resonant frequency sensor 304, resonance frequency distribution density calculator 303 and exciting element 305 respectively;
Control background apparatus 307 far away, described control background apparatus 307 far away comprises the signal receiver 308 for communicating with described sender unit 306, and the display device 310 be connected with described signal receiver 308 respectively and audio frequency apparatus 309.
Described battery resonance frequency signal, resonance frequency corrected signal, resonance frequency distribution density signal and resonance frequency correction electric pulse for obtaining battery resonance frequency signal from battery resonant frequency sensor 304, obtaining resonance frequency corrected signal and resonance frequency distribution density signal from resonance frequency distribution density calculator 303, obtaining resonance frequency correction electric pulse from exciting element 305, and are sent to the signal receiver 308 of control background apparatus 307 far away by described sender unit 306; Described control background apparatus 308 far away, for man-machine interaction, realizes storage battery devulcanization on-line alarm; Wherein, described signal receiver 308 is for being sent to display device 310 the described battery resonance frequency signal received, resonance frequency corrected signal, resonance frequency distribution density signal and resonance frequency correction electric pulse; Described display device 310 and audio frequency apparatus 309 for man-machine interaction, send alarm, thus realize storage battery devulcanization on-line alarm.
Wherein in an embodiment, described battery resonant frequency sensor is spherical crown cone gold nano signal transducer.
Described battery resonant frequency sensor is can coupled resonance field strengthen the spherical crown cone gold nano signal transducer of signal, can gather the battery resonance frequency signal of storage battery rapidly, strengthen battery resonance frequency signal, improve the efficiency of storage battery devulcanization.
The utility model preferred embodiment is, as shown in Figure 3:
Battery resonant frequency sensor 304 gathers the battery resonance frequency signal of internal storage battery lead sulfate crystalline substance, and described battery resonance frequency signal is sent to filter 301 and sender unit 306; Described filter 301 filters the noise signal be mingled in battery resonance frequency signal, and the battery resonance frequency signal after filtering is sent to signal amplifier 302; Described signal amplifier 302 amplifies battery resonance frequency signal, and is sent to resonance frequency distribution density calculator 303; Described resonance frequency distribution density calculator 303 1 aspect generates resonance frequency corrected signal according to described battery resonance frequency signal, be sent to exciting element 305 and sender unit 306, synchronization simulation is carried out on the other hand according to described battery resonance frequency signal, described battery resonance frequency signal is revised, generate the resonance frequency distribution density signal of lead sulfate crystal, and be sent to exciting element 305 and sender unit 306; Described exciting element 305 generates resonance frequency correction electric pulse according to described resonance frequency corrected signal and resonance frequency distribution density signal, and sends described resonance frequency correction electric pulse to storage battery; Storage battery dissolves the lead sulfate crystal of its inside according to described resonance frequency correction electric pulse, and along with the charging process of storage battery, lead sulfate crystal is made to be reduced into lead or brown lead oxide from pole plate, thus the lead sulfate crystal in storage battery is decomposed in realization by applying electric pulse, extend the object in the useful life of storage battery.
In addition, described battery resonance frequency signal, resonance frequency corrected signal, resonance frequency distribution density signal and resonance frequency correction electric pulse are sent to the signal receiver 308 of control background apparatus 307 far away by sender unit 306; Signal receiver 308 is sent to display device 310 and audio frequency apparatus 309 the described battery resonance frequency signal received, resonance frequency corrected signal, resonance frequency distribution density signal and resonance frequency correction electric pulse, realize man-machine interaction, send alarm, thus reach the object of storage battery devulcanization on-line alarm.
Each technical characteristic of the above embodiment can combine arbitrarily, for making description succinct, the all possible combination of each technical characteristic in above-described embodiment is not all described, but, as long as the combination of these technical characteristics does not exist contradiction, be all considered to be the scope that this specification is recorded.
The above embodiment only have expressed several execution mode of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that for the person of ordinary skill of the art, without departing from the inventive concept of the premise, can also make some distortion and improvement, these all belong to protection range of the present utility model.Therefore, the protection range of the utility model patent should be as the criterion with claims.

Claims (4)

1. a storage battery devulcanization device, it is characterized in that, comprise the battery resonant frequency sensor for gathering battery resonance frequency signal and resonance frequency distribution density calculator, battery resonance frequency signal is transferred to resonance frequency distribution density calculator by described battery resonant frequency sensor, also comprise the exciting element for sending resonance frequency correction electric pulse to storage battery, described resonance frequency distribution density calculator is connected with battery resonant frequency sensor and exciting element respectively.
2. storage battery devulcanization device according to claim 1, it is characterized in that, also comprise interconnective filter and signal amplifier, filter for filtered noise signal is connected with described battery resonant frequency sensor, is connected with described resonance frequency distribution density calculator for the signal amplifier amplifying battery resonance frequency signal.
3. storage battery devulcanization device according to claim 1 and 2, is characterized in that, also comprise:
Sender unit, described sender unit is connected with battery resonant frequency sensor, resonance frequency distribution density calculator and exciting element respectively;
Control background apparatus far away, described control background apparatus far away comprises the signal receiver for communicating with described sender unit, and the display device be connected with described signal receiver respectively and audio frequency apparatus.
4. storage battery devulcanization device according to claim 1, is characterized in that, described battery resonant frequency sensor is spherical crown cone gold nano signal transducer.
CN201520485545.6U 2015-07-06 2015-07-06 Storage battery devulcanization device Active CN204720520U (en)

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Application Number Priority Date Filing Date Title
CN201520485545.6U CN204720520U (en) 2015-07-06 2015-07-06 Storage battery devulcanization device

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Application Number Priority Date Filing Date Title
CN201520485545.6U CN204720520U (en) 2015-07-06 2015-07-06 Storage battery devulcanization device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107768751A (en) * 2017-10-10 2018-03-06 常蓬彬 A kind of online process for sulfur removal of lead-acid accumulator based on chaos and its realization device
CN107785626A (en) * 2017-10-10 2018-03-09 常蓬彬 A kind of offline process for sulfur removal of lead-acid accumulator based on chaos and its realization device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107768751A (en) * 2017-10-10 2018-03-06 常蓬彬 A kind of online process for sulfur removal of lead-acid accumulator based on chaos and its realization device
CN107785626A (en) * 2017-10-10 2018-03-09 常蓬彬 A kind of offline process for sulfur removal of lead-acid accumulator based on chaos and its realization device

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