JP2014023412A - Power supply system - Google Patents

Power supply system Download PDF

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JP2014023412A
JP2014023412A JP2012163466A JP2012163466A JP2014023412A JP 2014023412 A JP2014023412 A JP 2014023412A JP 2012163466 A JP2012163466 A JP 2012163466A JP 2012163466 A JP2012163466 A JP 2012163466A JP 2014023412 A JP2014023412 A JP 2014023412A
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power
storage battery
generator
motor
power supply
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JP6035565B2 (en
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Koji Togashi
浩司 冨樫
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GLOBAL LINK CO Ltd
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GLOBAL LINK CO Ltd
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Abstract

PROBLEM TO BE SOLVED: To facilitate driving of a high-voltage load with generated power of a storage battery.SOLUTION: The power supply system is configured so that generated power of a solar battery 11 and supply power from a commercial power supply 12 are stored in a storage battery 13, a motor 14 is driven with charged power stored in the storage battery 13 as a power supply, and so that a generator 16 is connected with the motor 14 through a transmission 15 to fetch a high voltage corresponding to a gear ratio of the transmission from the generator 16 for supplying to a load.

Description

本発明は、蓄電池に蓄えた太陽電池の発電電力および商用電源からの供給電力を利用して負荷に高圧給電する給電システムに関するものである。   The present invention relates to a power supply system that supplies high-voltage power to a load by using generated power of a solar battery stored in a storage battery and power supplied from a commercial power source.

従来から、太陽電池の発電電力を使用することで商用電源からの商用電力の使用量を削減するとともに、商用電源の供給が停止した場合に、引き続きこの商用電源の供給停止直前までに蓄電池に蓄電しておいた電力を負荷に供給可能にする給電システムが広く提案されている(例えば、特許文献1を参照)。   Conventionally, the amount of commercial power from the commercial power supply is reduced by using the power generated by the solar battery, and when the commercial power supply is stopped, the battery is continuously stored until immediately before the commercial power supply is stopped. There has been widely proposed a power supply system that can supply power to a load (for example, see Patent Document 1).

特開平10-285825号公報JP-A-10-285825

しかしながら、従来の給電システムで使用される蓄電池は、一般に太陽電池を含む給電システムの規模に応じた容量のものが用いられ、蓄電池1個分が放出する出力電力、出力電圧には自ら限界がある。このため、例えば高電圧運転を必要とする負荷に対する電力供給には対応できないという不都合があった。また、必要とする十分に高い出力電圧、出力電力を得るには、蓄電池の設置数、つまり同時に稼動させる蓄電池の接続数を増やす必要があり、給電システムの高価格化や大型化が避けられない。さらには、かかる蓄電池の設置数の増加は、これらの設置空間の確保に困難を来たす場合があるという不都合があった。   However, the storage battery used in the conventional power supply system generally has a capacity corresponding to the scale of the power supply system including the solar battery, and the output power and output voltage emitted by one storage battery have their own limits. . For this reason, for example, there is a disadvantage that it is not possible to cope with power supply to a load that requires high voltage operation. In addition, in order to obtain the required sufficiently high output voltage and output power, it is necessary to increase the number of installed storage batteries, that is, the number of connected storage batteries to be operated at the same time. . Furthermore, the increase in the number of installed storage batteries has the disadvantage that it may be difficult to secure these installation spaces.

本発明は、上述した事情に鑑みてなされたものであり、その目的は、蓄電池に蓄えた太陽電池の発電電力および商用電源からの供給電力を利用して発電機を高速運転することで、これまで蓄電池の出力電力のみを使用することによっては運転できなかった高電圧負荷を、十分に運転可能にする給電システムを提供することにある。   The present invention has been made in view of the above-described circumstances, and an object of the present invention is to operate the generator at high speed using the generated power of the solar cell stored in the storage battery and the power supplied from the commercial power source. An object of the present invention is to provide a power supply system that can sufficiently operate a high voltage load that cannot be operated by using only the output power of the storage battery.

前述した目的を達成するために、本発明に係る給電システムは、太陽電池の発電電力及び商用電源からの供給電力を蓄電する蓄電池と、該蓄電池に蓄電された充電電力を電源として駆動されるモータと、該モータに変速機を介して連結された発電機と、を備え、前記モータの回転を前記変速機のギヤ比に応じた速度に変換して発電機に伝え、該発電機の発電電力を負荷に供給することを特徴とする。   In order to achieve the above-described object, a power supply system according to the present invention includes a storage battery that stores power generated by a solar battery and power supplied from a commercial power supply, and a motor that is driven using the charging power stored in the storage battery as a power source. And a generator connected to the motor via a transmission, and the rotation of the motor is converted to a speed corresponding to the gear ratio of the transmission and transmitted to the generator, and the generated power of the generator Is supplied to the load.

この構成によれば、日照時に蓄電池に蓄電した太陽電池の発電電力および夜間等に商用電源から蓄電池に蓄電した供給電力を用いてモータを駆動し、このモータの回転を変速機で高速回転に変換して発電機に伝えることにより、この発電機にその回転数に応じた高電圧を誘起させ、誘起されたこの高電圧出力により高電圧負荷の運転を可能にする。   According to this configuration, the motor is driven using the generated power of the solar battery stored in the storage battery during sunshine and the supplied power stored in the storage battery from the commercial power source at night, etc., and the rotation of the motor is converted to high speed rotation by the transmission. By transmitting this to the generator, a high voltage corresponding to the number of revolutions is induced in the generator, and operation of a high voltage load is enabled by the induced high voltage output.

本発明によれば、太陽電池の発電電力および商用電源の供給電力を蓄電した蓄電池の出力電力にもとづき発電機を高速運転できるので、その発電機が誘起する高電圧を高電圧負荷に対し供給することで、この高電圧負荷の運転を容易に可能にする。   According to the present invention, since the generator can be operated at high speed based on the output power of the storage battery storing the generated power of the solar battery and the supply power of the commercial power supply, the high voltage induced by the generator is supplied to the high voltage load. This makes it possible to easily operate this high voltage load.

以上、本発明について簡潔に説明した。更に、以下に説明される発明を実施するための最良の形態を、添付の図面を参照して詳細に説明する。   The present invention has been briefly described above. Furthermore, the best mode for carrying out the invention described below will be described in detail with reference to the accompanying drawings.

本発明の実施形態による給電システムを概念的に示すブロック図である。1 is a block diagram conceptually showing a power feeding system according to an embodiment of the present invention. 図1に示す給電システムの具体例を示すブロック図である。It is a block diagram which shows the specific example of the electric power feeding system shown in FIG.

以下、本発明の一実施の形態にかかる給電システムを、図1および図2を参照して説明する。   Hereinafter, a power supply system according to an embodiment of the present invention will be described with reference to FIGS. 1 and 2.

図1に示す本実施形態の給電システムは、太陽電池11と、商用電源(商用電力系統)12と、蓄電池13と、モータ14と、変速機15と、発電機16と、を備えて構成される。これらのうち太陽電池11は、太陽の光エネルギを直接電力に変換するものであり、今日では再生エネルギとして広く実用化されている。この太陽電池(セル)11は必要なレベルの電圧が得られるように、複数枚が直列または並列に接続(連設)されてモジュール化され、さらに強化ガラスにより覆うなどして太陽電池パネルとなっている。   The power feeding system according to the present embodiment shown in FIG. 1 includes a solar battery 11, a commercial power source (commercial power system) 12, a storage battery 13, a motor 14, a transmission 15, and a generator 16. The Of these, the solar cell 11 directly converts solar light energy into electric power, and is now widely used as regenerative energy. A plurality of solar cells (cells) 11 are connected (connected) in series or in parallel so as to obtain a required level of voltage, and are modularized, and are further covered with tempered glass to form a solar cell panel. ing.

また、商用電源12は電力会社から電力需用家への電力の供給源であり、日本では50Hzおよび60Hzの2系統で、供給電圧はAC100ボルトである。蓄電池13は直流電力を蓄える電池であり、太陽光や風力等によって発生した電力を蓄えて、負荷に供給する。自然エネルギである太陽光や風力等を利用して得られる電力は一般的に不安定であり、常に一定値ではない。しかし、その不安定な電力を蓄電池13に一旦蓄電することにより、この蓄電池によって平滑化および安定化された電力を出力させることができる。また、蓄電池13はいつでも何処でも電力を取り出して使用することができ、特に緊急時の電源として極めて有用である。   The commercial power supply 12 is a power supply source from the power company to the power consumer. In Japan, two systems of 50 Hz and 60 Hz are used, and the supply voltage is AC 100 volts. The storage battery 13 is a battery that stores DC power, stores power generated by sunlight, wind power, and the like and supplies it to a load. Electric power obtained by using natural energy such as sunlight and wind power is generally unstable and is not always a constant value. However, once the unstable power is stored in the storage battery 13, the power smoothed and stabilized by the storage battery can be output. Moreover, the storage battery 13 can take out electric power anytime and anywhere, and is very useful especially as an emergency power source.

モータ14は交流モータで、このモータ14の出力軸には変速機15を介して発電機16の駆動軸が連係されている。変速機15は複数個のギヤを組み合わせたものからなり、モータ14の回転数をギヤ比に応じた回転数に変換して発電機16に伝える。ここで使用する変速機15として、ギヤ比が調整可能または調整不可能な構成のものを任意に選んで用いることができる。なお、本実施形態では変速機15のギヤ比が、例えば10対1とした場合には、モータ14の回転数に比べて発電機16の回転数を10倍速く回転(高速回転)させることができる。従って、発電機16はその回転数相当レベルの高電圧を発生する。   The motor 14 is an AC motor, and the drive shaft of the generator 16 is linked to the output shaft of the motor 14 via the transmission 15. The transmission 15 is composed of a combination of a plurality of gears, converts the rotational speed of the motor 14 into a rotational speed corresponding to the gear ratio, and transmits it to the generator 16. As the transmission 15 used here, one having a configuration in which the gear ratio is adjustable or not adjustable can be arbitrarily selected and used. In this embodiment, when the gear ratio of the transmission 15 is, for example, 10 to 1, the rotational speed of the generator 16 can be rotated 10 times faster (high speed rotation) than the rotational speed of the motor 14. it can. Therefore, the generator 16 generates a high voltage corresponding to the rotational speed.

図2は、図1に示す給電システムの詳細を示し、前記太陽電池11は分配器17を介してインバータ18に接続されている。また、このインバータ18は分電盤19を介して商用電源12に接続されている。これらのうち分配器17は、太陽電池11の発電電力を前記インバータ18へ供給するとともに、蓄電池13の充電回路へも供給する。   FIG. 2 shows details of the power feeding system shown in FIG. 1, and the solar cell 11 is connected to an inverter 18 via a distributor 17. The inverter 18 is connected to the commercial power supply 12 via a distribution board 19. Among these, the distributor 17 supplies the generated power of the solar battery 11 to the inverter 18 and also supplies it to the charging circuit of the storage battery 13.

インバータ18は分配器17を通じて入力された直流電力を商用周波数の交流電力に変換する。分電盤19はインバータ18で得られた交流電力および蓄電池13の放電電力を後述のインバータ25で交流変換した交流電力を、商用電源(商用電力系統)12からの商用電力に重畳させるように機能する。   The inverter 18 converts the DC power input through the distributor 17 into AC power having a commercial frequency. The distribution board 19 functions to superimpose AC power obtained by the inverter 18 and AC power obtained by AC conversion of the discharge power of the storage battery 13 by an inverter 25 described later on the commercial power from the commercial power source (commercial power system) 12. To do.

前記分配器17にはスイッチ21を介して充電器20が接続され、この充電器20に前記蓄電池13が接続されている。充電器20はスイッチ21が閉じられている場合に、太陽電池11の発電電力を分配器17を通じて蓄電池13に供給し、これを充電するように機能する。   A charger 20 is connected to the distributor 17 via a switch 21, and the storage battery 13 is connected to the charger 20. When the switch 21 is closed, the charger 20 functions to supply the generated power of the solar cell 11 to the storage battery 13 through the distributor 17 and charge it.

インバータ18と分電盤19とを結ぶ交流線路24の途中には、スイッチ22を介して整流器23が接続され、この整流器23はさらに充電器20に接続されている。整流器23はスイッチ22が閉じられたとき、前記インバータ18の交流出力電力や商用電源からの交流電力を整流するものであり、この整流による直流出力電力を充電器20が蓄電池13に蓄電可能にしている。   A rectifier 23 is connected to an AC line 24 connecting the inverter 18 and the distribution board 19 via a switch 22, and the rectifier 23 is further connected to a charger 20. The rectifier 23 rectifies the AC output power of the inverter 18 and the AC power from the commercial power source when the switch 22 is closed. The charger 20 can store the DC output power by the rectification in the storage battery 13. Yes.

また、この蓄電池13にはインバータ25が接続され、このインバータ25はスイッチ26を介して前記交流線路24に接続されている。これにより、スイッチ26が閉じられることで、蓄電池13に前述のように蓄電された電力は放電されてインバータ25に入力され、このインバータ25は放電電力を交流変換し、この交流変換された電力を交流線路24に供給可能にしている。   Further, an inverter 25 is connected to the storage battery 13, and the inverter 25 is connected to the AC line 24 via a switch 26. As a result, when the switch 26 is closed, the power stored in the storage battery 13 as described above is discharged and input to the inverter 25. The inverter 25 converts the discharged power into AC and converts the AC converted power into power. Supply to the AC line 24 is enabled.

前記交流線路24にはモータ(交流モータ)14が接続され、このモータ14の出力軸には変速機15の入力軸が連結されている。そして、この変速機15の出力軸には発電機(交流発電機または直流発電機)16の駆動軸が連結されている。これによりモータ14の回転が変速機15の所定のギヤ比に従って高められ、発電機16はモータ14の回転数に比べて高い所定の回転速度で運転される。従って、発電機16はその速度に応じた高レベルの電圧を出力する。   A motor (AC motor) 14 is connected to the AC line 24, and an input shaft of the transmission 15 is connected to an output shaft of the motor 14. A drive shaft of a generator (alternator or dc generator) 16 is connected to the output shaft of the transmission 15. Thereby, the rotation of the motor 14 is increased according to a predetermined gear ratio of the transmission 15, and the generator 16 is operated at a predetermined rotation speed higher than the rotation speed of the motor 14. Therefore, the generator 16 outputs a high level voltage corresponding to the speed.

かかる構成になる給電システムでは、日照時に太陽電池11の発電電力が分配器17を通じてインバータ18に入力され、インバータ18で交流変換された交流電力が交流線路24で商用電源12からの交流電力と合わせてモータ14に供給される。この場合において、スイッチ21が閉じられている場合には、太陽電池11の発電電力は分配器17を介して充電器20に供給され、充電器20はその分配電力(直流電力)を蓄電器13に蓄電させる。   In the power feeding system having such a configuration, the generated power of the solar cell 11 is input to the inverter 18 through the distributor 17 during sunlight, and the AC power converted by the inverter 18 is combined with the AC power from the commercial power supply 12 through the AC line 24. To the motor 14. In this case, when the switch 21 is closed, the generated power of the solar cell 11 is supplied to the charger 20 via the distributor 17, and the charger 20 supplies the distributed power (DC power) to the capacitor 13. Allow to store electricity.

一方、日中、夜間を問わず商用電源12からの交流電力は分電盤19および交流線路24に供給されている。ここで、スイッチ22が閉じられると、この交流線路24上の交流電力は整流器23に入力されて直流電力に変換され、この直流電力を充電器20が蓄電池13に蓄電する。従って、蓄電池13は太陽電池11の発電電力のみでなく、商用電源12からの交流電力をも蓄電する。なお、スイッチ21が開かれた場合には、商用電源12からの交流電力のみが蓄電池13に蓄電される。   On the other hand, AC power from the commercial power source 12 is supplied to the distribution board 19 and the AC line 24 regardless of whether it is daytime or nighttime. Here, when the switch 22 is closed, the AC power on the AC line 24 is input to the rectifier 23 and converted into DC power, and the charger 20 stores the DC power in the storage battery 13. Therefore, the storage battery 13 stores not only the power generated by the solar battery 11 but also AC power from the commercial power source 12. When the switch 21 is opened, only the AC power from the commercial power source 12 is stored in the storage battery 13.

かかる蓄電池13の充電作業中においても、モータ14は交流線路24を通じて交流電力を受けて回転し、この回転が変速機15を介して発電機16に伝えられる。このためこの発電機16は変速機15において設定された所定のギヤ比に対応する速度にて運転され、その運転速度に応じた所定レベルの交流電力または直流電力を発生する。   Even during the charging operation of the storage battery 13, the motor 14 rotates by receiving AC power through the AC line 24, and this rotation is transmitted to the generator 16 through the transmission 15. Therefore, the generator 16 is operated at a speed corresponding to a predetermined gear ratio set in the transmission 15, and generates a predetermined level of AC power or DC power according to the operating speed.

また、周辺が暗くなるタイミング例えば夜間において、太陽電池11が電力を発生しない場合、或いは商用電源12からの電力供給が遮断された場合(停電した場合)には、交流線路24上の交流電圧電力レベルが零に低下する。従って、モータ14の駆動電力が得られず、モータ14による発電機16の駆動が行なえなくなる。この場合には、前記スイッチ21、22を開いた状態で、スイッチ26を閉じる。これにより蓄電池13はインバータ25に対し放電を開始し、このインバータ25は蓄電池13が放出する直流電力を前記商用電源12の周波数、位相に一致した交流電力に変換し、交流線路24に供給する。このためこの交流線路24に接続された前記モータ14が駆動され、このモータ14の駆動トルクが変速機15に伝えられる。   Further, when the surroundings are dark, for example, at night, when the solar cell 11 does not generate power, or when power supply from the commercial power supply 12 is interrupted (when a power failure occurs), the AC voltage power on the AC line 24 The level drops to zero. Therefore, the drive power of the motor 14 cannot be obtained, and the generator 16 cannot be driven by the motor 14. In this case, the switch 26 is closed while the switches 21 and 22 are opened. As a result, the storage battery 13 starts discharging to the inverter 25, and the inverter 25 converts the DC power released by the storage battery 13 into AC power that matches the frequency and phase of the commercial power supply 12 and supplies the AC power to the AC line 24. Therefore, the motor 14 connected to the AC line 24 is driven, and the driving torque of the motor 14 is transmitted to the transmission 15.

前記変速機15はギヤ比が任意に設定可能になっており、通常のギヤ比に比べて十分大きい値に設定されている。このため、発電機16はそのギヤ比に応じてモータ14の回転数より十分に高い速度で回転する。この結果、発電機16は高電圧出力状態となり、高電圧負荷の運転が可能になる。つまり、蓄電器13の放電電力のみを電源として、種々の高電圧負荷を運転することができる。   The gear ratio of the transmission 15 can be arbitrarily set, and is set to a sufficiently large value as compared with a normal gear ratio. For this reason, the generator 16 rotates at a speed sufficiently higher than the rotational speed of the motor 14 according to the gear ratio. As a result, the generator 16 is in a high voltage output state and can operate with a high voltage load. That is, various high voltage loads can be operated using only the discharge power of the battery 13 as a power source.

なお、変速機15自体が前述のようなギヤ比の設定手段を持たない場合には、図2において、鎖線で示すように変速機15をバイパスするようにモータ14と発電機16とを直接連係させることができる。これにより、太陽電池11の発電電力および商用電源12から交流電力が正規に得られる場合には、その交流電力を用いてモータ14により発電機16を直接運転することができる。   When the transmission 15 itself does not have the gear ratio setting means as described above, the motor 14 and the generator 16 are directly linked so as to bypass the transmission 15 as shown by a chain line in FIG. Can be made. Thereby, when AC power is normally obtained from the generated power of the solar battery 11 and the commercial power supply 12, the generator 16 can be directly operated by the motor 14 using the AC power.

以上のように、本実施形態による給電システムは、太陽電池11の発電電力および商用電源12からの供給電力を蓄電池13に蓄電し、この蓄電池13に蓄電された充電電力を電源としてモータ14を駆動し、このモータ14に変速機15を介して発電機16を連結して、この発電機16から前記変速機15のギヤ比に応じた高電圧を取り出して負荷に供給可能にした構成である。   As described above, the power supply system according to the present embodiment stores the power generated by the solar battery 11 and the power supplied from the commercial power supply 12 in the storage battery 13 and drives the motor 14 using the charging power stored in the storage battery 13 as a power source. In addition, a generator 16 is connected to the motor 14 via a transmission 15 so that a high voltage corresponding to the gear ratio of the transmission 15 can be extracted from the generator 16 and supplied to a load.

従って、この構成によれば、日照時に蓄電池13に蓄電した太陽電池11の発電電力および夜間等に商用電源12から蓄電池13に蓄電した供給電力を用いて、モータ14を駆動し、このモータ14の回転を変速機15を介して発電機16に伝えることにより、この発電機16を変速機15のギヤ比に応じた任意の高速度で運転することができる。従って、この発電機16にその高速回転に応じたレベルの高電圧を出力させることができ、以ってこの高電圧出力により高電圧負荷の運転を簡単に実現できることとなる。   Therefore, according to this configuration, the motor 14 is driven using the generated power of the solar battery 11 stored in the storage battery 13 during sunshine and the supply power stored in the storage battery 13 from the commercial power supply 12 at night or the like. By transmitting the rotation to the generator 16 via the transmission 15, the generator 16 can be operated at an arbitrary high speed according to the gear ratio of the transmission 15. Therefore, the generator 16 can output a high voltage at a level corresponding to the high-speed rotation, and thus the operation of a high voltage load can be easily realized by the high voltage output.

11 太陽電地
12 商用電源(系統)
13 蓄電池
14 モータ
15 変速機
16 発電機
17 分配器
18、25 インバータ
19 分電盤
20 充電器
21、22、26、28 スイッチ
23 整流器
24 交流線路
27 バイパス線路
11 Solar power 12 Commercial power (system)
DESCRIPTION OF SYMBOLS 13 Storage battery 14 Motor 15 Transmission 16 Generator 17 Distributor 18, 25 Inverter 19 Distribution board 20 Charger 21, 22, 26, 28 Switch 23 Rectifier 24 AC line 27 Bypass line

Claims (1)

太陽電池の発電電力及び商用電源からの供給電力を蓄電する蓄電池と、
該蓄電池に蓄電された充電電力を電源として駆動されるモータと、
該モータに変速機を介して連結された発電機と、を備え、
前記モータの回転を前記変速機のギヤ比に応じた速度に変換して発電機に伝え、
該発電機の発電電力を負荷に供給することを特徴とする給電システム。
A storage battery for storing the generated power of the solar battery and the power supplied from the commercial power supply;
A motor driven by using the charging power stored in the storage battery as a power source;
A generator coupled to the motor via a transmission,
The rotation of the motor is converted to a speed according to the gear ratio of the transmission and transmitted to the generator,
A power supply system that supplies power generated by the generator to a load.
JP2012163466A 2012-07-24 2012-07-24 Power supply system Active JP6035565B2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016226203A (en) * 2015-06-02 2016-12-28 株式会社Nttドコモ Power supply system
JP2017205007A (en) * 2016-05-11 2017-11-16 エルエス産電株式会社Lsis Co., Ltd. Electric energy storage device
CN111137156A (en) * 2018-11-05 2020-05-12 大众汽车有限公司 Rectifier assembly for a vehicle and vehicle with such a rectifier assembly

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0866001A (en) * 1994-08-19 1996-03-08 Furuwa Kaihatsu:Kk Self-sufficient driving power generation method and its system structure
JPH11150974A (en) * 1997-11-17 1999-06-02 Sony Corp Dc-ac inverter
JP2012029536A (en) * 2010-07-27 2012-02-09 Toyota Home Kk Appliance control system in building

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0866001A (en) * 1994-08-19 1996-03-08 Furuwa Kaihatsu:Kk Self-sufficient driving power generation method and its system structure
JPH11150974A (en) * 1997-11-17 1999-06-02 Sony Corp Dc-ac inverter
JP2012029536A (en) * 2010-07-27 2012-02-09 Toyota Home Kk Appliance control system in building

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016226203A (en) * 2015-06-02 2016-12-28 株式会社Nttドコモ Power supply system
JP2017205007A (en) * 2016-05-11 2017-11-16 エルエス産電株式会社Lsis Co., Ltd. Electric energy storage device
US10177586B2 (en) 2016-05-11 2019-01-08 Lsis Co., Ltd. Electric energy storage apparatus
CN111137156A (en) * 2018-11-05 2020-05-12 大众汽车有限公司 Rectifier assembly for a vehicle and vehicle with such a rectifier assembly

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