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JP2006050880A - Highly efficient power generating device utilizing automobile generator - Google Patents

Highly efficient power generating device utilizing automobile generator Download PDF

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Publication number
JP2006050880A
JP2006050880A JP2004247565A JP2004247565A JP2006050880A JP 2006050880 A JP2006050880 A JP 2006050880A JP 2004247565 A JP2004247565 A JP 2004247565A JP 2004247565 A JP2004247565 A JP 2004247565A JP 2006050880 A JP2006050880 A JP 2006050880A
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phase
power generation
generator
power
electricity
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Yoshimasa Fujiwara
喜将 藤原
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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
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction
    • 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
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/76Power conversion electric or electronic aspects

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  • Wind Motors (AREA)
  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)
  • Supply And Distribution Of Alternating Current (AREA)
  • Rectifiers (AREA)
  • Synchronous Machinery (AREA)
  • Ac-Ac Conversion (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a generator capable of understanding a current condition by itself for automatic control which utilizes an automobile generator. <P>SOLUTION: A device for converting from three-phase AC to DC is removed from a general automobile generator, to be replaced with an efficient three-phase AC electronic converter, resulting in a power generating system for generating three-phase electricity at improved power generation efficiency. The device body has built-in active electronic brain (artificial intelligence), to automatically recognize ideal control programming, such as power transmission destination and power transmission output on the basis of programming information. The interaction for operation is allowed from a remote place via the Internet, avoiding from damage or disaster, such as emergency in power shortage or blackout accident from a power company, or suppressing the damages to a minimum. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は一般的な発電と随分異なり、交流電気と直流電気の長所.短所を電気的特性から上手に取り扱う技術と、パソコンを活用した情報端末により、発電機の設置場所と遠隔地との間を自在に情報交換が可能な技術分野の発明です。The present invention is very different from general power generation, and has the advantages of AC electricity and DC electricity. It is an invention in the technical field that allows information exchange between the place where the generator is installed and the remote place freely by using the technology to handle the disadvantages well from the electrical characteristics and the information terminal utilizing a personal computer.

本発明が従来と大きく異なる点は発電を目的とするだけで無く、インターネット電子マネー産業の参入など、まさにI.T時代を背景とした技術分野を元に考案した発電です。The point that the present invention is greatly different from the conventional one is not only for power generation, but also for the entry of the Internet electronic money industry. This power generation was devised based on the technical field of the T era.

本発明は個々の発電機の出力を任意の場所へどの様に送電するかを選択する事は、従来の発電技術では殆ど不可能でした。本発明は図3−16三相交流の三軸位相変換並びに単相交流と直流三軸変換装置本体に活きた電子頭脳(人工知能)が組み込まれ、図3−14又は、図3−15プログラミング情報にて、送電先や送電出力など最も理想的な制御プログラミングを自動認識する事で例えば、都市型大停電などが発生した際、この設備が緊急電源発生装置の役割を果たす事も充分に可能な技術です。
特開2004−187346
発電機特性と電動機特性に優れ、インバータなど、周辺機器の小型化が可能な車両用発電電動機システムを得る発明で当方の発電構想とは大幅に異なります。 特開2004−112965
発電機の回転抵抗を可能な限り小さくし高出力を得ると共に、常時発電可能なので、走行時にも蓄電でき、且つ電力を供給することができる三相交流自転車用同期発電機及び電力供給装置を提供する。当方の発明と比べて自転車用発電機と自動車用発電機、活用の手段が本発明と異なります。 特開2003−180048
固定子巻線の出力用引出線周りの構造を工夫することにより、製造コストやファン騒音の低減が可能な車両用交流発電機を提供すること。当方の発明同じ自動車の発電機ですが、発電の電気の変換方式や発電の効率などが、基本的に異なります。 特開2002−354736
この発明は、冷却性および電気絶縁性を向上させ、風騒音を低減できる車両用交流発電機を得る。当方の発明同じ自動車の発電機ですが、発電の電気の変換方式や発電の効率などが、基本的に異なります。 特開2002−125329
発電状態に拘わらず表示ランプが点灯してしまうことを防止できる車両用発電制御装置を提供する。当方の発明は同じ自動車の発電機ですが、発電の電気の変換方式や発電の効率などが、基本的に異なります。 特開平11−164504
冷却性能を維持向上した上、冷却風と固定子巻線との干渉により発生するファン騒音を大幅に低減する車両用交流発電機を提供すること。当方の発明同じ自動車の発電機ですが、発電の電気の変換方式や発電の効率などが、基本的に異なります。 特開平08−294298
ランデル型界磁極を有する車両用同期発電機の振動、騒音を低減する。当方の発明同じ自動車の発電機ですが、発電の電気の変換方式や発電の効率などが、基本的に異なります。 特開平08−336239
低損失、大出力であり、しかも出力が増大する高出力条件時(例えば発電機が低温状態でバッテリ容量が低下している状態など)に励磁電流を制限可能な車両用交流発電機の制御装置を提供する。当方の発明同じ自動車の発電機ですが、発電の電気の変換方式や発電の効率などが、基本的に異なります
In the present invention, it has been almost impossible with conventional power generation technology to select how the output of each generator is transmitted to an arbitrary place. The present invention incorporates an electronic brain (artificial intelligence) incorporated in the three-phase AC three-axis phase conversion of FIG. 3-16 and the single-phase AC and DC three-axis conversion device body into FIG. 3-14 or FIG. 3-15 programming. By automatically recognizing the most ideal control programming such as power transmission destination and power transmission output by information, for example, when an urban power outage occurs, this equipment can fully function as an emergency power generator Technology.
JP 2004-187346 A
It is an invention that has excellent generator characteristics and motor characteristics, and that can be used to reduce the size of peripheral devices such as inverters, and it is very different from our power generation concept. JP 2004-112965 A
Providing a synchronous generator and power supply device for a three-phase AC bicycle that can reduce the rotational resistance of the generator as much as possible, obtain high output, and always generate electricity, so that it can store electricity while driving and supply power To do. Compared to our invention, bicycle generators and automobile generators, and the means of utilization are different from the present invention. JP2003-180048
To provide a vehicular AC generator capable of reducing manufacturing costs and fan noise by devising a structure around an output lead wire of a stator winding. Our invention It is the generator of the same car, but the conversion method of power generation and the efficiency of power generation are basically different. JP-A-2002-354736
The present invention provides a vehicular AC generator that improves cooling and electrical insulation and can reduce wind noise. Our invention It is the generator of the same car, but the conversion method of power generation and the efficiency of power generation are basically different. JP 2002-125329 A
Provided is a vehicle power generation control device capable of preventing a display lamp from being turned on regardless of a power generation state. Our invention is a generator of the same car, but the conversion method of electricity and the efficiency of generation are basically different. JP-A-11-164504
To provide an automotive alternator that maintains and improves cooling performance and significantly reduces fan noise generated by interference between cooling air and stator windings. Our invention It is the generator of the same car, but the conversion method of power generation and the efficiency of power generation are basically different. JP 08-294298 A
Reduces the vibration and noise of a vehicle synchronous generator having a Landel-type field pole. Our invention It is the generator of the same car, but the conversion method of power generation and the efficiency of power generation are basically different. JP 08-336239 A
A controller for a vehicle alternator that can limit the excitation current when the power loss is low and the output is large and the output is high (for example, when the generator is at a low temperature and the battery capacity is low). I will provide a. Our invention is the same automobile generator, but the conversion method of electricity and the efficiency of generation are basically different.

これまでの発電機は特別な電子式人工知能が搭載されて無く、停電時に自動的に立上げを致す程度でした。本発明は発電機が自分自身で現状を把握、適材適所の運転状況を完全自動で制御。更にインターネットを介す事で離れた個所から運転指令のやり取りが出来、例えば電力会社からの電気が停電事故や電力不足などの緊急時に、本発明の発電システムが設備されている事でこれらの災害や被害から回避したり、被害を最小限に食い止める事が可能な技術です。Previous generators were not equipped with special electronic artificial intelligence, and were able to start up automatically in the event of a power failure. In the present invention, the generator grasps the current situation by itself and controls the operation state of the right person in the right place automatically. In addition, operation commands can be exchanged from remote locations via the Internet. For example, in the event of an emergency such as a power outage accident or power shortage due to electricity from a power company, these disasters can be achieved by installing the power generation system of the present invention. It is a technology that can avoid or prevent damage from damage.

本発明は発電機と近年研究が盛んなインターネットやパソコンを融合する事で従来に無い技術革新が期待されます。例えば都市型大停電における災害時の被害は甚大な事と予測されます。この時に本発明の発電システムが有れば、被害を最小限に食い止める事が期待できます。更に山間地帯や離島など、電気が無かったり、供給が困難な場所へ容易に設置する事が可能。日本各地で電気が通ってない個所の撲滅作戦に大変に効果的な解決の手段です。(山間地帯で通信回線が無い場合は、携帯電話や衛星回線を活用する事でネットワークの講築は可能です。)The present invention is expected to bring about unprecedented technological innovation by fusing the generator with the Internet and personal computers, which have been researched in recent years. For example, the damage caused by a disaster due to an urban power outage is expected to be enormous. At this time, if there is a power generation system of the present invention, it can be expected that damage will be minimized. In addition, it can be easily installed in places where there is no electricity or supply is difficult, such as mountainous areas and remote islands. This is a very effective solution to the eradication operations in places where electricity is not available in various parts of Japan. (If there is no communication line in the mountainous area, it is possible to build a network by using a mobile phone or satellite line.)

本発明の効果として過剰に発電した電気は、例えばバッテリーなどに充電が出来ます。更に余った電気を電力会社へ有料で送電が可能な上、インターネットやパソコンで電子決済のやり取りも出来ます。この発明の効果として社会的貢献に甚大な活躍が期待できます。As an effect of the present invention, the excessively generated electricity can be charged into a battery, for example. In addition, surplus electricity can be transmitted to electric power companies for a fee, and electronic payments can be exchanged via the Internet or a personal computer. As an effect of this invention, great success can be expected in social contribution.

本発明がもたらす最良の形態として、設備が小型な上に高効率の発電能力を有する事から場合により小型パッケージ化も可能。都市型社会へ簡易型風力又は水力又は火力発電方式の図4の17と20の異なった大きさから成る多段式複合ファン。又、本図は2段式ですがその他に複数から成る段積みが可能です。羽根の形状や角度などを自在に変える事で、大きさから判断される以上の発電出力が取り出せます。As the best mode provided by the present invention, since the equipment is small and has a high-efficiency power generation capability, it can be made into a small package in some cases. Multi-stage composite fan consisting of 17 and 20 different sizes in FIG. 4 in a simple wind, hydro or thermal power generation system for urban society. In addition, this figure is a two-stage type, but other multiple stacks are possible. By freely changing the shape and angle of the blades, it is possible to extract more power output than is judged from the size.

本発明の実施例1として特定な施設、例えば一般住宅や団地の補助発電システムの確保、更に小規模〜中規模のニュー.エコロジータウン(循環型リサイクルをテーマとした自然環境衛生都市の事)などの常用発電又は、緊急用発電システム。無人の情報伝達端末装置を搭載した通信施設などの常用又は非常用発電システム、更には緊急用発電システムなど。As a first embodiment of the present invention, it is necessary to secure an auxiliary power generation system for a specific facility, for example, a general house or a housing complex. Regular power generation or emergency power generation system such as Ecology Town (natural environmental health city with the theme of recycling-type recycling). Regular or emergency power generation systems such as communication facilities equipped with unmanned information transmission terminal devices, and emergency power generation systems.

本発明は電力会社からの送電などが困難な場所の常用発電システム、又は、都市型大停電などの災害時における補助発電システムとして活用が期待されます。The present invention is expected to be used as a regular power generation system in places where it is difficult to transmit power from electric power companies, or as an auxiliary power generation system in the event of a disaster such as an urban power outage.

本発明の改善前の既設構成図 自動車用発電機を活用した発電システム改善後の新規の構成図自動車用発電機を活用した発電システムの構成図三相交流の三軸位相変換並びに単相交流と直流三軸変換装置正面図 発電機と羽根を組合わせた(多段式複合ファン、本図は2組で図示)The existing configuration diagram before the improvement of the present invention The new configuration diagram after the improvement of the power generation system using the automotive generator The configuration diagram of the power generation system using the automotive generator Three-axis AC conversion and single-phase AC conversion DC three-axis conversion device front view Combined generator and blades (multistage composite fan, this figure shows two sets) 本発明の上面図 発電機と羽根を組合わせた(多段式複合ファン、本図は2組で図示)  Top view of the present invention A generator and blades are combined (multistage composite fan, this figure shows two sets)

符号の説明Explanation of symbols

図1FIG.

1−発電機のセンターシャフトの部
2−発電機の発電極子の部(E1〜E3まで)
3−発電機の本体の部
4−発電機の三相交流電気から直流電気へ変換する電子機器の部
5−発電機の直流電気の取り出し端子の部
6−発電機の取りつけ台座の部
1-Center shaft portion of generator 2-Electrode electrode portion of generator (E1 to E3)
3-Main part of the generator 4-Electronic equipment part that converts the three-phase AC electricity to DC electricity of the generator 5-DC electricity extraction terminal part 6-Generator mounting base part

図2FIG.

1−発電機のセンターシャフトの部
2−発電機の発電極子の部(E1〜E3まで)
3−発電機の本体の部
4a−発電機の三相交流電気から高効率の三相交流変換電子機器の部
5−発電機の直流電気の取り出し端子の部
6−発電機の取りつけ台座の部
1-Center shaft portion of generator 2-Electrode electrode portion of generator (E1 to E3)
3-generator body part 4a-generator three-phase AC electricity to highly efficient three-phase AC conversion electronic equipment part 5-generator DC electricity extraction terminal part 6-generator mounting base part

図3FIG.

1−発電機のセンターシャフトの部
3−発電機の本体の部
7−発電機1の三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置へ入力する為の端子台1の部
8−発電機2の三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置へ入力する為の端子台2の部
9−発電機3の三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置へ入力する為の端子台3の部
10−三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置の直流電気の取り出し用端子1の部
11−三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置の直流電気の取り出し用端子2の部
12−三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置の直流電気の取り出し用端子3の部
13−三相交流電気を三軸位相変換並びに単相交流と直流三軸変換装置の交流電気の取り出し用端子1の部
14−インターネットにてWebプログラミング情報を変更する為の入力端末機器の部
15−インターネットで離れた場所の相互間で、発電機の出力などの様々な情報を交換する為の情報端末機器の部 NetSwt(ネットワークスイッチ端末の事)
16−三相交流の三軸位相変換並びに単相交流と直流三軸変換装置本体部
1-part of the center shaft of the generator 3-part 7 of the main body of the generator-terminal block 1 for inputting the three-phase AC electricity of the generator 1 to the three-axis phase conversion and single-phase AC and DC three-axis conversion device Part 8-Three-phase AC electricity of the generator 3 is converted into three-axis phase conversion and single-phase AC and DC three-axis converter is input. Part 9 of the terminal block 2-Three-phase AC electricity of the generator 3 is triaxial. Part 10 of the terminal block 3 for phase conversion and input to the single-phase AC and DC triaxial converter-terminal for three-phase AC conversion to three-phase AC conversion and DC electric extraction terminal of the single-phase AC and DC triaxial converter 1 part 11-three-phase alternating current electricity to three-axis phase conversion and single-phase alternating current and DC three-axis converter DC power extraction terminal 2 part 12-three-phase alternating current electricity to three-axis phase conversion and single-phase alternating current Part 3 of DC electricity takeout terminal 3 of DC triaxial converter device-Triaxial phase conversion of three phase AC electricity Between the single-phase AC and the AC electricity extraction terminal 1 part of the DC triaxial converter 14-the input terminal part 15 for changing the Web programming information on the Internet-between the remote locations on the Internet, NetSwt (network switch terminal) for information terminal equipment for exchanging various information such as generator output
16- Three-phase AC three-axis phase conversion and single-phase AC and DC three-axis converter main unit

図4FIG.

1−発電機のセンターシャフトの部
3−発電機の本体の部
17−水力や風力その他の発電などの複数から成る羽根の一組目の(今回は4枚羽根ですが、組み合わせ数は任意に変えられます)の部18−複数組みから成るファンの羽根を取りつけたシャフトバーの部
20−水力や風力その他の発電などの複数から成る羽根の二組目の(今回は4枚羽根ですが、組み合わせ数は任意に変えられます)の部
1-Generator center shaft part 3-Generator body part 17-First set of blades consisting of multiple components such as hydropower, wind power and other power generation (This time it is 4 blades, but the number of combinations is arbitrary Part 18-Shaft bar part 20 fitted with fan blades consisting of multiple sets-Second set of multiple blades such as hydropower, wind power and other power generation (this time it is 4 blades, The number of combinations can be changed arbitrarily)

図5FIG.

1−発電機のセンターシャフトの部
3−発電機の本体の部
17−水力や風力その他の発電などの複数から成る羽根の一組目の(今回は4枚羽根ですが、組み合わせ数は任意に変えられます)の部18−複数組みから成るファンの羽根を取りつけたシャフトバーの部
20−水力や風力その他の発電などの複数から成る羽根の二組目の(今回は4枚羽根ですが、組み合わせ数は任意に変えられます)の部
1-Generator center shaft part 3-Generator body part 17-First set of blades consisting of multiple components such as hydropower, wind power and other power generation (This time it is 4 blades, but the number of combinations is arbitrary Part 18-Shaft bar part 20 fitted with fan blades consisting of multiple sets-Second set of multiple blades such as hydropower, wind power and other power generation (this time it is 4 blades, The number of combinations can be changed arbitrarily)

Claims (6)

図1の自動車用発電機は一般的には三相交流式電気、例えば三相交流電気AC−18V又は三相交流電気AC−28Vを発電し、発電機の内部へ直流電気変換装置を通過する事で、直流電気の例えばDC−12V又はDC−24Vを出力が発生できる仕掛けですが、本発明は図1−4の三相交流から直流電気に変換する装置を取外し、図2−4aの高効率の三相交流電子変換機器と取り返る事で、より発電効率を高めた三相電気を発生する為の発電システムです。尚この発明は動力源として風力式.水力式.火力式.地熱式.波動式その他様々な媒体を介して電気エネルギーに変換する事が出来、更に図3の様に複数台から成る発電機を一台は風力に、一台は水力に、もう一台は火力発電のタービンなどマルチタスクな発電として使う事が可能です。この発電機の台数は特別な制約が無く、図3−16の三相交流の三軸位相変換並びに単相交流と直流三軸変換装置本体を色々組み合わせる事で発電機の台数を自由に選択が可能です。1 generally generates three-phase alternating current electricity, for example, three-phase alternating current electricity AC-18V or three-phase alternating current electricity AC-28V, and passes through a direct current electric converter inside the generator. This is a mechanism that can generate output of DC-12V or DC-24V, for example, but the present invention removes the device that converts the three-phase AC to DC electricity of FIG. It is a power generation system for generating three-phase electricity with higher power generation efficiency by replacing with efficient three-phase AC electronic conversion equipment. This invention is a wind power type as a power source. Hydraulic formula. Thermal formula. Geothermal type. It can be converted into electrical energy through wave-type and other various media. Furthermore, as shown in Fig. 3, one generator is composed of wind power, one is hydropower, and the other is thermal power generation. It can be used for multi-task power generation such as turbines. There are no special restrictions on the number of generators, and the number of generators can be freely selected by combining the three-phase AC three-axis phase conversion and the single-phase AC and DC three-axis converter main body shown in Fig. 3-16. Is possible. 図2−4a高効率の三相交流電子変換機器へ取り返る事で、従来に無い良質な三相交流電気の発電が出来、この電気を変圧器を介し、遠く離れた所へ電圧低下を押さえ送電をしたり、図3の三相交流の三軸位相変換機並びに単相交流の(AC−100V)を1組み、更に直流三軸変換装置(DC−12VやDC−24V)を3組取り出しましたが、その他これらの取り出した電気の数を、1組み又は複数組みの取り出しが容易に出来る発電です。Fig. 2-4a By returning to high-efficiency three-phase AC electronic conversion equipment, it is possible to generate unprecedented high-quality three-phase AC electricity, and this voltage is reduced far away via a transformer. Power transmission, take out one set of the three-phase AC three-axis phase converter and single-phase AC (AC-100V) of Fig. 3, and three sets of DC three-axis converter (DC-12V and DC-24V) However, it is the power generation that can easily take out one or more sets of these extracted electricity. 図3の発電機は3台使いましたが、このシステムは発電機の数を更に増設又は、減らす事が自在です。複数台を増設する場合、図3−16の三相交流の三軸位相変換並びに単相交流と直流三軸変換装置本体を発電機の数に応じて増設する事で、各種電気の取り出しを自由に組み合わす事が可能な発電です。Although three generators in Fig. 3 were used, this system can freely increase or decrease the number of generators. When adding multiple units, various types of electricity can be taken out freely by adding three-phase AC three-axis phase conversion and single-phase AC and DC three-axis converters according to the number of generators shown in Fig. 3-16. Power generation that can be combined with 図3の発電機を別の個所に設置する事で、全く異なった発電出力をニーズに応じた発電を、図3−14のWebプログラミングを変更するだけで、容易に異なった電気出力を取り出す事が可能です。又、Webプログラミングシステムは、離れたパソコンからインターネットを介し自在に遠隔制御が出来ます。遠く離れた場所からインターネットで金銭振り込み電子マネー決済などが出来ます。電子決済を確認後に適材適所の電気を送電する事が可能。更に、余った電気は近くの電力会社へ有料で送電する事が出来ます。この有料で送電された電力はインターネットを介す事で、自動決済が出来る電子商法の附加価値が付いたI.T戦略と電子マネービジネスの発明です。又、図3−15NetSwt(ネットワークスイッチ端末)を活用する事で、離れた場所で発電機の運転状態や運転状況など個々の発電機がどの様に動作.停止.休止などをインターネットでデーターロギィング(パソコンで記録管理する事を意味)情報として伝達、更に外部から任意に運転.停止.その他の情報のやり取りが可能。他には図3−(10 11 12)の接続端子で直流電気の出力をバッテリーなどへ直接充電を行う事で、二次的なバッテリーなどを利用した電源の活用も可能です。By installing the generator shown in Fig. 3 at a different location, it is possible to easily generate different electrical output by changing the Web programming shown in Fig. 3-14 to generate power according to your needs. Is possible. The web programming system can be remotely controlled from a remote computer via the Internet. You can make electronic money payments by transferring money over the Internet from a distance. After confirming electronic payment, it is possible to transmit electricity at the right place for the right person. Furthermore, surplus electricity can be transmitted to nearby power companies for a fee. This charged power is transmitted via the Internet, with the added value of the Electronic Commercial Code that allows automatic payment. Invention of T strategy and electronic money business. In addition, by utilizing Fig. 3-15 NetSwt (network switch terminal), how individual generators operate in a remote location such as the operating status and operating status of the generator. Stop. Data such as pauses are transmitted as data logging (meaning recording management with a personal computer) information on the Internet, and it can be operated arbitrarily from the outside. Stop. Other information can be exchanged. In addition, by directly charging the output of direct current electricity to the battery etc. with the connection terminal of Fig.3- (10 11 12), it is possible to use a power source using a secondary battery. 本発明は使わなく成った廃棄自動車のエンジン付属部品で自動車用発電機のリサイクル活用をします。自動車の発電機は小型計量の上に大きさから考えづらい高出力を取り出す事が出来ます。この発電機は新品の使用は勿論OKですが時代が要求するリサイクル感覚を考慮し、限りなく廃棄自動車の部品活用をする事で、少ない費用でより効果的な高出力.高効率の発電システムを作る事が出来、本発明は現代社会にマッチしたリサイクル発電装置です。The present invention makes it possible to recycle the power generator for automobiles with the engine accessory parts of discarded cars that are no longer used. The generator of the car can take out high output that is hard to think from the size on a small scale. This generator is OK to use a new one, of course, but considering the recycling sensation demanded by the times, by using the parts of the discarded car as much as possible, the output is more effective and less expensive. A highly efficient power generation system can be made, and the present invention is a recycling power generation device that matches the modern society. 本発明は小型で軽量の発電の為、近年、都市型社会が期待する簡易型風力又は水力や火力その他の発電方式、例えば簡易型火力発電の簡易型タービンなどを図4の17と20の異なった大きさから成る多段式複合ファン。本図は2段式の図示ですがその他に複数から成る段積みが可能です。羽根の形状や角度など個々に変える事で、大きさから判断される以上の発電出力が容易に取り出せます。羽根の仰角を変化する事で羽根へ加わる力を効率良く受ける事が可能な発明でも有ります。Since the present invention is small and light-weight power generation, a simplified wind power or a hydropower or thermal power generation system expected by an urban society in recent years, such as a simplified turbine for simplified thermal power generation, is different from 17 and 20 in FIG. Multi-stage composite fan of different sizes. This figure is a two-stage illustration, but other multiple stacks are possible. By changing the shape and angle of the blades individually, it is possible to easily extract the power generation output beyond the size. It is also an invention that can efficiently receive the force applied to the blade by changing the elevation angle of the blade.
JP2004247565A 2004-07-30 2004-07-30 Highly efficient power generating device utilizing automobile generator Pending JP2006050880A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101924221B1 (en) 2017-10-23 2018-11-30 (주)에코플러스 System and method for generator manufacturing that recycles gas engine for vehicles
JP2022166358A (en) * 2021-04-21 2022-11-02 三菱電機エンジニアリング株式会社 Grid-connected system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101924221B1 (en) 2017-10-23 2018-11-30 (주)에코플러스 System and method for generator manufacturing that recycles gas engine for vehicles
JP2022166358A (en) * 2021-04-21 2022-11-02 三菱電機エンジニアリング株式会社 Grid-connected system
JP7239632B2 (en) 2021-04-21 2023-03-14 三菱電機エンジニアリング株式会社 Grid-connected system

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