JP5984229B1 - Repair request system with means for confirming that supply is stopped - Google Patents

Repair request system with means for confirming that supply is stopped Download PDF

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JP5984229B1
JP5984229B1 JP2015143768A JP2015143768A JP5984229B1 JP 5984229 B1 JP5984229 B1 JP 5984229B1 JP 2015143768 A JP2015143768 A JP 2015143768A JP 2015143768 A JP2015143768 A JP 2015143768A JP 5984229 B1 JP5984229 B1 JP 5984229B1
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享史 中村
享史 中村
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享史 中村
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【課題】修復依頼システムを提供する。【解決手段】電力量計側器(11)の電源側スイッチ(S3)を操作オンに伴う待機電流に係る開放確認手段とし,電源側リモコン開閉器(S4)のオンに伴うゼロクロス開閉器(S5)はオフと,中性N側中性極スイッチ(S6)をオンとし,前記ゼロクロス開閉器(S5)に係る並列接続ネオンランプe5は,交流100Vでは70Vで陰極グローと負極が発光により,電圧35Vのドリフト電流e7でLEDe6が点灯の検知手段であって,ドリフト電流e7は,電源側に係る線路の帯電手段と,を備える。【選択図】図1A repair request system is provided. The power meter side switch (S3) of the watt-hour meter side device (11) is used as an open confirmation means for standby current when the operation is turned on, and the zero cross switch (S5) when the power source side remote control switch (S4) is turned on. ) Is turned off, and the neutral N-side neutral pole switch (S6) is turned on. The parallel-connected neon lamp e5 related to the zero cross switch (S5) has a voltage of 70V at AC 100V and the cathode glow and the negative electrode emit light. LEDe6 is a lighting detection means with 35V drift current e7, and drift current e7 includes a charging means for the line on the power supply side. [Selection] Figure 1

Description

本発明は,供給が停止状態の検知と,管理者における,発電機と操作手段での供給であって,需要家においては,供給が停止状態に伴うリミッター電流制限器(1)に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)に接続された主開閉器(2)はDC開放手段とし,主開閉器(2)に係る開放に伴う,一次送りブレーカ(7)負荷側(8)の検知操作手段2Aは,接地極E3−1に係るスイッチ(S1)をDCでオンと,分岐ブレーカ(3)負荷側(4)のL側幹線(L4)に係る帯電を放電する手段とし,前記放電に伴う一次送りブレーカ(7)負荷側(8)の検知操作手段3Aは,供給が停止状態の検知と放電手段において,接地極E3‐1に係るスイッチ(S1)はDCでオフと,放電の開放手段とし,供給が停止状態の確認手段を備えた,修復を依頼するシステム,に関するものである。 The present invention is the detection of the supply stop state, and the supply by the generator and the operating means for the administrator. In the consumer, the supply is connected to the limiter current limiter (1) accompanying the stop state. , Primary feed breaker (7) detection operation means 1A on the load side (8) detects that the supply is stopped, and the main switch (2) connected to the limiter current limiter (1) is a DC release means. When the main switch (2) is opened, the primary feed breaker (7) the load side (8) detection operation means 2A turns on the switch (S1) related to the ground electrode E3-1 at DC, and the branch breaker (3) The charge on the L side trunk line (L4) on the load side (4) is discharged, and the primary feed breaker (7) on the load side (8) is detected by the detection operation means 3A on the supply side. In the detection and discharge means, the switch (S1) related to the ground electrode E3-1 is turned off by DC and the discharge is released. And stage, the supply is provided with a check means in a stopped state, those systems relates to request repair.

従来技術は,供給が継続されている状態においての,地震における需要家において,放電の開放手段に伴う,一次送りブレーカ(7)負荷側(8)に係る電力量計側器(9)であって,前記一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量は,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,継続して計測値を収集と保存する手段を備えた,クラウドデータセンターに送信配信総合システム(特許文献1)と(特許文献2)とが知られている。 The prior art is a watt-hour meter (9) on the primary feed breaker (7) load side (8) associated with the discharge release means in the customer in the earthquake in the state of continuous supply. Thus, the amount of consumed electric power related to the detection operation means and the constant supply device related to the primary feed breaker (7) load side (8) is transferred to the load side (8) in the watt-hour meter side unit (9). A transmission / distribution integrated system (Patent Document 1) and (Patent Document 2) are known in a cloud data center that includes means for continuously collecting and storing measured values as digital power consumption for consumption.

また,従来技術は,供給が継続されている状態においての,分岐ブレーカ負荷側の端末機器における不良個所の検知は,各操作スイッチS1〜S6はオフとする手段を具備する構成であって, 手動オンに伴う負荷機器(27)の並列接続状態に係る点灯は,ゼロクロス開閉器(S5)オンに伴う負荷機器(27)における消費使用の電力量とし,電力量計側器(11)と計側収集保存送信機器(10)において,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量とし,共に継続して計測値を収集と保存する手段を備えた,クラウドデータセンターに送信配信総合システム(特許文献1)と(特許文献2)とが知られている。 Further, the conventional technology is configured to include a means for turning off each of the operation switches S1 to S6 for detecting a defective portion in the terminal device on the branch breaker load side in a state where the supply is continued. lighting of the parallel connection state of the load device with the oN (27), the zero-crossing switch (S5) and the amount of power consumption used in the load device with the one (27), electricity meter side unit (11) total In a cloud data center equipped with a means for collecting and storing measured values continuously, using digital power for consumption related to the branch breaker (3) load side (4) in the side collection storage transmission device (10) A transmission and distribution integrated system (Patent Document 1) and (Patent Document 2) are known.

特許第5731691号公報Japanese Patent No. 571691 特許第5770902号公報Japanese Patent No. 5770902

しかしながら,地震における需要家において,従来技術では,供給が継続されている状態においての,地震の検知とリミッター電流制限器に接続の主幹の開放と,放電スイッチの投入及び開放で,幹線の帯電を放電とし,次に,分岐ブレーカの開放は,検知確認と回路の開放とで構成されている。 However, in the case of earthquake customers, the conventional technology charges the main line by detecting the earthquake and opening the trunk connected to the limiter current limiter and turning on and off the discharge switch in the state where the supply continues. Next, the opening of the branch breaker consists of detection confirmation and circuit opening.

次に,従来技術においては,供給が継続されている状態においての,電気用品(測定対象体)を用いた漏れ電流箇所を測定と検知であって,分岐ブレーカの負荷側における回路に係る検知確認と,分岐ブレーカの開放は,検知確認と回路の開放とで構成されている。
また,分岐ブレーカ負荷側の端末機器における不良個所の検知は,各操作スイッチS1〜S6はオフとする手段を具備する構成となっている。
Next, in the conventional technology, in the state where the supply is continued, the leakage current location using the electrical appliance (measurement object) is measured and detected, and the detection confirmation related to the circuit on the load side of the branch breaker is performed. And the opening of the branch breaker consists of detection confirmation and circuit opening.
Moreover, the detection of the defective part in the terminal device on the branch breaker load side is configured to include means for turning off each of the operation switches S1 to S6.

また,従来技術においては,供給が継続されている状態においての,手動オンに伴う負荷機器(27)の並列接続状態に係る点灯は,ゼロクロス開閉器(S5)オンに伴う負荷機器(27)における消費使用の電力量とし,電力量計側器(11)と計側収集保存送信機器(10)において,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量とし,共に継続して計測値を収集と保存する手段を備えた,クラウドデータセンターに送信配信総合システム(特許文献1)と(特許文献2)とが知られている。 Further, in the prior art, of the state where the supply is continued, the lighting of the parallel connection state of the load device with the manual ON (27), the zero-crossing switch (S5) a load device with the one (27) In the watt-hour meter (11) and the meter-side collecting / sending / transmitting device (10), it is assumed that the digital power is consumed and used on the branch breaker (3) load side (4). Thus, a transmission and distribution integrated system (Patent Document 1) and (Patent Document 2) are known in a cloud data center equipped with means for collecting and storing measured values.

しかしながら,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段とし,電力量計側器(11)と計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量と,共に継続して計測値を収集と保存する手段を備えた,修復依頼システムと,クラウドデータセンターに送信配信総合システムには成っていない,本発明は,これらの問題点を解決するシステムを提供することを目的とする。 However, when the supply is stopped, and the administrator uses the generator and the operating means as the supply means, the watt-hour meter (11) and the meter-side collecting / storing / transmitting device (10) are operable current values. a measurement display means, a branch breakers (3) the load side (4) digital electric energy consumption used in accordance with, comprising a means to save the both continue to collect measurements, the repair request system, cloud data not in a transmit distribution overall system to the center, the present invention aims to provide a system that solves these problems.

上記目的を達成するため,本発明の請求項1では,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,需要家側においては,供給が停止状態に伴うリミッター電流制限器(1)に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)に接続された主開閉器(2)と,引き込み開閉器とはDC開放手段とし,主開閉器(2)に係る開放に伴う,一次送りブレーカ(7)負荷側(8)の検知操作手段2Aは,接地極E3−1に係るスイッチ(S1)をDCでオンと,分岐ブレーカ(3)負荷側(4)のL側幹線(L4)に係る,帯電を放電する手段とし,放電に伴う一次送りブレーカ(7)負荷側(8)の検知操作手段3Aは,供給が停止状態の検知手段と放電手段において,接地極E3‐1に係るスイッチ(S1)はDCでオフと,放電の開放手段とし,供給が停止状態の確認手段を備えた,修復依頼システム。 To achieve the above object, in claim 1 of the present invention, a detection supply is stopped, the manager, a means of supplying the generator with the operating means, in the customer side, the supply is stopped The detection operation means 1A on the primary feed breaker (7) load side (8) connected to the limiter current limiter (1) according to the state detects that the supply has stopped, and the limiter current limiter (1) The connected main switch (2) and the pull-in switch are DC opening means, and the detection operation means 2A on the primary feed breaker (7) load side (8) accompanying opening of the main switch (2) is The switch (S1) related to the grounding electrode E3-1 is turned on by DC, and the branch breaker (3) is used as a means for discharging the charge on the L side trunk line (L4) on the load side (4). The detection operation means 3A on the breaker (7) load side (8) is connected to the detection means and the discharge means in the supply stop state. Te, the switch (S1) according to the ground electrode E3-1 is and off DC, and discharge opening means, supply comprising a check means stopped, repair request system.

請求項2の発明は,請求項1において,供給が停止状態に伴う引き込み開閉器の開放手段と,放電の開放手段を具備する構成に伴う,管理者における,発電機と操作手段での供給手段であって,前記供給手段は,一次送りブレーカ(7)負荷側(8)に係る電力量計側器(9)においては,一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量とし,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段とし,継続して計測値を収集と保存する手段を備えた,修復依頼システム。 The invention according to claim 2, in claim 1, due to the configuration in which supply is provided with opening means of the retraction switch associated stopped, the opening means of the discharge, the supply in the administrator, the generator operating means In the watt-hour meter side unit (9) related to the primary feed breaker (7) load side (8), the supply means is a detection operation related to the primary feed breaker (7) load side (8). the amount of power consumption used according to the means and constantly supply equipment, and have contact to the power meter side device (9), and digital power amount of consumption use according to the load side (8), a total of side collection stored transmission device (10 in), operable current value and measurement display means, with a means to store and collect the measured value continuously, repair request system.

請求項3の発明は,請求項2において,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,以降の操作は,並列接続状態(20)に係る線路の帯電手段に伴う電流検知(51)と,漏れ接続状態直列(21)に係る線路の帯電手段に伴う電流検知(51)と,帯電検知に伴う分岐回路遮断手段とし,回路遮断された分岐ブレーカ(52)の負荷側(53)に係る回路開放に伴う消灯の検知手段と,各操作スイッチ(S1)〜(S6)に係る開放手段と,入力側に切り替わり手段とし,リミッター電流制限器(1)に接続された主開閉器(2)に係る再投入オン手段と,一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量は,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,前記負荷側(8)に係る消費使用のデジタル電力量と,継続して計測値を収集と保存する手段を備えた,修復依頼システム。 The invention of claim 3, in claim 2, and detecting supply is stopped, the manager, a means of supplying the generator with the operating means, subsequent steps, the parallel connection state (20) a current detection caused by the charging means according line (51), current sensing with the band conductor means engaging Ru line leakage connection state series (21) and (51), a branch circuit breaking means associated with charging detection circuit breaking Detection means for turning off the circuit on the load side (53) of the branched branch breaker (52), the opening means for the operation switches (S1) to (S6), and the switching means for the input side. Re-on on means related to the main switch (2) connected to the limiter (1), detection operation means related to the primary feed breaker (7) load side (8), and power consumption for the constant supply equipment In the watt-hour meter (9), the amount is consumed and used on the load side (8). In the meter-side collection / storage / transmission device (10), the operable current value is measured and displayed, and the digital power consumed and consumed on the load side (8) is continuously collected. equipped with the means to store and repair request system.

請求項4の発明は,請求項3において,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,待機電流に係る省エネスイッチ手段を具備する構成は,主開閉器(2)に係る再投入オン手段に伴う,開放された各操作スイッチ(S1)〜(S6)に係る開放確認手段と,手動投入手段であって,以降の操作は,電力量計側器(11)の電源側スイッチ(S3)を操作オンに伴う待機電流に係る開放確認手段とし,電源側リモコン開閉器(S4)のオンに伴うゼロクロス開閉器(S5)はオフと,中性N側中性極スイッチ(S6)をオンとし,前記ゼロクロス開閉器(S5)に係る並列接続ネオンランプe5は,交流100Vでは70Vで陰極グローと負極が発光により,電圧35Vのドリフト電流e7でLEDe6が点灯の検知手段であって,ドリフト電流e7は,電源側に係る線路の帯電手段を備えた,修復依頼システム。 The invention according to claim 4, in claim 3, and detect supply is stopped, the manager, a means of supplying the generator with the operating means, the arrangement comprising a energy saving switch means according to the standby current , An open confirmation means for each of the opened operation switches (S1) to (S6), and a manual turning-on means associated with the re-turn-on means for the main switch (2). The power supply side switch (S3) of the meter side device (11) is used as an open check means for standby current when the operation is turned on, and the zero cross switch (S5) when the power supply side remote control switch (S4) is turned on is turned off, The N-side neutral pole switch (S6) is turned on, and the parallel-connected neon lamp e5 related to the zero-cross switch (S5) is 70V at 100V AC, the cathode glow and the negative electrode emit light, and the drift current e7 is 35V. LEDe6 is a lighting detection means Te, drift current e7 is equipped with a charging Hand stage of the line of the power supply side, repair request system.

請求項5の発明は,請求項4において,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,分岐ブレーカ(3)負荷側(4)線路の端末接地極付コンセント(19)には,操作を目的とした,プラグ接続測定対象体(21)の負荷機器(27)に係る電源側スイッチ(S8)であって,手動オンに伴う負荷機器(27)の並列接続状態に係る点灯は,ゼロクロス開閉器(S5)を操作オンに伴う負荷機器(27)における消費使用の電力量とし,電力量計側器(11)と計側収集保存送信機器(10)においては,操作可能電流値を計測手段と,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量と,共に継続して計測値を収集と保存する手段を備えた,修復依頼システム。 The invention of claim 5, in claim 4, and detecting supply is stopped, the manager, a means of supplying the generator with the operating means, branch breakers (3) the load side (4) lines The outlet with terminal ground electrode (19) is a power supply side switch (S8) related to the load device (27) of the plug connection measurement object (21) for the purpose of operation, and includes a load device ( lighting of the parallel connection state of 27), the electric energy consumption used in the load device with zero crossing switch to (S5) in the operation on (27), electricity meter side unit (11) in total side collecting save transmission in apparatus (10), a measuring unit operable current value, and branch breakers (3) the load side (4) digital electric energy consumption used in accordance with, the means to store and both continue to collect measurements Equipped with a repair request system.

本発明の請求項1では,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,需要家側においては,供給が停止状態に伴うリミッター電流制限器(1)に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)に接続された主開閉器(2)と,引き込み開閉器とはDC開放手段とし,主開閉器(2)に係る開放に伴う,一次送りブレーカ(7)負荷側(8)の検知操作手段2Aは,接地極E3−1に係るスイッチ(S1)をDCでオンと,分岐ブレーカ(3)負荷側(4)のL側幹線(L4)に係る,帯電を放電する手段とし,放電に伴う一次送りブレーカ(7)負荷側(8)の検知操作手段3Aは,供給が停止状態の検知手段と放電手段において,接地極E3‐1に係るスイッチ(S1)はDCでオフと,放電の開放手段とし,供給が停止状態の確認手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムは,供給が停止状態の検知手段と,管理者における,発電機と操作手段での供給手段に移行し易くなる効果がある。 According to claim 1 of the present invention, a detection supply is stopped, the manager, a means of supplying the generator with the operating means, in the customer side, the limiter current limiter which supply due to a stopped state The primary feed breaker (7) connected to (1), the detection operation means 1A on the load side (8) detects the supply stop state, and the main switch connected to the limiter current limiter (1) ( 2) and the lead-in switch are DC opening means, and the detection operation means 2A on the primary feed breaker (7) load side (8) accompanying opening of the main switch (2) is connected to the grounding electrode E3-1. When the switch (S1) is turned on at DC, the branch breaker (3) is used as a means for discharging the charge on the L side trunk line (L4) on the load side (4), and the primary feed breaker (7) on the load side (7 The detection operation means 3A of 8) is related to the ground electrode E3-1 in the detection means and the discharge means in the supply stop state. Overall system switch (S1) is and off DC, and discharge opening means, supply comprising a check means stopped, and the repair request system, and connect to the Internet, to deliver the transmission according to the cloud data center This has the effect of facilitating the transition to the detecting means in the supply stop state and the supplying means of the generator and the operating means in the manager.

請求項2の発明は、請求項1において,供給が停止状態に伴う引き込み開閉器の開放手段と,放電の開放手段を具備する構成に伴う,管理者における,発電機と操作手段での供給手段であって,前記供給手段は,一次送りブレーカ(7)負荷側(8)に係る電力量計側器(9)においては,一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量とし,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段とし,継続して計測値を収集と保存する手段を備えた,修復依頼システムは,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。
よって,管理者における,発電機と操作手段での供給と,前記一次送りブレーカ(7)負荷側(8)に係る消費使用のデジタル電力量と,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステムになる効果がある。
The invention according to claim 2, in claim 1, due to the configuration in which supply is provided with opening means of the retraction switch associated stopped, the opening means of the discharge, the supply in the administrator, the generator operating means In the watt-hour meter side unit (9) related to the primary feed breaker (7) load side (8), the supply means is a detection operation related to the primary feed breaker (7) load side (8). the amount of power consumption used according to the means and constantly supply equipment, and have contact to the power meter side device (9), and digital power amount of consumption use according to the load side (8), a total of side collection stored transmission device (10 in), operable current value and measurement display means, with a means to store and collect the measured value continuously, repair request system, and connect to the Internet to send and deliver according to cloud data center Become a comprehensive system.
Therefore, the administrator, the supply of the generator and the operating unit, the breaker (7) digital electric energy consumption used according to the load side (8) the primary feed, and connected to the Internet, the cloud data center, consumed There is an effect that the system is provided with a means for collecting and storing digital power consumption data and charging data.

請求項3の発明は,請求項2において,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,以降の操作は,並列接続状態(20)に係る線路の帯電手段に伴う電流検知(51)と,漏れ接続状態直列(21)に係る線路の帯電手段に伴う電流検知(51)と,帯電検知に伴う分岐回路遮断手段とし,回路遮断された分岐ブレーカ(52)の負荷側(53)に係る回路開放に伴う消灯の検知手段と,各操作スイッチ(S1)〜(S6)に係る開放手段と,入力側に切り替わり手段とし,リミッター電流制限器(1)に接続された主開閉器(2)に係る再投入オン手段と,一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量は,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,前記負荷側(8)に係る消費使用のデジタル電力量と,継続して計測値を収集と保存する手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。よって,管理者における,発電機と操作手段での供給と,前記一次送りブレーカ(7)負荷側(8)に係る消費使用のデジタル電力量と,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステムになる効果がある。 The invention of claim 3, in claim 2, and detecting supply is stopped, the manager, a means of supplying the generator with the operating means, subsequent steps, the parallel connection state (20) a current detection caused by the charging means according line (51), current sensing with the band conductor means engaging Ru line leakage connection state series (21) and (51), a branch circuit breaking means associated with charging detection circuit breaking Detection means for turning off the circuit on the load side (53) of the branched branch breaker (52), the opening means for the operation switches (S1) to (S6), and the switching means for the input side. Re-on on means related to the main switch (2) connected to the limiter (1), detection operation means related to the primary feed breaker (7) load side (8), and power consumption for the constant supply equipment In the watt-hour meter (9), the amount is consumed and used on the load side (8). In the meter-side collection / storage / transmission device (10), the operable current value is measured and displayed, and the digital power consumed and consumed on the load side (8) is continuously collected. and equipped with the means to save, and the repair request system, and connect to the Internet, become a comprehensive system to send and deliver in accordance with the cloud data center. Therefore, the administrator, the supply of the generator and the operating unit, the breaker (7) digital electric energy consumption used according to the load side (8) the primary feed, and connected to the Internet, the cloud data center, consumed There is an effect that the system is provided with a means for collecting and storing digital power consumption data and charging data.

請求項4の発明は,請求項3において,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,待機電流に係る省エネスイッチ手段を具備する構成は,主開閉器(2)に係る再投入オン手段に伴う,開放された各操作スイッチ(S1)〜(S6)に係る開放確認手段と,手動投入手段であって,以降の操作は,電力量計側器(11)の電源側スイッチ(S3)を操作オンに伴う待機電流に係る開放確認手段とし,電源側リモコン開閉器(S4)のオンに伴うゼロクロス開閉器(S5)はオフと,中性N側中性極スイッチ(S6)をオンとし,前記ゼロクロス開閉器(S5)に係る並列接続ネオンランプe5は,交流100Vでは70Vで陰極グローと負極が発光により,電圧35Vのドリフト電流e7でLEDe6が点灯の検知手段であって,ドリフト電流e7は,電源側に係る線路の帯電手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。 The invention according to claim 4, in claim 3, and detect supply is stopped, the manager, a means of supplying the generator with the operating means, the arrangement comprising a energy saving switch means according to the standby current , An open confirmation means for each of the opened operation switches (S1) to (S6), and a manual turning-on means associated with the re-turn-on means for the main switch (2). The power supply side switch (S3) of the meter side device (11) is used as an open check means for standby current when the operation is turned on, and the zero cross switch (S5) when the power supply side remote control switch (S4) is turned on is turned off, The N-side neutral pole switch (S6) is turned on, and the parallel-connected neon lamp e5 related to the zero-cross switch (S5) is 70V at 100V AC, the cathode glow and the negative electrode emit light, and the drift current e7 is 35V. LEDe6 is a lighting detection means Te, drift current e7 is equipped with a charging Hand stage of the line of the power supply side, and repair request system, and connect to the Internet, the overall system for delivering a transmission according to the cloud data center.

請求項5の発明は,請求項4において,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,分岐ブレーカ(3)負荷側(4)線路の端末接地極付コンセント(19)には,操作を目的とした,プラグ接続測定対象体(21)の負荷機器(27)に係る電源側スイッチ(S8)であって,手動オンに伴う負荷機器(27)の並列接続状態に係る点灯は,ゼロクロス開閉器(S5)を操作オンに伴う負荷機器(27)における消費使用の電力量とし,電力量計側器(11)と計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量と,共に継続して計測値を収集と保存する手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。
よって,管理者における,発電機と操作手段での供給と,前記分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量は,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステムになる効果がある。
The invention of claim 5, in claim 4, and detecting supply is stopped, the manager, a means of supplying the generator with the operating means, branch breakers (3) the load side (4) lines The outlet with terminal ground electrode (19) is a power supply side switch (S8) related to the load device (27) of the plug connection measurement object (21) for the purpose of operation, and includes a load device ( lighting of the parallel connection state of 27), the electric energy consumption used in the load device with zero crossing switch to (S5) in the operation on (27), electricity meter side unit (11) in total side collecting save transmission in apparatus (10), a measurement display means operable current value, branch breakers (3) and the digital power amount of the load side (4) to the consumer use of, means to store and both continue to collect measurements with a, and the repair request system, and connection to the Internet, cloud data cell Become a comprehensive system to send and deliver according to the coater.
Therefore, the administrator, the supply of the generator and the operating unit, the digital electric energy consumption used according the the branch breakers (3) the load side (4) includes a connection to the Internet, the cloud data center, using consumption There is an effect that it becomes a system provided with a means for collecting and storing digital electric energy data and charging data.

供給が停止状態を検知と主開閉器と引き込み開閉器に係るDC開放手段と放電の開放手段とは,需要家における,供給が停止状態の検知と消費使用のデジタル電力量データを備えたシステム構成図。DC open means and discharge open means related to main switch and pull-in switch for detecting supply stop state, system configuration including detection of supply stop state and consumption-use digital power amount data in consumer Figure. 管理者における,発電機と操作手段での供給と,負荷側(8)に係る消費使用のデジタル電力量は,インターネットに接続と, クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステム構成図。In the administrator, the supply of the generator and the operating unit, the digital electric energy consumption used according to the load side (8), and a connection to the Internet, the cloud data center, the consumption use of the digital power amount data collection The system block diagram provided with the means to preserve | save and charging data. 管理者における,発電機と操作手段での供給と,負荷側(4)に係る消費使用のデジタル電力量は,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステム構成図。In the administrator, the supply of the generator and the operating unit, the load-side digital electric energy consumption used according to (4), and a connection to the Internet, the cloud data center, the consumption use of the digital power amount data collection The system block diagram provided with the means to preserve | save and charging data.

図1記載は,発電機の入力コンセントと開閉器,接続幹線,切換え開閉器,分岐幹線,引き込み開閉器,分岐幹線,リミッター電流制限器(1)には,発電機の供給入力側手段とし,主幹線の供給入力手段には,接続幹線,引き込み開閉器,分岐幹線,リミッター電流制限器(1)とし,分岐幹線に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)の分岐幹線に接続された主開閉器(2)と,引き込み開閉器とはDC開放手段と放電の開放手段とは,需要家における,供給が停止状態の検知に伴う消費使用のデジタル電力量データを備えた,修復依頼システムの構成図を用いて,本発明の,実施の形態に伴う構成と,以降の操作手段を説明する。 Fig. 1 shows the generator input outlet and switch, connecting trunk line, switching switch, branch trunk line, lead-in switch, branch trunk line, limiter current limiter (1) as the supply input side means of the generator, The supply input means for the main trunk line is a connection trunk line, lead-in switch, branch trunk line, limiter current limiter (1), and the primary feed breaker (7) load side (8) detection operation means connected to the branch trunk line 1A is a main switch (2) connected to the branch main line of the limiter current limiter (1) when the supply is detected to be stopped; a pull-in switch is a DC release means and a discharge release means; in consumer, supply with digital electric energy consumption data used with the detection of the stopped state, by using the configuration diagram of a repair request system, of the present invention, the structure associated with the embodiment, the following operations Means will be described.

.本発明の請求項1では,供給が停止状態の検知と,管理者における,発電機と操作手段での,供給の実施手段であって,
2.図1記載,需要家側においては,供給が停止状態に伴うリミッター電流制限器(1)に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)に接続された主開閉器(2)と,引き込み開閉器とは,DC開放手段となる。
3.次に,前記主開閉器(2)に係る開放に伴う,一次送りブレーカ(7)負荷側(8)の検知操作手段2Aは,接地極E3−1に係るスイッチ(S1)をDCでオンと,分岐ブレーカ(3)負荷側(4)のL側幹線(L4)に係る,帯電を放電する手段とし,
4.放電に伴う一次送りブレーカ(7)負荷側(8)の検知操作手段3Aは,供給が停止状態の検知と放電手段において,接地極E3‐1に係るスイッチ(S1)はDCでオフと,放電の開放手段とし,供給が停止状態の確認手段を備えた,修復依頼システムとなる。
1 . According to claim 1 of the present invention, a detection supply is stopped, the manager, of the generator and the operating means, a means for implementing the supply,
2. As shown in FIG. 1, on the customer side, the detection operation means 1A on the primary feed breaker (7) load side (8) connected to the limiter current limiter (1) when the supply is stopped is in the supply stopped state. The main switch (2) connected to the limiter current limiter (1) and the lead-in switch serve as DC open means.
3. Next, the detection operation means 2A on the primary feed breaker (7) load side (8) accompanying the opening related to the main switch (2) turns on the switch (S1) related to the ground electrode E3-1 by DC. , Branch breaker (3) load side (4) L side trunk line (L4) as means for discharging the charge,
4). The primary feed breaker (7) associated with the discharge (7) The detection operation means 3A on the load side (8) detects that the supply is stopped and the discharge means, and the switch (S1) related to the ground electrode E3-1 is off at DC, the opening means, the supply is provided with a check means of the stop state, the repair request system.

.請求項2の発明は,請求項1において,供給が停止状態に伴う引き込み開閉器の開放と,放電の開放手段を具備する構成に伴う,図2記載の管理者における,発電機と操作手段での供給の実施手段であって,
2.前記供給手段は,一次送りブレーカ(7)負荷側(8)に係る電力量計側器(9)においては,前記一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量とし,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,
3.計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,継続して計測値を収集と保存する手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。
4.よって,管理者における,発電機と操作手段での供給の実施手段と,前記一次送りブレーカ(7)負荷側(8)に係る消費使用のデジタル電力量は,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステムとなる。
1 . The invention according to claim 2, wherein in the section 1, supply and the opening of the pull switch associated to the stop state, due to the configuration having a opening means of the discharge, the manager of FIG. 2, the generator and the operating means Means for carrying out the supply in
2. In the watt-hour meter side unit (9) related to the primary feed breaker (7) load side (8), the supply means includes the detection operation means and the constant supply related to the primary feed breaker (7) load side (8). the amount of power consumption used according to the equipment and have your power meter side device (9), and digital power amount of consumption use according to the load side (8),
3. In total side collecting save transmission device (10), and a measurement display means operable current value, with a means to store and collect the measured value continuously, the repair request system, and connection to the Internet, cloud Become a comprehensive system for data center transmission and distribution.
4). Therefore, the administrator, the generator and the supply of implementation hand stage of the operation means, a digital electric energy consumption used in accordance with the primary feed breaker (7) load (8) includes a connection to the Internet, cloud In the data center, it becomes a system having means for collecting and storing digital power consumption data for consumption, and charging data.

.請求項3の発明は,請求項2において,図2記載の供給が停止状態の検知と,管理者における,発電機と操作手段での供給の実施手段であって,
6.以降の操作は,並列接続状態(20)に係る線路の帯電手段に伴う電流検知(51)と,漏れ接続状態直列(21)に係る線路の帯電手段に伴う電流検知(51)と,帯電検知に伴う分岐回路遮断手段とし,
7.回路遮断された分岐ブレーカ(52)の負荷側(53)に係る回路開放に伴う消灯の検知手段と,各操作スイッチ(S1)〜(S6)に係る開放手段と,入力側に切り替わり手段とし,リミッター電流制限器(1)に接続された,主開閉器(2)に係る再投入オン手段とし,
8.一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量は,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,
9.計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,前記負荷側(8)に係る消費使用のデジタル電力量と,継続して計測値を収集と保存する手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。10.よって,管理者における,発電機と操作手段での供給の実施手段と,前記一次送りブレーカ(7)負荷側(8)に係る消費使用のデジタル電力量は,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステムとなる。
5 . The invention of claim 3 is the means for carrying out the detection of the supply stop state shown in FIG. 2 and the supply by the generator and the operating means in the manager in claim 2 ,
6). Subsequent steps, the current detection due to the charging means of the line according to the parallel connection state (20) (51), and current sensing with the band conductor means engaging Ru line leakage connection state series (21) (51), As a branch circuit cutoff means for charging detection,
7). The circuit breaker (52) of the branch breaker (52) is turned off when the circuit is opened on the load side (53), the opening means of each operation switch (S1) to (S6), and the switching means to the input side, As re-on on means for the main switch (2) connected to the limiter current limiter (1),
8). The primary consumption breaker (7) on the load side (8), the consumption power consumption for the detection operation means and the constant supply device is the consumption consumption for the load side (8) in the watt hour meter (9). Of digital power,
9. In total side collecting save transmission device (10), a measurement display means operable current value, and the digital electric energy consumption used according to the load side (8), means to store and collect the measurement values continuously with, and the repair request system, and connect to the Internet, become a comprehensive system to send and deliver in accordance with the cloud data center. 10. Therefore, the administrator, and execution means for supplying the generator with the operating means, the digital electric energy consumption used in accordance with the primary feed breaker (7) load (8) includes a connection to the Internet, cloud data centers In the above, the system is provided with means for collecting and storing digital power consumption data for consumption, and charging data.

.請求項4の発明は,請求項3において,図3記載の供給が停止状態の検知と,管理者における,発電機と操作手段での供給の実施手段であって,
2.待機電流に係る省エネスイッチ手段を具備する構成は,主開閉器(2)に係る再投入オン手段に伴う,開放された各操作スイッチ(S1)〜(S6)に係る開放確認手段と,手動投入手段であって,
3.以降の操作は,電力量計側器(11)の電源側スイッチ(S3)を操作オンに伴う待機電流に係る開放確認手段とし,電源側リモコン開閉器(S4)のオンに伴うゼロクロス開閉器(S5)はオフと,中性N側中性極スイッチ(S6)をオンとし,前記ゼロクロス開閉器(S5)に係る並列接続ネオンランプe5は,交流100Vでは70Vで陰極グローと負極が発光により,電圧35Vのドリフト電流e7でLEDe6が点灯の検知手段であって,
4.ドリフト電流e7は,電源側に係る線路の帯電手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。
1 . The invention of claim 4 is the means for detecting the supply stop state of FIG. 3 according to claim 3 and for supplying by the generator and the operating means in the manager,
2. The configuration comprising the energy saving switch means related to the standby current includes an open confirmation means related to each of the opened operation switches (S1) to (S6), and a manual input corresponding to the re-turn-on means related to the main switch (2). Means,
3. In the subsequent operations, the power-side switch (S3) of the watt-hour meter side unit (11) is used as an opening confirmation means related to the standby current when the operation is turned on, and the zero cross switch (when the power-side remote control switch (S4) is turned on ( S5) is turned off and the neutral N-side neutral switch (S6) is turned on, and the parallel-connected neon lamp e5 related to the zero cross switch (S5) is 70V at AC 100V and the cathode glow and negative electrode emit light, LEDe6 is a lighting detection means with a drift current e7 of voltage 35V,
4). Drift current e7 is equipped with a charging Hand stage of the line of the power supply side, and repair request system, and connect to the Internet, the overall system for delivering a transmission according to the cloud data center.

.請求項5の発明は,請求項4において,図3記載の供給が停止状態の検知と,管理者における,発電機と操作手段での供給の実施手段であって,
6.分岐ブレーカ(3)負荷側(4)線路の端末接地極付コンセント(19)には,操作を目的とした,プラグ接続測定対象体(21)の負荷機器(27)に係る電源側スイッチ(S8)であって,
7.手動オンに伴う負荷機器(27)の並列接続状態に係る点灯は,ゼロクロス開閉器(S5)を操作オンに伴う負荷機器(27)における消費使用の電力量とし,電力量計側器(11)と計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量と,共に継続して計測値を収集と保存する手段を備えた,修復依頼システムと,インターネットに接続とし,クラウドデータセンターに係る送信と配信する総合システムになる。8.よって,管理者における,発電機と操作手段での供給の実施手段と,前記分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量は,インターネットに接続と,クラウドデータセンターにおいて,消費使用のデジタル電力量データとし,収集と保存する手段と,課金データを備えたシステムとなる。
5 . The invention of claim 5 is the means for detecting the supply stop state shown in FIG. 3 according to claim 4 and for the supply by the generator and the operating means in the manager,
6). The branch breaker (3) load side (4) power outlet side switch (S8) related to the load device (27) of the plug connection measurement object (21) is connected to the outlet (19) of the terminal grounding pole on the line. ) And
7). Lighting of the parallel connection state of the manual on the accompanying load device (27), the electric energy consumption used in the load device with zero crossing switch to (S5) in the operation on (27), energy meter side (11 ) And the meter-side collecting / storing / transmitting device (10), the operable current value is continuously measured together with the measurement display means and the digital power consumed and consumed on the branch breaker (3) load side (4). equipped with the means to save and collect, and the repair request system, and connect to the Internet, become a comprehensive system to send and deliver in accordance with the cloud data center. 8). Therefore, the administrator, and execution means for supply of the generator and the operating unit, the branch breakers (3) load-side digital electric energy consumption used according to (4) includes a connection to the Internet, cloud data centers In the above, the system is provided with means for collecting and storing digital power consumption data for consumption, and charging data.

1.図2記載の供給が停止状態と,管理者における,発電機と操作手段での供給の実施手段において,
2.以降の操作は,回路開放された分岐ブレーカ(52)に係る入力側は(X)とし,切り替わり手段において,供給入力に伴う操作手段と,直列接続状態と並列接続状態における構成であって,
3.回路開放された分岐ブレーカ(52)おいては,分電盤内機器となるので開放確認と,分岐ブレーカ(3)負荷側(4)の線路(4L)と(4N)の間に設置した,クリップ測定対象体(20)に係る,並列接続状態における構成を備えた,修復依頼システムになる。
4.回路開放された分岐ブレーカ(52)おいては,分電盤内機器となるので開放確認と,測定対象体(21)の機器内負荷側線路(L)及び線路(N)と,電気用品の外装(26)間における漏れ接続(R3)及び漏れ接続(R4)に係る,直列接続状態における構成を備えた,修復依頼システムになる。
5.なお,以降は,開放された各操作スイッチ(S1)〜(S6)に係る入力側は(Y)とし,切り替わり手段を具備する構成と,入力側(Y)に係る供給に伴う入力操作は,開放された各操作スイッチ(S1)〜(S6)に係る開放確認を備えた,修復依頼システムになる。
1. In the supply state shown in FIG. 2 in the state where the supply is stopped and the administrator performs the supply with the generator and the operation means,
2. In the subsequent operations, the input side of the circuit-opened branch breaker (52) is set to (X), and the switching means is configured in the operation means associated with the supply input, in the serial connection state and in the parallel connection state,
3. In the open circuit breaker (52), since it becomes a device in the distribution board, it was installed between the lines (4L) and (4N) on the branch breaker (3) load side (4). clip measured object according to (20), with the configuration in the parallel connection state, the repair request system.
4). Since the open circuit breaker (52) is a device in the distribution board, it is confirmed that the circuit breaker is open, the load side line (L) and the line (N) in the device of the measurement object (21), and the electrical equipment. according to the exterior (26) leaking connection between (R3) and leakage connections (R4), with the configuration in the series connection state, the repair request system.
5). In the following, the input side related to each of the opened operation switches (S1) to (S6) is (Y), and the configuration including the switching means and the input operation associated with the supply related to the input side (Y) are as follows: each operating switches open (S1) with an open confirmation of the ~ (S6), becomes the repair request system.

1.図3記載の供給が停止状態と,管理者における,発電機と操作手段での供給の実施手段において,以降の操作は,電力量計側器(11)の電源側スイッチ(S3)をオンとし,2.分岐ブレーカ(3)負荷側(4)線路の端末接地極付コンセント(19)には,操作を目的とした,プラグ接続測定対象体(21)とし,
3.負荷機器(27)電源側スイッチ(S8)は,手動オフに伴う並列接続状態(トラッキング状態R2)に係る点灯確認とする手段とし,並列接続状態における構成を備えた,修復依頼システムになる。
4.なお,点灯確認後においては,電源側リモコン開閉器(S4)はオフと,ゼロクロス開閉器(S5)はオフと,中性N側中性極スイッチ(S6)はオフとを備えた,修復依頼システムになる。
.次に,前記分岐ブレーカ(3)負荷側(4)線路の端末接地極付コンセント(19)には,操作を目的とした,プラグ接続測定対象体(21)とし,
6.負荷機器(27)電源側スイッチ(S8)は,手動オンに伴う測定対象体(21)の機器内負荷側線路(L)及び線路(N)と,電気用品の外装(26)間における漏れ接続(R3)及び漏れ接続(R4)に係る点灯確認とする手段と,直列接続状態における構成を備えた,修復依頼システムになる。7.なお,点灯確認後においては,電源側リモコン開閉器(S4)はオフと,ゼロクロス開閉器(S5)はオフとしを備えた,修復依頼システムになる。
1. When the supply shown in FIG. 3 is stopped and the administrator performs the supply using the generator and the operation means, the subsequent operation is to turn on the power switch (S3) of the watt hour meter (11). , 2. The branch breaker (3) Load side (4) The terminal grounding outlet (19) of the line is a plug connection measuring object (21) for the purpose of operation,
3. Load device (27) power supply side switch (S8) is a lighting confirmation to means of the parallel connection state (tracking state R2) associated with manual off, with the configuration in the parallel connection state, the repair request system.
4). Incidentally, after the lighting confirmation, including the off-power source-side remote control switch (S4) is the zero-crossing switch (S5) is a turned off, the neutral N-side neutral pole switch (S6) is the off-repair request Become a system.
5 . Next, the plug breaker (3) load side (4) outlet ground terminal outlet (19) is a plug connection measuring object (21) for the purpose of operation,
6). The load device (27) power supply side switch (S8) is a leakage connection between the load side line (L) and the line (N) in the device of the measurement object (21) when manually turned on, and the exterior (26) of the electrical equipment. (R3) and means for the lighting confirmation of the leakage connection (R4), with the configuration in the series connection state, the repair request system. 7). After the lighting is confirmed, the repair request system is provided with the power-side remote control switch (S4) turned off and the zero cross switch (S5) turned off.

1.供給が停止状態の検知と,管理者における,発電機と操作手段での,供給の実施手段であって,
2.リミッター電流制限器(1),主開閉器と引き込み開閉器とはDC開放手段とし,
3. 分岐ブレーカ(3),4L.負荷側(4L),4N.負荷側(4N),
7.一次送りブレーカ(7),8N.負荷側(8N),8L.負荷側(8L),
9.電力量計側器(9),10.計側収集保存送信機器(10),11.電力量計側器(11),
19.端末接地極付コンセント(19),20.クリップ測定対象体(20),
21.プラグ接続測定対象体(21),
26.電気用品の外装(26),27.負荷機器(27),
51.線路の帯電に伴う電流検知(51),52.遮断と遮断回路(52),
P1.電源側P1,P2.中性側P2,L4.電源L側4L,N4.中性N側N4,
4L.電源4L,4N.中性4N,R2.トラッキング状態R2,
R3.漏れ接続R3,R4.漏れ接続R4,
e1.ネオンランプe1,e2.LEDe2,e3.フォトカプラーe3,
e4.ドリフト電流e4,
e5.並列接続ネオンランプe5,e6.LEDe6,e7.ドリフト電流e7,
(X).電源側(P1),(X).中性側(P2),(Y).電源側(P1),(Y).中性側(P2),
S1.接地極E3−1に係るスイッチ(S1),S2.負荷側(8)に係るスイッチ(S2),
S3.電源側スイッチ(S3),S4.電源側リモコン開閉器(S4),
S5.ゼロクロス開閉器(S5),S6.中性N側中性極スイッチ(S6),
S7.接地極E3−1に係るスイッチ(S7),
S8.負荷機器(27)の電源側スイッチ(S8),
一次送りブレーカ(7)負荷側(8)の検知操作手段は:1A,2A,3A, 次に,図1記載は,発電機の入力コンセントと開閉器,接続幹線,切換え開閉器,分岐幹線,引き込み開閉器,分岐幹線,リミッター電流制限器(1)には,発電機の供給入力側手段とし,主幹線の供給入力手段には,接続幹線,引き込み開閉器,分岐幹線,リミッター電流制限器(1)と,分岐幹線に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)の分岐幹線に接続された主開閉器と,引き込み開閉器とはDC開放手段とし,供給が停止状態の確認手段を備えた,修復依頼システム。
1. A means for carrying out the supply detection with the generator and the operating means in the detection of the supply stop state,
2. The limiter current limiter (1), the main switch and the pull-in switch are DC open means,
3. Branch breaker (3), 4L. Load side (4L), 4N. Load side (4N),
7. Primary feed breaker (7), 8N load side (8N), 8L load side (8L),
9. Electricity meter side device (9), 10. Meter side collection storage transmission device (10), 11. Electricity meter side device (11),
19. Outlet with terminal grounding electrode (19), 20. Clip measurement object (20),
21. Plug connection measurement object (21),
26. Exterior of electrical equipment (26), 27. Load equipment (27),
51. Current detection associated with charging of the line (51), 52. Breaking and breaking circuit (52),
P1. Power supply side P1, P2. Neutral side P2, L4. Power supply L side 4L, N4. Neutral N side N4
4L. Power supply 4L, 4N. Neutral 4N, R2. Tracking state R2,
R3. Leakage connection R3, R4. Leakage connection R4
e1. Neon lamp e1, e2. LEDe2, e3. Photocoupler e3.
e4. Drift current e4
e5. Neon lamps connected in parallel e5, e6. LEDe6, e7. Drift current e7,
(X). Power supply side (P1), (X). Neutral side (P2), (Y). Power supply side (P1), (Y). Neutral side (P2),
S1. Switch (S1) related to the ground electrode E3-1, S2. Switch (S2) related to the load side (8),
S3. Power supply side switch (S3), S4. Power supply side remote control switch (S4),
S5. Zero-cross switch (S5), S6. Neutral N-side neutral switch (S6),
S7. Switch (S7) related to the grounding electrode E3-1,
S8. Power supply side switch (S8) of the load device (27),
Primary feed breaker (7) Load side (8) detection operation means: 1A, 2A, 3A, Next, Fig. 1 shows the generator input outlet and switch, connection trunk, switching switch, branch trunk, The lead-in switch, branch trunk, limiter current limiter (1) is the supply input side means of the generator, and the main trunk supply input means is the connection trunk line, lead-in switch, branch trunk line, limiter current limiter ( 1) The detection operation means 1A on the primary feed breaker (7) load side (8) connected to the branch main line detects that the supply is stopped and connects to the branch main line of the limiter current limiter (1). a main switch which is, as a DC opening means and pull switch, supply comprising a check means stopped, repair request system.

Claims (5)

供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,需要家側においては,供給が停止状態に伴うリミッター電流制限器(1)に接続された,一次送りブレーカ(7)負荷側(8)の検知操作手段1Aは,供給が停止状態を検知して,リミッター電流制限器(1)に接続された主開閉器(2)と,引き込み開閉器とはDC開放手段とし,主開閉器(2)に係る開放に伴う,一次送りブレーカ(7)負荷側(8)の検知操作手段2Aは,接地極E3−1に係るスイッチ(S1)をDCでオンと,分岐ブレーカ(3)負荷側(4)のL側幹線(L4)に係る帯電を放電する手段とし,放電に伴う一次送りブレーカ(7)負荷側(8)の検知操作手段3Aは,供給が停止状態の検知と放電手段において,接地極E3‐1に係るスイッチ(S1)はDCでオフと,放電の開放手段とし,供給が停止状態の確認手段を備えた修復依頼システム。 The supply is detected by the generator and the operating means for the manager when the supply is stopped. On the consumer side, the primary is connected to the limiter current limiter (1) when the supply is stopped. The detecting operation means 1A on the feed breaker (7) load side (8) detects the supply stop state, the main switch (2) connected to the limiter current limiter (1), and the pull-in switch As the DC opening means, the detection operation means 2A on the primary feed breaker (7) load side (8) accompanying opening of the main switch (2) turns on the switch (S1) related to the ground electrode E3-1 with DC. And the branch breaker (3) as a means for discharging the charge on the L side trunk line (L4) on the load side (4), the primary feed breaker (7) accompanying the discharge, and the detection operation means 3A on the load side (8) In the stop state detection and discharge means, the switch (S1) related to the ground electrode E3-1 is DC. And the full, and discharge opening means, repair request system supply with a check means of the stop state. 以降は,供給が停止状態に伴う引き込み開閉器の開放手段と,放電の開放手段を具備する構成に伴う,管理者における,発電機と操作手段での供給手段であって,前記供給手段は,一次送りブレーカ(7)負荷側(8)に係る電力量計側器(9)においては,一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量とし,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量と,計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,継続して計測値を収集と保存する手段を備えた,ことを特徴とする請求項1記載の修復依頼システム。 Hereinafter, the supply means in the generator and the operation means in the administrator, with the configuration comprising the opening means of the retractable switch when the supply is stopped and the discharge opening means, the supply means, In the watt-hour meter side device (9) related to the primary feed breaker (7) load side (8), the consumption use related to the detection operation means and the constant supply device related to the primary feed breaker (7) load side (8) and electric energy, and have contact to the power meter side device (9), wherein the load-side digital electric energy consumption used according to (8), in the total side collecting save transmission device (10), measuring the operational current value repair request system of claim 1, wherein the display means, with a means to store and continue to collect the measurement value, that. 次に,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,以降の操作は,並列接続状態(20)に係る線路の帯電手段に伴う電流検知(51)と,漏れ接続状態直列(21)に係る線路の帯電手段に伴う電流検知(51)と,帯電検知に伴う分岐回路遮断手段とし,回路遮断された分岐ブレーカ(52)の負荷側(53)に係る回路開放に伴う消灯の検知手段と,各操作スイッチ(S1)〜(S6)に係る開放手段と,入力側に切り替わり手段とし,リミッター電流制限器(1)に接続された主開閉器(2)に係る再投入オン手段と,一次送りブレーカ(7)負荷側(8)に係る,検知操作手段及び常時供給機器に係る消費使用の電力量は,電力量計側器(9)において,前記負荷側(8)に係る消費使用のデジタル電力量とし,計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,前記負荷側(8)に係る消費使用のデジタル電力量と,継続して計測値を収集と保存する手段を備えた,ことを特徴とする請求項1から2記載の修復依頼システム。 Next, the detection of the supply stop state and the supply means of the generator by the generator and the operation means for the administrator, the subsequent operation is the current detection (the current detection associated with the charging means of the line in the parallel connection state (20)). and 51), current sensing with the band conductor means engaging Ru line leakage connection state series (21) and (51), and a branch circuit breaker unit with the charging detection, the load side of the branch breakers which are circuit breaker (52) The main means connected to the limiter current limiter (1) is a detection means for turning off when the circuit is opened according to (53), an opening means for each operation switch (S1) to (S6), and a switching means to the input side. The resuming-on means for the switch (2), the primary operation breaker (7), the load operation (8), the detection operation means and the power consumption for the always-on device are the watt-hour meter (9 ), The digital energy consumed and consumed on the load side (8) In apparatus (10), comprising a measurement display means operable current value, and the digital electric energy consumption used according to the load side (8), the means to store and collect the measured value continuously, it The repair request system according to claim 1, wherein: 続いて,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,待機電流に係る省エネスイッチ手段を具備する構成は,主開閉器(2)に係る再投入オン手段に伴う,開放された各操作スイッチ(S1)〜(S6)に係る開放確認手段と,手動投入手段であって,以降の操作は,電力量計側器(11)の電源側スイッチ(S3)を操作オンに伴う待機電流に係る開放確認手段とし,電源側リモコン開閉器(S4)のオンに伴うゼロクロス開閉器(S5)はオフと,中性N側中性極スイッチ(S6)をオンとし,前記ゼロクロス開閉器(S5)に係る並列接続ネオンランプe5は,交流100Vでは70Vで陰極グローと負極が発光により,電圧35Vのドリフト電流e7でLEDe6が点灯の検知手段であって,ドリフト電流e7は,電源側に係る線路の帯電手段を備えた,ことを特徴とする請求項1から3記載の修復依頼システム。 Subsequently, the configuration in which the supply is detected by the generator and the operating means for the manager and the energy saving switch means for the standby current is provided for the manager is re-applied to the main switch (2). Opening confirmation means relating to each of the opened operation switches (S1) to (S6) and manual turning-on means associated with the turning-on means, and the subsequent operation is performed by the power supply side switch of the watt-hour meter (11). (S3) is an open check means related to standby current when the operation is turned on, the zero cross switch (S5) is turned off when the power supply side remote control switch (S4) is turned on, and the neutral N side neutral switch (S6) The parallel-connected neon lamp e5 related to the zero cross switch (S5) is a detecting means for lighting the cathode glow and the negative electrode by 70V at AC 100V, and lighting LEDe6 by the drift current e7 of voltage 35V, The drift current e7 is With a charging Hand stage of the line of the side, repair request system of claims 1 to 3, wherein a. 次に,供給が停止状態の検知と,管理者における,発電機と操作手段での供給手段であって,分岐ブレーカ(3)負荷側(4)線路の端末接地極付コンセント(19)には,操作を目的とした,プラグ接続測定対象体(21)の負荷機器(27)に係る電源側スイッチ(S8)であって,手動オンに伴う負荷機器(27)の並列接続状態に係る点灯は,ゼロクロス開閉器(S5)を操作オンに伴う負荷機器(27)における消費使用の電力量とし,電力量計側器(11)と計側収集保存送信機器(10)においては,操作可能電流値を計測表示手段と,分岐ブレーカ(3)負荷側(4)に係る消費使用のデジタル電力量と,共に継続して計測値を収集と保存する手段を備えた,ことを特徴とする請求項1から4記載の修復依頼システム。 Next, the supply is detected by the generator and the operating means for the manager when the supply is stopped. The branch breaker (3) is connected to the load side (4) line terminal outlet (19) with terminal grounding pole. , the operation aimed, a power supply side switch according to the load equipment plugged measured object (21) (27) (S8), the lighting of the parallel connection state of the load device with the manual oN (27) Is the amount of power consumed and consumed in the load device (27) when the zero-cross switch (S5) is turned on. In the watt-hour meter (11) and the meter-side collecting and storing transmitter (10), the operable current according to a measurement display means the value, and the digital electric energy consumption used in accordance with the branch breakers (3) the load side (4), provided with a means to store and both continue to collect measurements, characterized in that Item 5. The repair request system according to items 1 to 4.
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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08242530A (en) * 1995-03-03 1996-09-17 Konfuooto:Kk Leak preventing device for earthquake
JPH11296771A (en) * 1998-04-13 1999-10-29 Matsushita Electric Works Ltd House monitor system provided with power consumption monitor function
JP2002359907A (en) * 2001-05-31 2002-12-13 Matsushita Electric Works Ltd Distribution board and radiation elements used in the same
JP2009050070A (en) * 2007-08-17 2009-03-05 Kansai Electric Power Co Inc:The Power interruption system
JP2009273264A (en) * 2008-05-08 2009-11-19 Kankyo Keiei Senryaku Soken:Kk Breaker unit
JP2010091581A (en) * 2009-12-18 2010-04-22 Yukifumi Nakamura Device for measuring leakage current state of low-voltage electrical facility
JP2014068504A (en) * 2012-09-27 2014-04-17 Toshiba Corp Distribution panel and distributed power supply system
WO2014068874A1 (en) * 2012-10-31 2014-05-08 パナソニック株式会社 Power distribution panel and storage cell pack

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08242530A (en) * 1995-03-03 1996-09-17 Konfuooto:Kk Leak preventing device for earthquake
JPH11296771A (en) * 1998-04-13 1999-10-29 Matsushita Electric Works Ltd House monitor system provided with power consumption monitor function
JP2002359907A (en) * 2001-05-31 2002-12-13 Matsushita Electric Works Ltd Distribution board and radiation elements used in the same
JP2009050070A (en) * 2007-08-17 2009-03-05 Kansai Electric Power Co Inc:The Power interruption system
JP2009273264A (en) * 2008-05-08 2009-11-19 Kankyo Keiei Senryaku Soken:Kk Breaker unit
JP2010091581A (en) * 2009-12-18 2010-04-22 Yukifumi Nakamura Device for measuring leakage current state of low-voltage electrical facility
JP2014068504A (en) * 2012-09-27 2014-04-17 Toshiba Corp Distribution panel and distributed power supply system
WO2014068874A1 (en) * 2012-10-31 2014-05-08 パナソニック株式会社 Power distribution panel and storage cell pack

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