JP6563491B2 - 電力グリッドシステムおよび電力グリッドシステムにおける電力の投入および消費を統合する方法 - Google Patents
電力グリッドシステムおよび電力グリッドシステムにおける電力の投入および消費を統合する方法 Download PDFInfo
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Description
本発明は、電力グリッドシステムおよび電力グリッドシステムにおける発電および電力消費を統合する方法に広範に関する。
今日まで、大部分の建物、とりわけ商業用建物、例えば、ショッピングモールまたは工業用建物は、発電機、例えば、石炭火力発電所または別の燃焼機関が電力グリッドネットワークを通じて、電力グリッドネットワーク上の負荷需要によって調整されるように電力を電力ネットワークプールに供給する主幹電力グリッドシステムからすべての電力を得ている。建物の負荷に関連する補助発電機からの発電は、建物の負荷によって電力ネットワークから引き出される全エネルギーを単独で削減する建物の組み込み発電機として、主幹電力グリッドシステムとは独立して実行することができる。例として、太陽光発電システムは、電力グリッドに優先して建物の負荷に供給するために、建物配電盤を通じて直接接続されることができる。
本発明の第1の態様に従って、電力グリッドと;電力グリッドに接続される少なくとも一つの負荷と;電力グリッドから負荷に取り入れられる電力を計量するように構成される第1の計器と;電力グリッドに接続される少なくとも一つの断続的電源と;断続的電源によって発電される電力を計量するように構成される第2の計器と;第1および第2の計器からの読取り値を関連付け、これにより、断続的電源によって発電される電力の少なくとも一部が電力グリッドから負荷に取り入れられる電力とオフセット可能であるように構成される統合ユニットとを含む電力グリッドシステムを提供する。
Claims (30)
- 電力グリッドシステムであって、:
電力グリッドと;
電力グリッドに接続される少なくとも一つの負荷と;
電力グリッドから負荷に取り入れられる電力を計量するように構成される第1の計器と;
電力グリッドに接続される少なくとも一つの断続的電源と;
断続的電源によって発電される電力を計量するように構成される第2の計器と;
第1および第2の計器からの読取り値を関連付け、これにより、断続的電源によって発電される電力の少なくとも一部が電力グリッドから負荷に取り入れられる電力とオフセット可能であるように構成される統合ユニット;
とを含み、
統合ユニットは第2の計器の読取り値による断続的電源によって発電される電力および第2の計器の読取り値による電力グリッドから負荷に取り入れられる電力のそれぞれの時間プロファイルを一致させることにより、第1および第2の計器の読取り値を関連付けるように構成される
電力グリッドシステム。 - 断続的電源および負荷の一方または両方がそれぞれの時間プロファイルが互いに一致するのを容易にするために制御可能なように構成される、請求項1記載の電力グリッド。
- 統合ユニットが第1および第2の計器からの関連する読取り値の一方または両方に基づいて負荷の電力供給コストを計算するように構成される、請求項1または2記載の電力グリッドシステム。
- 電力グリッドに接続される少なくとも1つのディスパッチ可能な電源をさらに含み、ディスパッチ可能な電源による電力グリッドへの電力投入が第1および第2の計器からの関連する読取り値の一方または両方に応じて調整可能なように構成される、請求項1から3のいずれか一項記載の電力グリッドシステム。
- 断続的電源が電力グリッドに直接または中間グリッド接続装置を介して接続される、請求項1から4のいずれか一項記載の電力グリッドシステム。
- 断続的電源および負荷が電力グリッドに対して異なる場所にまたは電力グリッドに対して実質的に同じ場所に配置される、請求項1から5のいずれか一項記載の電力グリッドシステム。
- 統合ユニットが一つまたは複数の時間ビン間隔にわたる負荷の確率的な需要のヒストグラムを導出するために構成される、請求項1から6のいずれか一項記載の電力グリッドシステム。
- 統合ユニットが一つまたは複数の時間ビン間隔にわたる断続的電源からの供給の確率的な能力のヒストグラムを導出するために構成される、請求項1から7のいずれか一項記載の電力グリッドシステム。
- 一つまたは複数のディスパッチ可能な電源による電力グリッドへの電力投入が一つまたは複数の時間ビン間隔にわたる断続的電源からの供給の確率的な能力のヒストグラムに関連するように調整可能である、請求項8記載の電力グリッドシステム。
- 電力グリッド上の1つまたは複数のディスパッチ可能な電源から負荷への供給に関連するリスクプロファイルが一つまたは複数の時間ビン間隔にわたる断続的電源からの供給の確率的な能力のヒストグラムを考慮して修正される需要プロファイルを観察することによって決定されるように修正可能である、請求項8または9記載の電力グリッドシステム。
- 統合ユニットが外部データ、例えば、場所データ、放射データ、風速データ、衛星を介して撮像される雲形成パターン、他の気象情報などを受信するように構成される、請求項1から10のいずれか一項記載の電力グリッドシステム。
- 統合ユニットが断続的電源から負荷への供給を予測または精緻化するように構成される、請求項1から11のいずれか一項記載の電力グリッドシステム。
- 統合ユニットが断続的電源から負荷への供給の一つのルックバック供給プロファイルまたは複数のプロファイルを決定するように構成される、請求項1から12のいずれか一項記載の電力グリッドシステム。
- 統合ユニットが負荷の需要の一つのルックバック需要プロファイルまたは複数のプロファイルを決定するように構成される、請求項1から13のいずれか一項記載の電力グリッドシステム。
- 電力グリッドシステムにおいて電力の投入および消費を統合する方法であって、方法が:
第1の計器を使用して電力グリッドから負荷に取り入れられる電力を計量することと;
第2の計器を使用して電力グリッドに接続された断続的電源によって発電された電力を計量することと;
第1および第2の計器からの読取り値を関連付け、これにより、断続的電源によって発電される電力の少なくとも一部が電力グリッドから負荷に取り入れられる電力とオフセット可能にすることと;
とを含み、
第1および第2の計器からの読取り値を関連付けることは第2の計器の読取り値による断続的電源によって発電される電力および第2の計器の読取り値による電力グリッドから負荷に取り入れられる電力のそれぞれの時間プロファイルを一致させること
を含む方法。 - それぞれの時間プロファイルが互いに一致するのを容易にするために、断続的電源および負荷の一方または両方を制御することを含む、請求項15記載の方法。
- 第1および第2の計器からの関連する読取り値の一方または両方に基づいて負荷の電力供給コストを計算することを含む、請求項15または16記載の方法。
- 第1および第2の計器からの関連する読取り値の一方または両方に応じて、少なくとも1つのディスパッチ可能な電源による電力グリッドへの電力投入を調整することをさらに含む、請求項15から17のいずれか一項記載の方法。
- 断続的電源が電力グリッドに直接または中間グリッド接続装置を介して接続される、請求項15から18のいずれか一項記載の方法。
- 断続的電源および負荷が電力グリッドに対して異なる場所にまたは電力グリッドに対して実質的に同じ場所に配置される、請求項15から19のいずれか一項記載の方法。
- 一つまたは複数の時間ビン間隔にわたる負荷の確率的な需要のヒストグラムを導出することを含む、請求項15から20のいずれか一項記載の方法。
- 一つまたは複数の時間ビン間隔にわたる断続的電源からの供給の確率的な能力のヒストグラムを導出することを含む、請求項15から21のいずれか一項記載の方法。
- 一つまたは複数の時間ビン間隔にわたる断続的電源からの供給の確率的な能力のヒストグラムに関連するように一つまたは複数のディスパッチ可能な電源による電力グリッドへの電力投入を調整することを含む、請求項22記載の方法。
- 一つまたは複数の時間ビン間隔にわたる断続的電源からの供給の確率的な能力のヒストグラムを考慮して修正される需要プロファイルを観察することによって決定されるように電力グリッド上の一つまたは複数のディスパッチ可能な電源から負荷への供給に関連するリスクプロファイルを修正することを含む、請求項22または23記載の方法。
- 外部データ、例えば、場所データ、放射データ、風速データ、衛星を介して撮像される雲形成パターン、他の気象情報などを考慮することを含む、請求項15から24のいずれか一項記載の方法。
- 断続的電源から負荷への供給を予測または精緻化することを含む、請求項15から25のいずれか一項記載の方法。
- 断続的電源から負荷への供給の一つのルックバック供給プロファイルまたは複数のプロファイルを決定することを含む、請求項15から26のいずれか一項記載の方法。
- 負荷の需要の一つのルックバック需要プロファイルまたは複数のプロファイルを決定することを含む、請求項15から27のいずれか一項記載の方法。
- 請求項1から14のいずれか一項に記載される電力グリッドシステムを使用して電力を供給する方法。
- 請求項15から28のいずれか一項記載の方法を使用して電力を供給する方法。
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- 2015-06-10 EP EP15851794.6A patent/EP3210272A4/en not_active Withdrawn
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- 2015-06-10 EP EP15851698.9A patent/EP3210271A4/en not_active Withdrawn
- 2015-06-10 AU AU2015337129A patent/AU2015337129A1/en not_active Abandoned
- 2015-06-10 CA CA2965492A patent/CA2965492A1/en not_active Abandoned
- 2015-10-23 TW TW104134858A patent/TW201624866A/zh unknown
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2016
- 2016-04-15 TW TW105111842A patent/TW201712998A/zh unknown
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2017
- 2017-04-24 PH PH12017500760A patent/PH12017500760A1/en unknown
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2018
- 2018-02-26 HK HK18102747.2A patent/HK1243556A1/zh unknown
- 2018-02-26 HK HK18102748.1A patent/HK1243557A1/zh unknown
- 2018-02-26 HK HK18102749.0A patent/HK1243558A1/zh unknown
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WO2016064342A1 (en) | 2016-04-28 |
SG10201406883UA (en) | 2016-05-30 |
AU2015337130A1 (en) | 2017-06-01 |
HK1243557A1 (zh) | 2018-07-13 |
TW201712998A (en) | 2017-04-01 |
WO2016064341A1 (en) | 2016-04-28 |
SG11201703223TA (en) | 2017-05-30 |
EP3210272A4 (en) | 2018-03-21 |
TW201624866A (zh) | 2016-07-01 |
CN107182219A (zh) | 2017-09-19 |
US20170372438A1 (en) | 2017-12-28 |
AU2015337129A1 (en) | 2017-06-01 |
PH12017500760A1 (en) | 2017-11-20 |
EP3210271A4 (en) | 2018-05-30 |
SG11201703224RA (en) | 2017-05-30 |
EP3210272A1 (en) | 2017-08-30 |
AU2020204246A1 (en) | 2020-07-16 |
HK1243555A1 (zh) | 2018-07-13 |
EP3210271A1 (en) | 2017-08-30 |
US20180026478A1 (en) | 2018-01-25 |
US10916967B2 (en) | 2021-02-09 |
JP2017531998A (ja) | 2017-10-26 |
CN107112753A (zh) | 2017-08-29 |
HK1243556A1 (zh) | 2018-07-13 |
HK1243558A1 (zh) | 2018-07-13 |
JP2017536073A (ja) | 2017-11-30 |
CA2965490A1 (en) | 2016-04-28 |
CA2965492A1 (en) | 2016-04-28 |
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