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PV in Japan, Current status And
The way to go
June 8th, 2017
The Japan Photovoltaic Energy Association
JPEA
Smart community 2017
4JPEA
Name
Japan Photovoltaic Energy Association (JPEA)
Foundation
April 23, 1987
Chairperson
Mr. Shusaku NAGAE
(Chairman, Panasonic Corporation)
Number of Members (As of April 2017)
133
The Largest Photovoltaic Industry Association in JAPAN
2
5Organization of JPEA
Operation of the Qualified
Installers System
High Density
InterconnectionPV generation
Statistics Committee
Residential Use
Public and Industrial Use
International Operations
Public Relations
General Assembly
Board of directors
Chairperson of the board
Management Committee Management Subcommittee
Secretariat
JPEA Application Center
(JP-AC)
Japan Photovoltaic
Construction Technology
Center (Jcot)
(Standing Committees)
As of April 2017
Basic Policy Committee
(incl. JPEA Vision)
3
6
■JPEA publishes a leaflet in order to educate users as well as sales sectors in order not to be involved in troubles in purchasing a PV system. The title of this leaflet is “Start a life with solar – how to get a PV system successfully”.
A Leaflet for residential users to avoid troubles
6http://www.jpea.gr.jp/document/handout/leaflet.html
7
■JPEA has started its PV Construction Engineer Program for roof top systemssince 2012. The number of certified engineers amounts to almost 3,000■JPEA also started the Technical Lecture to construct PV systems from 10kW to50kW in 2014 in order to ensure good quality these systems.
PV Construction Engineer Program
a Technical Lecture to Construct 10kW to 50kW PV Generating Plant held in Osaka
7http://www.jpea.gr.jp/pdf/t150721.pdf
8
■Under FIT, many new comers start to install 10~50kW PV systems. For owner, constructer, and investor of such systems, JPEA published the check list of design/construction of foundation and cradle (mounting base) for 10kW over PV.
「Electric Equipment 10kW over」The check list and remarks of design/construction of foundation and cradleFor 10kW over PV.http://www.jpea.gr.jp/pdf/150529_JPEA_checklist.pdf
■地盤調査・地質調査の例太陽光発電設備を設置するための地盤調査は、アレイ架台の自重が、一般住宅等(※1)にくらべはるかに軽いことや、一般建築や一般住宅等でみられる水準の地盤調査は大掛かりになることや費用面での負担が大きいことから、なるべく簡易的に地盤調査をおこない、基礎設計の資料とすることが好ましい。
※1 家の重量は、60 ㎡で基礎込みで、約60~70tになる。 約 1 ton/㎡
■土地調査例の基本
8
Check List of foundation and cradle for 10kW over PV
9
■JPEA issued the 5th edition of PV System’s “Design and Construction” in 2015.This issue was realized by dedication of specialists of JPEA’s member companies,and it includes some issues reflecting the recent Japanese FIT scheme. This book iscalled “a bible of PV system construction technology” and the first edition waspublished in 1996.
PV System’s “Design and Construction”
http://www.jpea.gr.jp/profile/books/index.html9
10PV maintenance guidelines published by JPEA
JPEA has published the some maintenance guidelines for PV systems, and these are open to be accessed through the JPEA’s web site.
■The maintenance guidelines for Roof top PV systems less than 10 kW
■The maintenance guidelines for 10-50 kW PV systems
http://www.jpea.gr.jp/pdf/upper10kw.pdf
http://www.jpea.gr.jp/pdf/inspection.pdf
■Check lists and points of substructures or structures or construction for PV systems, 10kW or morehttp://www.jpea.gr.jp/pdf/150529_JPEA_checklist.pdf
11Guideline of Maintenance and Inspection for PV system(http://www.jpea.gr.jp/)
Crick here
2017-2-8現在
13
China43.5GW(19.2%)
Introduced PV capacity shares of countries
Reference Report IEA-PVPS T1-31:2017
SNAPSHOT 2016
Japan42.8GW(14.1%)
Italy19.3GW(6.4%)
Germany41.2GW(13.6%)
USA40.3GW(13.3%)
UK11.6GW(3.8%)
France7.1GW(2.3%)
Australia5.9GW(2.0%)
Others42.2GW(13.9%)
Cumulative capacity of 2015
303GWSpain
5.5GW(1.8%)
India9.0GW(3.0%)
China78.1GW(25.8%)
14
Capacity/Countries MW
W/W capacity MW
Annual introduced Capacity
31,095
36,900 38,700
50,655
75,000
2,000
6,900 9,700
10,811
8,600
3,510
11,300 10,560
15,150
34,540
7,609
3,304 1,900 1,461 1,520 3,346
4,751 6,201 7,283
14,730
3,348
1,461
385 300 373 276 152 22 54 55 0
10,000
20,000
30,000
40,000
50,000
60,000
70,000
80,000
0
5,000
10,000
15,000
20,000
25,000
30,000
35,000
40,000
2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016
W/W
Japan
China
Germany
US
Italy
Spain
暦年
Reference: Report IEA-PVPS T1-31:2017 SNAPSHOT 2016
15MW
Trend of the cumulative capacity of PV systems
Data from METI web site2013 2014 20152012 2016
1MW and more
Less than 10kW
0
2,000
4,000
6,000
8,000
10,000
12,000
14,000
16,000
18,000
20,000
22,000
24,000
26,000
28,000
30,000
32,000
34,000
12 1 2 3 4 5 6 7 8 9 101112 1 2 3 4 5 6 7 8 9 101112 1 2 3 4 5 6 7 8 9 101112 1 2 3 4 5 6 7 8 9 101112
Total
over 1MW
10~999kW
under 10kW
16
3,590 9,244 15,596 31,475 52,352 77,503 115,765
162,525 217,000
289,825
352,369 401,794
456,894
559,438
747,102
982,919
1,258,970
1,547,087
1,754,008
1,932,729
2,011,142
0
200,000
400,000
600,000
800,000
1,000,000
1,200,000
1,400,000
1,600,000
1,800,000
2,000,000
2,200,000
1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016年度
Number of roof tops
Cumulative roof top PV systems
93.0%
Total number of
roof tops
28,598,700
7.0%
Roof top PV systems
2,011,142
Data from “Statistics of residences and lands”, 2013
(2016.4~2016.9)
2000~2005 f/y : from subsidy data by the New Energy Foundation
2006~2008 f/y : from New Energy Promotion Council investigation
2008~2013 f/y : from subsidies data by JPEA(J-PEC)
2014~2015 f/y : from the report on PV facilities by METI
17
0.2
13.2
24.6 26.5
2.3
4.9
5.8
6.5 5.5
0.0
5.0
10.0
15.0
20.0
25.0
30.0
35.0
2012年度 2013年度 2014年度 2015年度 2016年度(April.-Dec.)
TWh
Data from the report on the PV facilities introduction by METI
Purchased electric power from PV systems through the FIT
10kW 未満
10kW 以上
2.5
9.1
19.0
31.1 32.0
4.2
Cumulative purchased power amounts to
93.7 TWh since the FIT started in 2012.
2012 2013 2014 2015 2016
18MW
Data from METI web site2013 2014 20152012
Trend of cumulative capacity of the FIT approved systems
2016
1MW and more
Less than 10kW
0
10,000
20,000
30,000
40,000
50,000
60,000
70,000
80,000
90,000
7 9 11 1 3 5 7 9 11 1 3 5 7 9 11 1 3 5 7 9 11 1 3 5 7 9 11
Total
over 1MW
10~999kW
less 10kW
19
MW
Only approved systems and Actually operating systems
48,823MW
Less than 10kW
10~49kW
50~499kW
500~999kW
1,000~1,999kW
2MW and more
Over 80GW PV facilities approved so far since the Japanese FIT started
But almost 49GW of approved systems are not yet operated
Limited capacity of local grid will influence and delay actual installation
Total PV capacity approved under FIT compared with actually operating system capacity (July 2012 Dec. 2016)
Data from METI web site
26,257
3,508
12,805
7,157
4,893
3,342
4,527
3,053
27,043
10,405
5,308
4,545
0
10,000
20,000
30,000
40,000
50,000
60,000
70,000
80,000
90,000
80,833 MW
32,010 MW
21#
The Japanese FIT law for promotion of RE has been revised in June 2016, and its relatedregulations have been also being amended. The objectives and points are as follows.
The objectives :1. Promotion of the well balanced variety of RE.2. Relief of the burden of the FIT cost over the people3. Using the renovation of the electric power system
to advantage in order to utilize the RE power.
The points :1. Rearrangement of not yet operated PV systems and renewal of approval systems2. Introduction of some check systems and mandatory requirements to promote
the long life operation of the RE system3. Cost effective introduction of RE by setting the cost targets and introducing the
bidding system for PV systems4. Setting FIT rates for coming years to promote some REs which take long time for
preparation5. The transmission operators take over the obligation to purchase the FIT power,
so that the RE power can circulate nationwide better than before
3.1 Renovation of the Japanese FIT system
22
Reference: METI WEB
Maintenance and inspection are important key roles for long life operation Good maintenance and proper inspections are obliged to the PV system owners according to
the revised FIT law and regulations including the guidelines for the planning the RE powergeneration.
【Guidelines for the planning for the RE power generations 】
The guidelines for the planning of the RE power generations are to be published for the all applicants of the RE power generations applied for the FIT system. The all applicants who are willing to apply the FIT to their own RE power generation projects shall plan their projects according to the said guidelines including a plan for the good maintenance and properly periodic inspections.
【Guidelines of the maintenance and inspections for PV systems 】
Maintenance and inspections are one of the key items to disseminate the long life PV systems.JPEA and JEMA worked on the project and have successfully published “The Guidelines of the maintenance and inspections for the PV system” since last Dec. 2016.
Important items in the amended regulations of the FIT
About Guidelines of the maintenance and inspections for PV systems
23
In Japan, the reform of the electric power system is proceeding toward the final stage of the unbundling the power companies in 2020.
The first stage (Apr. 2015): Established OCCTOThe second stage (Apr. 2016): liberalized the retail marketThe final stage (Apr. 2020): Unbundling the power system
Japanese government consulting committee’s report has been issued Dec. 2016
Key points・Competitive new business・RE power promotion・Financial support for the decommission of the nuclear power plants
3.2 Reform of the electric power system
24“Electricity Market Reform KANTETSU Committee” Summary
Scheme Issue Plan
Creation of the Baseload Market
Occupied by the Major Electricity Companies
Open the market and welcome to new comers to use the Baseload generation
New Transmission Interconnection Rules including implicit auction
Occupied by the Major Electricity Companies (until 10 years later)
Electricity of lower cost is to be used through the new rules including implicit auction
Introduction of the Capacity Mechanism
Electricity of high cost is difficult to exist
Create the Capacity Market for retailers to buy KW
Creation of the Non-Fossil Credits Market
Non-fossil value of electricity is not recognized
Create the Non-Fossil Credits Market for retailers
Accounting measures to abolish nuclear powers
Not considered in the past Collet money through the new transportation service fare scheme
26Reform of the power system for PV
Critical points for the PV systems
I. Increase the interconnections
Flexibility of the power network is crucial point
II. Vitalizing the electricity wholesale market and circulating
the RE power in it
Utilizing the benefits from the wholesale markets, which can
provide the adjustment of imbalance and others.
III. Reform of the transportation service rules
Promoting the utilization of the local PV systems including
systems with the FIT term expired.
27I.Increase the interconnections and the flexibility
1. OCCTO revised rules applicable to use of the interconnections for more effective use by auction.
2. Effective use of the interconnections will result in lower curtailment of renewable energy.
3. “Connect & Manage” style should be adopted so as to reduce curtailment as little as possible.
28
28
系統利用の在り方:日本版”Connect and manage”?
第8回 系統WG資料より
In discussion of a METI Working Group, a Japanese style “Connect and Manage” case is introduced by an Electric Company, which is very practical in this country’s current circumstances.
29II. Vitalizing the electricity wholesale market
1. Vitalizing the electricity wholesale market is necessary. Only a few percent of total electricity consumption is under dealing in this country.
2. Establishing new demand and supply control system, including Nega-watt trade, DR (Demand Response), VPP(Virtual Power Plant) etc. as well as EV and Heat-pump system is essential.
3. Starting the Real-time Market for imbalance adjustment by market mechanism is desired.
・Trade of FIT electricity in the Wholesale Market・Use of generation after FIT duration(new scheme)・Better forecast and VRE trade in the Market
30III.Maintenance of Grid and Reform of the Transportation Service Rules
1. Effective use of existing grid should be realized on the “Connect & Manage” basis.
2. Grid Maintenance should be carried out in accordance with a well-designed, long-term plan and proper transportation service fee scheme.
3. Self and local consumption of RE generated electricity should be promoted to avoid congestion in the grid. Proper transportation service fee for this purpose is essential.
324.太陽光発電産業の未来:パリ協定について
世界共通の長期削減目標として、産業革命前からの気温上昇を2℃未満に抑制することを規定するとともに、1.5℃までへの抑制に向けた努力を継続する。主要排出国・途上国を含む全ての国が
① 削減目標を策定し国内措置を遂行、5年ごとに目標を提出② 自国の取組状況を定期的に報告③ 世界全体としての実施状況の検討を5年ごとに行う
出典) 全国地球温暖化防止活動推進センター(http://www.jccca.org/)
出典) 外務省HPhttp://www.mofa.go.jp/mofaj/ila/et/page24_000810.html
Explanation of main points of the Paris Agreement of COP21
CO₂ emission
Target
33A doubling of the renewable energy share in the global energy mix by 2030 would set the world on a path that could limit global warming well below 2 °C above pre-industrial levels by the end of this century, in line with what the countries have agreed in Paris at the COP21.(IRENA:Road map for renewable energy future 2016)
35Necessity of RE use
RE generation
CO2 free energy
Industrial use of energy makes production.
Home use of energy leads us to happy life.
Competency of effective use of energy is crucial.
No use of energy is non-sense.
We should use sustainable energies
Purpose of decarbonizing ・Ultra-high efficiency and saving energy・Promotion of electrification
society of use of electricity in every aspect
electrified transportation and heating system
・DE-carbonization of generationnon-fossil or CCS
New needs are foreseeable to promote DE-carbonization in various industries.
PV industries’ successive contribution
36For more use of solar generation
What is necessary to advance use of VRE including solar ?
Proposal to the scheme
・Use of the interconnections
・Strengthen the interconnections
・Vitalizing of electricity market
Electricity Reform
・Re-considering priority in case of curtailment
・New scheme to make use of RE generation after the FIT duration
Smart operation
・Forecasting technology
・Fair access to the grid
・stable operation of the FIT scheme
Solar Generation goes to new step
・Self consumption and local consumption
・Maintenance scheme for long term operation
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