INVESTMENT IN TRANSMISSION NETWORKS ERERA/WAGPA REGULATORY WORKSHOP APRIL 2012, LOME, TOGO

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Transcription:

INVESTMENT IN TRANSMISSION NETWORKS ERERA/WAGPA REGULATORY WORKSHOP 24 26 APRIL 2012, LOME, TOGO Prof Jorry M Mwenechanya 1

Presentation Enhancing adequacy Pre and Post Reform issues for G &T Regulatory challenges Need for investment Connecting grids 2

Transmission functions G G TX Transfer power from generators to loads RTO B A Interconnect power networks RTO C 3

Enhancing adequacy Interconnect generation or load Reduce congestion G TX Existing grid 4

Enhancing adequacy Enhance system reliability (replace old technology) PROTECTION CIRCUIT BREAKERS 5

Enhance operating flexibility Increase system efficiency Add switching capability Replace high-loss equipment (Also DSM in distribution network) 6

Pre and Post Reform issues for Generation and Transmission 7

Coordination BEFORE G &T Planned together in an integrated utility; National master plans in use AFTER Generation and transmission planned separately; competition for generation, regulated transmission 8

Planning Information BEFORE System adequacy is tested by modelling (line flows and bus voltages); Information readily available (or obtainable) in the utility AFTER Modelling may be constrained by unwillingness of players to provide sensitive commercial data 9

Level of Adequacy BEFORE Determined by utility with approval of ministry of energy (as regulator), but Master Plans rarely implemented AFTER Generation and transmission generally inadequate, Approval of new generation and transmission by regulator/government 10

Pricing BEFORE Embedded-cost pricing had little effect on either generation or transmission adequacy AFTER Real-time energy pricing will affect generation adequacy; congestion pricing will guide transmission investments and locations of new generation 11

Roles of markets and regulation BEFORE State regulation and central planning dominate adequacy decisions (but all limited by lack of investment) AFTER In theory, markets dominate generation adequacy decisions and affect transmission adequacy decisions. Regulatory authority shifted from government to independent regulator 12

Cost Allocation in Unbundled Transmission Technical requirements are the same as in a V.I. utility BUT Additional requirement is that transmission should not constrain market transactions: economic dispatch The benefits may accrue to producers and consumers in a different location from the transmission location Questions arise about who pays for investment if it is purely for market facilitation. 13

Regulatory Challenge: Pricing transmission to promote investment and to ensure fair allocation of costs Approval on the basis of revenue requirement may not provide sufficient safeguards against over-investment or gold-plating Approval on the basis of used and useful notion could cause underinvestment Unfair costs to customers Inadequacy, low reliability 14

Regulatory Challenge: Pricing transmission to promote investment and to ensure fair allocation of costs The risks are essentially the same: If X is set too low, tendency will be to overinvest, if too high, there is likely to be insufficient investment 15

Additional challenge: Construction periods long, payback periods long, both far in excess of regulatory periods Regulatory risk for investor: the likelihood that the regulator will not abide by initial agreements; tendency to renege due to political pressure or exogenous changes in the industry 16

Transmission Investment 17

Generation Load Network Management Assets Sufficient transmission resources to support balance of load and generation 18

Typical daily demand curve A: Additional potential energy if load is constant at MD, maximum demand B: Actual energy used per day 19

http://www.youtube.com/watch?feature=player_detailpage&v=as Wa7Xs2FGo California ISO DEMAND CURVE (select, right click; presentation mode: just click) 20

Capacity and reliability adequacy are interrelated concepts Generation and transmission must have capacity to supply Maximum Demand, Transmission lines usually designed to meet projected demand for several decades: cost of transmission small compared to generation plant. 21

CONNECTING GRIDS 22

Justification for Interconnectors Shared generation resources:, hydro, thermal Improved reliability: shared operating margins Facilitate electricity markets: WAPP, EAPP, SAPP 23

WAPP Interconnected Countries 2011-12 WAPP 225 kv OMVG Ph.I MALI GAMBIA GUINEA BISSAU SENEGAL GUINEA SIERRA LEONE LIBERIA CÔTE D IVOIRE BURKINA FASO BENIN GHANA TOGO NIGER NIGERIA WAPP 225 kv LSG Interconnection Amadeos presentation WAPP 2008 24

SOUTHERN AFRICAN POWER POOL DR Congo Tanzania Angola Zambia Malawi Namibia Botswana Zimbabwe Mozambique Swaziland South Africa Lesotho

POTENTIAL OF THE INGA DAM OF THE DRC ALGERIE LIBYE EGYPTE MAURITANIE MALI NIGER GAMBIE GUINEE-BISSAU GUINEE SIERRA LEONE COTE D IVOIRE BURKINA FASO GHANA TOGO BENIN NIGERIA Calabar TCHAD RCA SOUDAN ETHIOPIE DJIBOUTI CAMEROUN LEGEND Interconnection Projects GUINEE EQU. SAO TOME & PRINCIPE GABON REP. DEM. CONGO R. B. KENYA Northern Highway INGA TANZANIA Northern Highway (alternative route) COMORES Southern Highway (Eastern corridor) ANGOLA Southern Highway (Western corridor) Western Highway ZIMBABWE Converter Sub-stations Existent Sub-stations NAMIBIE BOTSWANA Planned Sub-stations SWAZILAND AFRIQUE DU SUD LESOTHO 26

27

Some questions How should regional investment be COORDINATED? Partly depends on type of transmission management and ownership Several examples worldwide of TRANSCOs and ISOs. ZTK*: Each territory responsible for construction of in-country portion of interconnector; issues of pricing as yet unresolved; Committee of ministers from the three territories take decisions. *Zambia-Tanzania-Kenya Interconnector 28

How should COSTS be allocated? Investment may target customers in a different territory. BUT Can be difficult to determine actual beneficiaries because of physics of electron flow Such investments often have multiple benefits, including: improved reliability and reduced operating margins (more capacity available) Example of DRC-Zambia Interconnector 29

What is the role of the regional REGULATOR? Work with power pools to develop menus of investment options taking account of national frameworks, structures; Determine pricing to stimulate necessary investment and equitable share of costs (beneficiaries should bear burden). Should resist revision of regulatory regime ex post. Regional regulatory imprimatur is desirable 30

End of slides 31