Technological platform “Medicine of the future”


Energy 14.Intelligent Power System of Russia



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Energy

14.Intelligent Power System of Russia


1. Technology platform name – "Intelligent Power System of Russia".

2. Organization-coordinator of the technological platform and its contact

Russian Energy Agency,

Alexey Konev, Innovation Director,

tel. (495) 789-9292, e-mail: konev@rosenergo.gov.ru

  1. List of Technology Platform participants "Intelligent Power System of Russia"



1

Cisco System

2

LLC ASTpribor

3

Urals Power Engineering Company

4

GE Energy

5

Huawei Technologies Co., Ltd.

6

Russintek LLC

7

Sagem Communications (SagemСОМ)

8

ABB

9

Closed Joint-Stock Company «Energy Forecasting Agency» (the EFA)

10

AFNOR Rus

11

OJSC Bashkirenergo

12

BioTerm

13

OAO VNIPIneft - Research and Design Institute for Oil Refining and Petrochemical Industry

14

VNIPIenergoprom

15

Wind Energy Systems - South

16

Gazprom Neft

17

Gazprom energo

18

Gazprom energoholding

19

JSC "Generation Company"

20

HYDROFLEX LCC

21

National Research University "Higher School of Economics"

22

Industrial Institute (branch) SEI HPE Altai State University. II Polzunova "

23

Far Eastern Federal University

24

Ivanovo State Power Engineering University (ISPEU)

25

Irkutsk State Technical University (ISTU)

26

Kabardino-Balkaria State University

27

Moscow Power Engineering Institute (Technical University)

28

Tomsk Polytechnic - National Research University of resource-efficient technologies

29

GOU VPO Nizhny Novgorod State Technical University. REAlexeev

30

Novosibirsk State Technical University (NSTU)

31

International Graduate School of Management (MVSHU)

32

SOUTH URAL STATE UNIVERSITY

33

VPO South Ural State University (SUSU) (city Miass)

34

Pöyry Group

35

Far Eastern Generating Company

36

Far Eastern National University

37

DATA LCC

38

CJSC "Russian Telecom Equipment Company” (RTEC)

39

UES Engineering Center

40

Open Joint Stock Company« Volga Power Engineering Center »

41

The Design & Research Institute of Power Systems and Networks «ENERGOSETPROJECT» (the ESP)

42

Institute of Integrated Research in Energy

43

LEU VPO "Institute of Continuing Education"

44

the Institute for Safe Development of Atomic Energy Sciences

45

Russian Academy of Sciences Institute of Energy Systems. LA Melentyeva

46

Institute of Energy Strategy (PG PWI)

47

OAO INTER RAO UES

48

Interautomatika AG

49

the Institute of Advanced Studies of civil servants

50

Company GloWers

51

JOINT-STOCK COMPANY "ENGINEERING AND TECHNICAL CENTER" continuum PLUS

52

Ltd. Engineering Center ENERGOAUDITKONTROL

53

Limited liability company "COWI engineering, environmental and economic consultations"

54

Committee on Energy Policy and Energy Efficiency

55

Accenture PLC COMPANY

56

company 3-GIS

57

Russian superconductor Corporation

58

Kuzbass Joint-Stock Energy and Electrification Company

59

Limited Liability Company "Lithium-ion technology (LLC LIOTEH")

60

International Finance Corporation - IFC

61

JSC “MOESK”

62

Joint Stock Company “FGC UES”

63

JSC Mentor-TehEnergo

64

Scientific-Technical Center "Optimizing Control in energetics"

65

Non-profit Partnership “Russian Mining Operators”

66

NEOLANT Group

67

JSC NIIPT

68

Rosneft

69

Development Fund Center for the development and commercialization of new technologies (the Fund Skolkovo)

70

Ltd. Novo Salavat CHP

71

the North-Caucasian Mining and Metallurgical Institute (State University of Technology)

72

Russian Technology Transfer Network (RTTN)

73

NP VTI

74

Non-profit Partnership “Innovations in Electric Power Industry” (INVEL)

75

non-profit partnership "International Centre for Energy Efficiency, energy and renewable energy sources" (SRO NP MTsEEiVIE ")

76

non-profit partnership "Council electricity producers and strategic investors Electricity signed a Cooperation Agreement

77

Non-Profit Partnership "The Guild energoauditorov"

78

OJSC R&D Center for Power Engineering

79

Public expert council "Power equipment repair & maintenance effectiveness (with advanced training institute)"

80

United Metallurgical Company (OMK)

81

JSC WGC-3

82

JSC WGC-4

83

JSC WGC-6

84

Ltd. Portal Engineering

85

PricewaterhouseCoopers”

86

Proline LCC

87

RAO Energy Systems of the East

88

The State Atomic Energy Corporation ROSATOM incorporates

89

RTSOFT

90

RusHydro

91

Joint Stock Company “North-West Power Engineering Center”

92

Open Joint Stock Company "Tatenergo"

93

Siberian Energy Association (CEA)

94

Siberia-Urals Petrochemical Company (SIBUR)

95

JOINT-STOCK COMPANY "SIBERIAN POWER ELECTRONICS"

96

Siemens AG

97

Stroy-Marketing LCC

98

the Siberian Coal Energy Company

99

JSC "TGC-2"

100

JSC "TGC-11"

101

JSC "TGC-16"

102

OOO TELEKOR-ENERGY, LLC

103

JSC TNK-BP

104

Closed Joint-Stock Company "Management company" Infrastructure Investment "

105

St.Petersburg Institute for Informatics and Automation of RAS

106

Russia Academy of Sciences Institute of Control Sciences

107

Institute for Energy Studies

108

Russian Academy of Sciences Institute of High Temperatures RAS

109

Siberian Federal University

110

Taganrog Institute of Technology, Southern Federal University

111

FSUE REA Russian Ministry of energy

112

VNIINMASH

113

Federal State Unitary Enterprise All-Russian Electrotechnical Institute. Lenin" (Federal State Unitary Enterprise VEI)

114

Joint Stock Company “FGC UES”

115

I.T. Co.

116

Branch of JSC "UES Engineering Center" - "Firm ORGRES"

117

FNK Engineering Company

118

Joint Stock Company “FGC UES”

119

Hitachi, Ltd.

120

Open Joint Stock Holding Company «ELEKTROZAVOD»

121

JSC "IDGC Holding"

122

Honeywell International Inc.

123

U.S. and Canada Institute of the Russian Academy of Sciences (ISCRAN)

124

Center for Energy Efficiency EES Consulting

125

CIAM PI Baranova

126

OJSC Enel OGK-5

127

ESRI CIS

4. Brief description of prospective tasks and main results of technology platform foundation

Main tasks of technology platform :



  • definition of main requirements for domestic power system of the future and its functional properties with regard to current and prospective challenges of Russian and world power development trends;

  • formation of Russian strategic power development ;

  • definition of main technological development directions of all power system elements: generation, transportation and distribution, sales as well as consumption and management ;

  • definition of innovative components, technologies, information and management solutions in above mentioned spheres;

  • modernization coordination (to overcome technological gap) and innovative development of Russian power industry;

  • establishing (improvement) of incentives, tools and mechanisms for development of scientific and technical capabilities of Russia, upgrade of production capacity associated with power industry and related sectors of Russian economy (science, machine building industry, instrument engineering, electrical engineering, information technology and management systems , communications, education and training);

  • creation of highly efficient, environmentally friendly, safe and reliable power system of Russia (Russian power system) on the basis of innovative technology.

Main results of technology platform creation:

Short-term results:

  • concept and roadmap of Russian intelligent power system;

  • list of major Russian competencies, technologies and equipment, competitive in domestic and international markets;

  • definition of requirements in equipment and technologies, identification of technological gaps in strategic sectors of the economy;

  • R & D programs, technology transfer and production localization ;

  • training program in the field of intelligent technologies ;

  • standards development program in the field of intelligent power technologies;

  • new research and production chains, consortia, clusters to solve strategic tasks of technological platform.

Medium-term results:

For power engineering companies :



  • transparent accounting and cost calculating system for electric supply and related infrastructure ;

  • real time monitoring of parameters and power system modes ;

  • automated power modes control, including change of network topology in real time;

  • algorithms and software products, hardware, providing management improvement for power facilities and power system control as a whole ;

  • reduction of power losses and expenses for auxiliaries;

  • transition to intelligent monitoring, accounting and production equipment diagnostics techniques to ensure effective functioning and operation, as well as the reduction of process risks and consequences of accidents.


For supervising agencies:

  • transparent system of electric power supply and consumption accounting to establish commercially reasonable rates based on actual data .


For end users:

  • power supply reliability improvement ;

  • overall service level enhancement ;

  • access to real time power consumption data;

  • ability to control energy consumption.

Long-term results:

  • reduction of system failure risks;

  • increase of generation economic efficiency due to "flexible" management and improved equipment efficiency ;

  • increased power system resistance to natural disasters ;

  • increase in the share of renewable and distributed generation, as a part of Russian united power system;

  • consumers participation in demand management and ability to sell power produced by their own generating equipment on the market ;

  • enhancement of revealed Russian competitive advantages and elimination of technological gaps in strategic sectors of the economy ;

  • increase of Russia's share on international market of intelligent equipment and technologies;

  • innovative renovation of power sector with minimal capital investments aimed at ensuring high power, economic and environmental efficiency of production, transportation, distribution and use of energy ;

  • development of small-scale power engineering in decentralized energy supply area through more efficient use of local energy resources, development of power facilities, reduction of imported petroleum products consumption;

  • reduction of transportation losses due to performance optimization and consumers demand assessment ;

  • reduction of commercial losses in distribution and sales by improving accounting system, remote spot cut-offs for non-payment, introduction of prepayment system;

  • increase of electrical networks capacity due to active network elements and reactive power compensation ;

  • reduction of energy costs for government organizations, housing and communal facilities ;

  • electric power supply quality improvement ;

  • mitigation of negative impact on the environment ;

  • improved economic competitiveness and job creation in high-tech field ;

  • efficient use of production assets throughout their life cycle .

5. Brief description of markets and economical sectors, expected to be influenced by technologies, developed under this technology platform

Techniques, developed in the framework of this technology platform bear stimulating effect on the following markets:



  • wholesale and retail electric power markets

  • electric power transmission services

  • electric power export

  • production and supply of energy fuel

  • transportation services for energy fuel

  • production and supply of electrical equipment and products of power-machine building industry

  • provision of engineering services in power engineering field

  • IT technology market

  • financial markets (long-term investments in strategic sectors of the economy)

  • industrial risks insurance market

  • maintenance market in power engineering field

  • labour market in power facilities operation and capital construction sphere

  • services market in educational sphere

and economic sectors :

  • power engineering

  • industrial energy sector

  • production, transportation and supply of energy fuel

  • power-plant engineering

  • capital construction

  • information technologies

  • education

  • housing and communal services .

6. Information about the prospective directions of cooperation with foreign companies and organizations

  1. Creation of joint research & development centers aimed at:

  • Elaboration of requirements for the future energy industry

  • Definition of research fields of the first priority

  • Elaboration and testing of new technologies

  • Elaboration (improvement) of computer models for united energy system of Russia taking into account new smart technologies

  • Joint pilot projects in Russia and abroad

  • Training of specialists

  1. Creation of demonstration sites (including virtual) for promotion of modern achievements in the sphere of smart technologies for energy industry on the basis of national innovation centers.

  2. Regular information exchange, including:

  • Acquisition of information about research & development, conducted by EPRI, CEATI and other scientific organizations;

  • Pilot projects and their results;

  • Efficiency of smart technologies implementation

  • Methods for assessment of implementation efficiency of smart technologies in different spheres;

  • Currently implemented innovation technologies as well as planned for implementation with the next 5-10 years

  1. Participation of members of Russian technological platform “Smart energy system of Russia” in international workshops, conferences and symposiums

  2. Setting-up of cooperation with international organizations and companies, operating in smart technology for energy industry sphere, including signing of cooperation agreements with European technological platforms, foreign scientific centers and research funds

  3. Invitation of leading foreign companies and experts/ operating in the sphere of smart technologies for energy industry to take part in Russian technological platform «Smart energy system of Russia»

  4. Harmonization and elaboration of standards in order to provide large-scale implementation of smart technologies

  5. Cooperation in the field of information security and technological reliability during implementation of smart technologies in energy industry.





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