Presentation


PS1
 Role of ICT in Power System
PS2
Standards, Security and Leading edge Technologies in the Context of Power Systems
PS3
Renewable Generation plant communications
D2-01_02 :Challenges and Benefits of a Unified Synchronism Network
CASE CHESF
- Rodrigo Leal de Siqueira, Brazil
D2-02_03 :Achieving redundancy using configuration exchange through GOOSE communication in Substation - Ravishankar Y A, India D2-03_01 : Renewable Generation Plant Communications
D2-01_04 : Smart, utility-grade Wi-Fi Mesh for Distribution Grids - Paul Schwyter, Switzerland D2-02_07 :Real Time Energy Management in Smart Grid - Sunil Kumar Vuppala, India D2-03_05 : Development of Photovoltaic Power Generation Facility Monitoring System for Decentralized Power Plant Operators - Kazumi Inoue, Japan
D2-01_08: Approaches to Smart Grid Communications Networks in Japanese Electric Power Companies - Naomasa Takahashi, Japan D2-02_08 :Cyber Security in implementing in modern grid Automation system - S.R. Vijayan, India D2-03_03 : RENEWABLE GENERATION PLANT COMMUNICATIONS THE APPLICATION OF TELEPROTECTION SYSTEMS IN COGENERATION PLANTS
D2-01_12 : Disaster resilient telecommunications systems for smart grid in Japan -  Atsushi Ohara, Japan D2-02-09 : Construction of Next-generation Security Infrastructure to Cope with New Types of Cyber Attacks - Takehiro Sueta, Japan D2-03_04 : Renewable Generation Plant communications
D2-01_17 : Preparing ICT towards electrical business continuity - J. Costa, Uruguay D2-02_15 :Research on Periodic Oscillation Test Equipment for TCR Thyristor Valves - Liu Bu Feng, China D2-03_06 : Communication Architectures to connect Renewable Energy Resources in the Residential Area
D2-01_18 : Adaptability of Wireless Sensor Network for Integrating Smart Grid Elements in Distribution System - Mrityunjai Tiwari, India D2-02_17 :Cyber Security – Secure communication design for protection and control IEDs in substations - Sukumara T., India D2-03_09 : Renewable Generation –Tariff Mechanism for Enabling DSM and DR at Consumer Level
D2-01_24 :

Prototype and Evaluation of Communication Network for WAMPAC System Based on International Standards  - Yoshizumi Serizawa, Japan

D2-02-16 :ONLINE/ AUTOMATIC AND MANUAL APPLICATIONS OF INFRARED THERMOGRPAHY IN ELECTRICAL SECTOR
D2-01_25 : First steps towards synergizing communication system, wams and situational awareness system by - A.R.Kulkarni * , U.G. Zalte, MAHATRANSCO D2-02-01 : INFORMATION SYSTEMS AND TELECOMMUNICATION (FUTURE CONTROL CENTER WITH ADVENT OF SMARTGRID )
D2-01_16 : COMMUNICATION ALTERNATIVES FOR SMART GRIDS: THE INTEGRATED APPROACH D2-02-11 : Application of a Cyber Security Assessment Framework to Smart Grid Architectures
D2-01_22 : Experience of Up-scaling and Integration of Regional Level Synchrophasors Pilot Projects to a National Level project D2-02-12 : Comprehensive Cybersecurity strategy for Smartgrid equipment manufacturers
D2-01-28 : Role of ICT in Power Sector D2-02-18 : Is the Stationary lithium-ion battery a good choice for the telecommunications in an Electric Power Utility
D2-01_34 : A Smart Grid Application for Dynamic Reactive Power Compensation D2-02-14 : Preventive simulation studies based on single-phase test of 750kV Magnetic Controllable Reactor
D2-01_27 : Role of ICT in Power Sector D2-02-04 : Building an Interoperable Grid with Industry-Standard IPV6 Architecture
D2-01-01 : INFORMATION SYSTEMS AND TELECOMMUNICATION COMMUNICATION SYSTEM FOR SMART TRANSMISSION
D2-01-14 : Last Mile Connectivity Challenges in Smart Grid
D2-01-15 : Power quality information system based on data energy metering integration and analysis
D2-01_20 : Communication Challenges for Smart Grid
D2-01_29 : MIDAS
D2-01_30 : Alarms rationalization in Mexico power units
D2-01-31 : Synchrophasor: Implementation,Testing & Operational Experience
D2-01_33 : Out-of-step Detection using Wide Area Measurements
D2-01_37 : WAN Network Communications Architectures for Smartgrids: Case Study comparison
D2-01_10 : The role of Communication systems for Smart transmission
D2-01_07 : Role of ICT in Power System:- Architecting a packet based network for to support current, developing and future utility use cases and applications