SEN EDS is a leader in providing Best Power System Analysis in Andhra Pradesh, delivering tailored solutions for industries, power plants, substations, and renewable energy systems. Our comprehensive services include:

  • Load Flow Analysis
  • Fault Analysis
  • Transient Stability Studies
  • Insulation Coordination
  • Grid Compliance

With over a decade of industry expertise and the use of advanced tools like ETAP and DIgSILENT, we ensure optimal performance, minimal downtime, and strict adherence to regulatory standards. At SEN EDS, we specialize in designing efficient and reliable power systems that enhance energy efficiency and safety, making your infrastructure robust and future-ready.

Comprehensive Power System Studies

Our studies are critical for evaluating electrical system performance and managing unexpected events like faults. We actively use cutting-edge platforms such as ETAP and DIgSILENT—two industry-leading software solutions—to perform detailed calculations and simulations.

Key features of our services include:

  • Compliance with IEEE Standards for accuracy and reliability.
  • A wide range of essential studies focused on optimizing system performance and safety.
  • Tailored solutions to meet the unique requirements of each project.

With SEN EDS, you gain access to the Best Power System Analysis in Andhra Pradesh, ensuring your energy systems are efficient, safe, and prepared for future demands.

At SEN EDS, we are committed to delivering top-tier Power System Analysis services tailored to meet your specific needs. Here’s why we are the trusted choice for industries, power plants, and renewable energy projects across Andhra Pradesh:

  • Decade of Expertise: With over 10 years of experience, we specialize in designing and analyzing electrical systems across diverse sectors, ensuring efficiency and reliability.
  • Comprehensive Services: From load flow analysis and fault analysis to stability studies, we offer a full spectrum of services to optimize your electrical infrastructure.
  • Cutting-Edge Technology: Utilizing advanced tools like ETAP and DIgSILENT, we deliver accurate and high-performance power system analysis solutions.
  • ISO-9001:2015 Certified: Our certification highlights our commitment to quality, consistency, and excellence in project delivery.
  • Customized Solutions: We design tailored power system analysis strategies to align with your project’s unique requirements.
  • Energy Optimization and Safety: Our focus is on improving energy efficiency, reducing costs, and ensuring compliance with all safety standards.
  • Expert Team: Backed by a team of highly skilled engineers, we provide exceptional technical support and innovative solutions throughout the project lifecycle.

Choose SEN EDS for dependable, efficient, and future-ready power system solutions in Andhra Pradesh!

Power System Analysis
  • The Power Flow Simulation is a fundamental analysis module for demand evaluation, power flow analysis, losses, power factor correction and voltage drop calculations. 
  • The flow of power, current, voltage, real power and reactive power in a system under any load conditions.

Perform Device Duty Calculations using ETAP’s Short Circuit analysis software which allows you to determine fault currents and automatically compare these values against manufacturer Short Circuit current ratings. Overstressed device alarms are displayed on the one-line diagram and included in Short Circuit Analyzer and study reports.

Analyze the effect of balanced and unbalanced faults using ETAP Short Circuit analysis software.

ETAP Short Circuit software makes it easy to go from selecting elements, (from the comprehensive library of Short Circuit current ratings), to performing dozens of different types of Short Circuit analysis. Analyzers, plots and reports allow for quick determination of the worst-case fault current device duty.

Transient Stability Analysis enables engineers to accurately simulate and analyze power system dynamics and transients via system disturbances and other events. ETAP Transient Stability leverages detailed and validated equipment, protection functions, and built-in and graphical user defined control models to perform analysis for industrial to transmission power systems.

The nonlinear power-angle connection impacts the system response, which incorporates considerable expeditions of generator rotor angles. Following such abrupt power system disturbances, rotor angular disparities, rotor speeds, and power transmission experience rapid changes whose magnitudes are depending on the severity of the disturbances.

Transient Stability is a quick phenomenon that generally occurs within a few seconds for a generator located near to the source of the disturbance.

  • The reliability of Power System operation mainly depends on the integrated performance of Protection Relays. The Relays should operate for all faults in its own zone (Primary protection) and also provide backup protection for faults in immediately adjoining zone in the downstream, if the relay in that adjoining zone (Primary protection) fails to operate.
  • The Overcurrent & Earth Fault Relay Co-ordination Study is to determine the characteristics, ratings and settings of over-current protective devices which will ensure that the minimum un-faulted load is interrupted when the protective devices isolate a fault or overload anywhere in the system. At the same time, the devices and settings selected must provide satisfactory protection against overloads on the equipment and interrupt short circuit as rapidly as possible. Thus, the practice of protection engineering involves fault studies followed by relay setting, checking and co-ordination studies. These studies are necessary in order to ensure that the variety of protective relays function correctly with proper discrimination to provide the required reliable, sensitive and selective isolation of faulty section of the power system network. The Relay Co-ordination Studies are conducted to determine and cross check the existing relay settings.
  • The objective of Relay Coordination Study is to determine optimum settings for protection devices such that protection system isolates the minimum possible faulty portion at the earliest possible in order to ensure the reliable power supply for the healthy system.
  • To determine maximum incident energy at MV and LV Switchgear.
  • Collection of inputs (SLD, equipment parameters – Voltage kV rating, Power MVA rating, Impedance, System fault level, X/R ratio, Protection Settings).
  • The Arc Flash Analysis program is a completely integrated module that solves multiple scenarios to determine worst-case arc flash energy levels. The Arc Flash calculation software module also produces professional reports and high-quality arc flash hazard labels at a press of a button.
  • The Arc Flash Analysis module also includes comprehensive single phase and three phase arc flash calculations as well as an invaluable arc flash analyzer tool to summarize results from the Arc Flash Study.
  • Harmonic Analysis module, you can simulate harmonic current and voltage sources, identify harmonic problems, reduce nuisance trips, design and test filters, and report harmonic voltage and current distortion limit violations.
  • Motor Acceleration Analysis module can help you perform Motor Acceleration studies to optimize motor performance and ensure the reliability of electrical works.
  • To accurately evaluate the motor/load speed-torque characteristics
  • To check whether The Transformers, Power Sources, Motor Feeders, and the corresponding protective devices are sized properly to handle the starting transients.
  • Grid Islanding Study involves analyzing the network’s characteristics, load distribution, and protective devices to identify areas suitable for islanding.
  • Grid Islanding is the controlled separation of a portion of the power distribution network to create a self-sustaining “island”, that can continue to operate independently. This study ensures that critical facilities can continue to receive power during grid outages or disturbance.
  • The primary goal of the Insulation Coordination Study is to align the insulation levels of the Switchgear Equipment with the Protection.
  • Overvoltage’s arising from events such as cable energization, re-energization, fault application/clearing, and capacitor bank switching are examined in the Insulation Coordination Study to determine the suitable size and placement of Surge Arresters.
  • Electrical Equipment Reliability data should be based on historical performance of components in the same environment as those in considered system. The Reliability surveys provide a source of component data when such specific data is not available.
  • Reliability analysis is a systematic approach used to assess the dependability and consistency of a system or process. It involves identifying potential failures, analyzing their causes, and implementing measures to prevent or mitigate them.
Neduncheziyan GNeduncheziyan G
02:11 28 Apr 23
Nice place to learn and work...
Janakiraman LJanakiraman L
06:55 08 May 19
Experience stuff. Gain more knowledge about Electrical Detailed Design. And also ETAP training very well.
Vinoth Kumar PankajVinoth Kumar Pankaj
05:00 08 May 19
Professional and experienced faculty. Explaining the concepts in a very easy and understandable way.
Balakrishnan KrishnanBalakrishnan Krishnan
19:41 17 Mar 17
Awesome training Place for Electrical Design EngineeringExcellent Faculty.
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SEN EDS offers Engineering Consultancy, Detailed Engineering Services and Power System Engineering Services (ETAP & DIgSILENT & PSCAD) for Switchyard up to 400kV Substation, Port, Industrial Project (Oil and Gas Plant, Steel Plant, Thermal Power Plant, Cement Plant, Water Treatment Plant), Grid Impact Study and Grid Code Compliance (UK, Oman, KSA, UAE, etc.), Airport Project, Specializing in Renewable Energy (Solar and Wind with BESS Plant)

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