技术
- 应用基础设施与中间件 - 数据可视化
- 功能应用 - 远程监控系统
- 网络与连接 - 蜂窝
- 平台即服务 (PaaS) - 设备管理平台
- 传感器 - 电表
适用行业
- 电网
适用功能
- 商业运营
用例
- 能源管理系统
客户
普拉亚斯能源
关于客户
Prayas Energy Group 是一家位于印度浦那的非政府非营利组织,致力于保护和促进能源部门的公众利益。该集团为印度能源部门做出了重大贡献,并拥有
挑战
面临几个挑战:
- 由于这些数据将属于公共领域,因此这些数据的准确性和真实性至关重要。它应该能够经受住审查。
- 制造一种能够承受从低至 90v 到高达 320v 的广泛电压波动的电器具有挑战性。由于该设备将安装在偏远地区,因此其弹性至关重要。
- 该设备将不得不应对网络覆盖差的问题,并且在网络不可用时能够存储和重新传输数据,这在印度农村地区很常见。该设备最多可存储 30 天的数据。
- 处理数据的平台应该随时可用且高度可靠,并且永远不会丢失数据包。
解决方案
数量效益
Case Study missing?
Start adding your own!
Register with your work email and create a new case study profile for your business.
相关案例.
Case Study
Hydro One Leads the Way In Smart Meter Development
In 2010, Ontario’s energy board mandated that time-of-use (TOU) pricing for consumers be available for all consumers on a regulated price plan. To meet this requirement, Hydro One needed to quickly deploy a smart meter and intelligent communications network solution to meet the provincial government’s requirement at a low cost. The network needed to cover Hydro One’s expansive service territory, which has a land mass twice the size of Texas, and its customers live in a mix of urban, rural, and remote areas, some places only accessible by air, rail, boat or snowmobile. Most importantly, the network needed to enable future enterprise-wide business efficiencies, modernization of distribution infrastructure and enhanced customer service. To meet these needs, Hydro One conceptualized an end-to-end solution leveraging open standards and Internet Protocols (IP) at all communication levels. The utility drew upon industry leaders like Trilliant to realize this vision.
Case Study
Selling more with Whirlpool
Whirlpool wanted to add connectivity to appliances and transform the company's relationship with customers. Traditionally, Whirlpool interaction with customers was limited to purchases made once every ten years. Connected washer and dryers provide exciting new features like remote management of start times and inter-machine communication.
Case Study
SAS® Analytics for IoT: Smart Grid
Companies face falling revenues, rising infrastructure costs, and increasing risk of outages caused by inconsistent energy production from renewable sources. Less money is coming in as more people and organizations take steps to curb their energy use. Utilities are paying more to maintain and build infrastructure due to increasing complexity, resulting from the rising number of intermittent and variable renewable energy sources connected in the distribution grid.
Case Study
Enel Secures Italian Power Generation Network
Electric energy operators around the world are working to increase the reliability and cyber resiliency of their systems. This includes Enel, a global power company that manages and monitors the Italian power grid. This grid:• Serves 31 million customers• Has a net installed energy capacity exceeding 31 gigawatts• Includes more than 500 power generation plants,including hydroelectric, thermoelectric, and wind• Is managed and monitored by Enel 24/7/365• Is operated by Terna, the Italian Transmission System Operator (TSO)Enel is responsible for the availability of the grid’s underlying ICS and industrial network. It also manages Regional Control Centers and Interconnection Centers which connect with the TSO. The TSO manages the flow of energy to the grid plus controls and remotely regulates the power generation of power plants, increasing and decreasing power production as required. The complex system of interaction and cooperation between Enel and the TSO has strong security implications as well as operational and business challenges.
Case Study
Hydro Utility Builds Foundation for Powerful Efficiencies and Protection
As the main British Columbia electric distributor, BC Hydro provides 1.9 million residential, commercial, and industrial customers with energy. The hydro utility transformed to a digital business with Cisco connected networking, security, and smart grid solutions. • Deliver reliable, high-quality services • Enable remote automation and monitoring • Connect applications over a common networking infrastructure
Case Study
IIC Communication & Control Testbed for Microgrid Applications
Traditional central-station power grids operate on 15-minute output update cycles that force operators to over-generate power to compensate for potential blackouts or unexpected new power demands on the grid. Additionally, they cannot efficiently utilize the distributed, dynamic generation of renewable power sources such as solar panels or wind turbines.