下载PDF
BHI: Transforming Workplace Productivity with Google Workspace and AppSheet
技术
- 无人机 - 无人机有效负载与配件
- 平台即服务 (PaaS) - 应用开发平台
适用行业
- 水泥
- 可再生能源
适用功能
- 维护
- 采购
用例
- 施工管理
- 施工现场监控
服务
- 测试与认证
挑战
BHI 是一家为美国各行业提供服务的交钥匙总承包商,该公司正在努力解决阻碍其生产力和增长的过时技术。随着该公司将业务扩展到超过 25 个州,其技术基础设施(包括文件共享和电子邮件系统)却落后了。员工必须经历一个繁琐的过程,即通过 VPN 从互联网连接有限的工作地点下载、编辑和上传文件。这种低效的系统不仅耗时,而且阻碍了团队之间的协作。该公司认识到需要一种更具创新性、生产力和盈利能力的技术解决方案,以跟上其发展和日益流动的员工队伍的需求。
关于客户
BHI 是一家交钥匙总承包商,为美国各地的民用、管道、通信、电力和可再生能源等众多行业提供服务。在过去的 20 年里,该公司从犹他州弗纳尔的一家小型建筑公司发展壮大,业务已扩展到超过 25 个州。尽管 BHI 不断发展,但过时的技术阻碍了其生产力和协作。该公司的员工大部分没有办公桌,占公司员工总数的 90%,分布在 150 多个工作地点。 BHI 认识到需要一种更具创新性、生产力和盈利性的技术解决方案来支持其发展和日益流动的员工队伍的需求。
解决方案
BHI 采用 Google Workspace 和 AppSheet 来彻底改造其技术基础设施。 Google Workspace 因其久经考验的功能而被选中作为远程团队的协作解决方案。 BHI 在不到一周的时间内将其 500 名员工迁移到 Google Workspace,使他们能够更轻松地协作并从任何设备、任何地点访问工作。这极大地改善了合同编写等流程,其中版本控制一直是一个重要问题。借助 Google Workspace,多个团队可以在工作地点编辑和跟踪合同变更,从而消除版本控制问题。采用AppSheet 来简化公司无办公桌员工的流程,该员工占公司的90%。 AppSheet 支持创建简化关键任务的应用程序,使移动工作人员能够更快、更高效地完成工作。例如,以前需要两个小时的检查过程减少到六分钟,每月节省超过 50,000 美元的劳动力。
运营影响
数量效益
相关案例.
Case Study
Remote Monitoring & Predictive Maintenance App for a Solar Energy System
The maintenance & tracking of various modules was an overhead for the customer due to the huge labor costs involved. Being an advanced solar solutions provider, they wanted to ensure early detection of issues and provide the best-in-class customer experience. Hence they wanted to automate the whole process.
Case Study
Vestas: Turning Climate into Capital with Big Data
Making wind a reliable source of energy depends greatly on the placement of the wind turbines used to produce electricity. Turbulence is a significant factor as it strains turbine components, making them more likely to fail. Vestas wanted to pinpoint the optimal location for wind turbines to maximize power generation and reduce energy costs.
Case Study
Siemens Wind Power
Wind provides clean, renewable energy. The core concept is simple: wind turbines spin blades to generate power. However, today's systems are anything but simple. Modern wind turbines have blades that sweep a 120 meter circle, cost more than 1 million dollars and generate multiple megawatts of power. Each turbine may include up to 1,000 sensors and actuators – integrating strain gages, bearing monitors and power conditioning technology. The turbine can control blade speed and power generation by altering the blade pitch and power extraction. Controlling the turbine is a sophisticated job requiring many cooperating processors closing high-speed loops and implementing intelligent monitoring and optimization algorithms. But the real challenge is integrating these turbines so that they work together. A wind farm may include hundreds of turbines. They are often installed in difficult-to-access locations at sea. The farm must implement a fundamentally and truly distributed control system. Like all power systems, the goal of the farm is to match generation to load. A farm with hundreds of turbines must optimize that load by balancing the loading and generation across a wide geography. Wind, of course, is dynamic. Almost every picture of a wind farm shows a calm sea and a setting sun. But things get challenging when a storm goes through the wind farm. In a storm, the control system must decide how to take energy out of gusts to generate constant power. It must intelligently balance load across many turbines. And a critical consideration is the loading and potential damage to a half-billion-dollar installed asset. This is no environment for a slow or undependable control system. Reliability and performance are crucial.
Case Study
System 800xA at Indian Cement Plants
Chettinad Cement recognized that further efficiencies could be achieved in its cement manufacturing process. It looked to investing in comprehensive operational and control technologies to manage and derive productivity and energy efficiency gains from the assets on Line 2, their second plant in India.
Case Study
Remote Monitoring and Control for a Windmill Generator
As concerns over global warming continue to grow, green technologies are becoming increasingly popular. Wind turbine companies provide an excellent alternative to burning fossil fuels by harnessing kinetic energy from the wind and converting it into electricity. A typical wind farm may include over 80 wind turbines so efficient and reliable networks to manage and control these installations are imperative. Each wind turbine includes a generator and a variety of serial components such as a water cooler, high voltage transformer, ultrasonic wind sensors, yaw gear, blade bearing, pitch cylinder, and hub controller. All of these components are controlled by a PLC and communicate with the ground host. Due to the total integration of these devices into an Ethernet network, one of our customers in the wind turbine industry needed a serial-to-Ethernet solution that can operate reliably for years without interruption.
Case Study
Temperature monitoring for vaccine fridges
Dulas wanted a way to improve the reliability of the cold chain, facilitating maintenance and ensuring fewer vaccines are spoiled. Dulas wanted an M2M solution which would enable them to record and report the temperature inside vaccine refrigerators.