部落格

Avoiding Unscheduled Downtime by Removing the Guesswork from Rack Loading

Posted on June 18, 2014 by Gento

Traditionally, data center operators and IT professionals have used a very simple process to create a safe “A” side to “B” side failover scenario. The process and math are very straight forward. The user decides what a safe threshold is - typically 80% of the total kVA of the enclosure - and divides that value evenly between both rack power strips and their onboard circuit breakers.  Due to the relative simplicity of the architecture, this practice can work well in a single-phase, less than 5kVA environment.  However, in power kVA environments greater than 5kVA, and more complex three-phase environments that are now typical for blade and high density environments, this practice dramatically increases the likelihood of encountering a cascading failure and creates the additional downside of stranding large amounts of available space, power and cooling resources in the process.  

In order to be truly safe and avoid the negative side effects of stranding otherwise available resources, the data center operator must be able to precisely model their environment.  Ideally, this means having a data driven model that reflects both the max and average loading across all outlets, circuit breakers, and the inlet power lines.  Acquiring a usable level of precision and accuracy is extremely difficult for most operators for a variety of reasons, but the biggest challenge to overcome is the ability to correlate these data points across multiple power strips.

Even with the help of a clipboard and calculator, most of us simply can’t do the relatively complex mathematics necessary to understand the effects of additional loading or a failover in a three-phase system.  This is where employing intelligent rack PDUs and a power management system is highly advantageous. Rack PDUs can automatically collect real-time power information down to the outlet-level and provide aggregate power values across multiple strips. With this type and quality of data, commissioning is done with extreme accuracy and potential threats are eliminated. 

Watch this video to learn how some data centers use power management systems to find stranded capacity and improve data center efficiency.

Other Blog Posts

從資料中心失效對企業帶來的骨牌效應──探討感測器的重要性
Posted on November 5, 2023
更高規格的電源要求加速AI市場成長與Raritan PDU的採用
Posted on October 11, 2023
資料中心服務中斷次數減少,但停機的代價仍舊可觀
Posted on September 20, 2023
意見調查:資料中心面臨能源使用與人力短缺困境
Posted on September 20, 2023
Raritan安全切換器:相容於Secure NIAP 4.0的桌上型KVM
Posted on September 20, 2023

View all Blog Posts

訂閱

近期活動

New Zealand Cloud & Datacenter Convention 2022
3 November 2022, 9am – 4pm  •  Grand Millennium Hotel, Auckland, New Zealand
Data Centre World Singapore
12th – 13th Oct 2022
Korea Cloud & Datacenter Convention 2022
6th Oct 2022
Philippines Cloud & Datacenter Convention 2022
4th Aug 2022
JANOG50 Meeting Hokkaido
3th – 15th July 2022

View all Events

Raritan最新新聞

Legrand 使用兩大創新智慧型機架 PDU 重新活化資料中心產業
Posted on May 1, 2023
Exclusive interview丨How does Huizhou upgrade its manufacturing industry?
Posted on December 2, 2021
Raritan 發表 MasterConsole® 數位雙電腦切換器
Posted on February 18, 2021
Legrand Data, Power and Control Division Announced as Finalist in Six Categories at DCS Awards 2020
Posted on November 9, 2020
Raritan 新款智慧機櫃控制器 (SRC) 可智慧管理資料中心與關鍵任務設施的環境與安全性資訊
Posted on November 9, 2020

View all news