Atomic clocks are extremely complex pieces of equipment created to maintain highly accurate time. Most atomic clocks are so expensive and complex that they are only generally found in National Physics laboratories or National Standards Laboratories. Commercial timing equipment is generally based on GPS or National Time and Frequency radio time broadcasts. By using a relatively low-cost radio or GPS receiver highly accurate timing information can be received without the expense of installing a true atomic timepiece.
This article describes available atomic clock timing references and their use in computer network time synchronisation and NTP time servers.
National Radio time and frequency broadcasts transmit accurate time and date information from a radio transmitter. A number of radio time and frequency broadcasts are available, such as: WWVB, DCF-77 and MSF-60. The time and frequency radio transmissions are referenced to a precise atomic clock time source. By utilising a relatively low-cost radio receiver PC and NTP server systems have access to precise timing information. Additionally, radio antennas can generally obtain a good signal indoors close to the host time server making installation very straight-forward. However, radio broadcasts have a finite range and are generally only available to a regional audience.
The DCF-77 radio time and frequency transmission is broadcast from Mainflingen, near Frankfurt, Germany. The radio broadcast is a long-wave radio transmission at 77.5 kHz. T-Systems, a division of Deuche Telecom maintain the radio transmitters. The time and frequency broadcast is referenced to precise atomic clocks located at the German National Standards Laboratory (PTB) in Brunswick. The DCF-77 signal can be received using a low-cost radio receiver and when decoded provides a precise timing reference for computer time servers.
The MSF radio time and frequency transmission is broadcast from Anthorn, Cumbria in the United Kingdom. The signal is broadcast as a long-wave radio transmission at 60 kHz. The transmitted time and date information is referenced to atomic clocks sited at the UK National Physics Laboratory. The transmitters are maintained by VT Communications.
WWVB is the US National Time and Frequency radio broadcast. It is a 60 kHz transmission broadcast from Fort Collins, Colorado. The transmission is referenced to atomic clocks installed at the US National Institute of Standards and Technology (NIST). WWVB provides a time and frequency reference to within 100 microseconds of the correct time and has been in operation for 45 years.
The GPS system is a Global Positioning System intended for worldwide navigation. The GPS system consists of 24 satellites in high orbit. By utilising triangulation, the GPS system can provide highly accurate positioning information anywhere on Earth. In order to calculate position, each orbiting satellite has an on-board atomic clock timing reference. Atomic time is constantly transmitted from each satellite and is available to a GPS receiver. The GPS signal is available subscription-free anywhere on the face of the Earth. Bu using relatively low-cost GPS antenna and receiver equipment precise time and date information can be made available to time server and computer network equipment. A GPS antenna does however need to be installed ideally on a rooftop with a good 360-degree view of the sky.
The Network Time Protocol (NTP) is the standard means of achieving network time synchronisation. NTP is used to distribute accurate time around the Internet and other computer networks. The standard NTP server distribution for LINUXUNIX is available free-of-charge under the GNU public licence and provides reference clock drivers for many radio and GPS receivers. Radio and GPS receivers are available with serial or USB ports that can interface to a PC or NTP time server to provide an accurate external timing reference. Depending on time source, NTP servers can synchronise to within a few microseconds of the correct time. Depending on network traffic they can synchronise network time clients to within a few milliseconds.
To summarise, there are a number of national and global time and frequency references available for synchronising computers and computer networks. Many can provide synchronisation to within a few microseconds of the correct time. By utilising radio and GPS references, accurate time is available without the expense and complexity of atomic clocks.
Part Time Server Jobs
Every Computer has a clock that sustains the internal system time. PC clocks have low- cost crystal oscillators that are notoriously prone to drift. Each Computer can drift at different rates.
The time difference can become bigger and bigger over a period of time. This can lead to huge problems within the Company. This article conveys the value of network time synchronization and having an accurate network time server source in an organization.
Computer Time: Computer system time is maintained by low cost real time clock and crystal oscillator components. Crystal oscillators are built with very low tolerance; each oscillates at a slightly different rate. The temperature variation make the crystal change its frequency. This is one of the reason why computers are weak in keeping up an accurate time. it is necessry to synchronise the Computers otherwise they will drift at a slightly different quantity.
Each computer need a network time that is correctly synchronized otherwise it can cause huge problems, especially in transaction- processing surroundings. Unsynchronized PCs can lead to fraud and other problems that can be caused in an environment where synchronized time is needed. Problems can arise with shared network files; the reason is because the unsynchronized computers are using the same resource.
Network Time Servers: Network Time servers gain precise time from an external time reference and offer (presents) an accurate time source to network time clients. Time server use the Network Time Protocol (NTP), which is a UDP based protection over TCP/IP. There is a number of options that can be used to get an accurate time. GPS (Global Positioning Systems) offers a highly accurate time; all that is needed is a clear view to the sky. Another alternative would be radio frequency. The main countries that provide radio frequency are England (MSF); Germany (DCF-77) and the US (WWVB). Other countries are France (TDF); Canada (CHU); Japan (JJY) and Switzerland (HBG) and it is possible to obtain time from mobile phone network.
Internet Time Servers: There are a lot of Internet based NTP time server resources offered that can be used for network time synchronization. The Internet Time Server can cause Problem for the Company's Computers. The time server is located outside the firewall, so a port must be left open to access the time server. This does not just lead to Security implications, but also to problems with the time server accuracy, reliability and provision.
Local Dedicated Network Time Server: A local devoted network time server overcome many problems related to Internet based references. The time server is located inside the security firewall and does not need any external access. Also, a local time server can improve accuracy due to reliable network paths between clients and server.
To resume, the network time synchronization is an important factor in Computer network installations. Unlike the internet based network time servers, which are known for they security problems, local dedicated network time servers overcome the security problems by offering secure, accurate and reliable network time synchronization resolution.
Both David Evans & Magdalena Sperber are contributors for EditorialToday. The above articles have been edited for relevancy and timeliness. All write-ups, reviews, tips and guides published by EditorialToday.com and its partners or affiliates are for informational purposes only. They should not be used for any legal or any other type of advice. We do not endorse any author, contributor, writer or article posted by our team.
David Evans has sinced written about articles on various topics from Computers and The Internet, Personal Desktop and Computers and The Internet. Dave Evans is a technical author who specialises in atomic clock time synchronisation systems to ensure accurate time on PC's and computer networks. Click here to find out more about NTP Server and. David Evans's top article generates over 18100 views. Bookmark David Evans to your Favourites.
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