Ber Error Length
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Networking Telecom bit error rate (BER) Definition bit error rate (BER) bit error rate vs snr Facebook Like Tweet Google +1 LinkedIn Email Comment RSS Print A AA
Acceptable Bit Error Rate
AAA Part of the Telecom glossary: In telecommunication transmission, the bit error rate (BER) is the percentage of
Ber Repair
bits that have errors relative to the total number of bits received in a transmission, usually expressed as ten to a negative power. For example, a transmission might have http://www.keysight.com/main/editorial.jspx%3Fckey%3D1481106%26id%3D...&sa=U&ei=p-e8VMmWI8n0UsW6gKAE&ved=0CCAQ9QEwBQ&usg=AFQjCNEO_PZyV0U7VnM9OIg1LF8lmICquw a BER of 10 to the minus 6, meaning that, out of 1,000,000 bits transmitted, one bit was in error. The BER is an indication of how often a packet or other data unit has to be retransmitted because of an error. Too high a BER may indicate that a slower data rate would actually improve overall transmission time for http://whatis.techtarget.com/definition/bit-error-rate-BER a given amount of transmitted data since the BER might be reduced, lowering the number of packets that had to be resent. A BERT (bit error rate test or tester) is a procedure or device that measures the BER for a given transmission. This was last updated in September 2005 Contributor(s): Yaochou Yang Posted by: Margaret Rouse Related Terms Definitions Telecommunications - Telecommunications is the transmission of data, voice and video over significant distances by electronic means that use a wide variety of networks and media. (SearchTelecom.com) VoIP (voice over IP) - VoIP enables voice and multimedia communications, such as phone calls, over the internet and other IP-based networks, and allows enterprises to operate a single voice and data network. (SearchUnifiedCommunications.com) frequency-hopping spread spectrum - Frequency hopping is one of two basic modulation techniques used in spread spectrum signal transmission. (SearchNetworking.com) Glossaries Telecom - Terms related to telecom, including definitions about telecommunication service providers and words and phrases about voice, video and Internet communication. Internet applications - This WhatIs.com glossary contains terms related to Internet applications, including defin
Search All Support Resources Support Documentation MathWorks Search MathWorks.com MathWorks Documentation Support Documentation Toggle navigation Trial Software Product Updates Documentation Home Communications System http://www.mathworks.com/help/comm/ref/biterr.html Toolbox Examples Functions and Other Reference Release Notes PDF Documentation End-to-End Simulation Sources and Sinks Communications System Toolbox Measurements, Visualization, and Analysis Communications System Toolbox Functions biterr On this page Syntax Description For All Syntaxes For Specific Syntaxes Examples Bit Error Rate Computation Estimate Bit Error Rate for 64-QAM in AWGN See Also This is machine translation bit error Translated by Mouse over text to see original. Click the button below to return to the English verison of the page. Back to English × Translate This Page Select Language Bulgarian Catalan Chinese Simplified Chinese Traditional Czech Danish Dutch English Estonian Finnish French German Greek Haitian Creole Hindi Hmong Daw Hungarian Indonesian Italian Japanese Korean Latvian Lithuanian bit error rate Malay Maltese Norwegian Polish Portuguese Romanian Russian Slovak Slovenian Spanish Swedish Thai Turkish Ukrainian Vietnamese Welsh MathWorks Machine Translation The automated translation of this page is provided by a general purpose third party translator tool. MathWorks does not warrant, and disclaims all liability for, the accuracy, suitability, or fitness for purpose of the translation. Translate biterrCompute number of bit errors and bit error rate (BER)collapse all in page Syntax[number,ratio] = biterr(x,y) [number,ratio] = biterr(x,y,k) [number,ratio] = biterr(x,y,k,flg) [number,ratio,individual] = biterr(...)
DescriptionFor All SyntaxesThe biterr function compares unsigned binary representations of elements in x with those in y. The schematics below illustrate how the shapes of x and y determine which elements biterr compares. Each element of x and y must be a nonnegative decimal integer; biterr converts each element into its natural unsigned binary representation. number is a scalar or vector that indicates the number of bits that differ. ratio is number divided by the total number of bits. The total number of bits, the size of number, and
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