reemusk
09-28-2005, 03:02 PM
Glossary
AMPS (Advanced Mobile Phone System) is a somewhat ironic name for the original cellular system authorized in the United States. It uses an analog FM radio link and it is very easy to eavesdrop on it. AMPS is particularly inefficient in use of spectrum compared to any of the digital standards. Generally AMPS still has the best coverage of any of the standards (solely due to its ten year head start on buildout), but that's about the only thing it has going for it. Sound quality is generally worse than any of the digital standards.
Bit within the context of CDMA is distinct from chip and refers to a payload binary digit. Each bit is represented by many chips. Bits contain information and are subject to the laws of Information Theory.
CDMA stands for Code Division Multiple Access and refers to a technology for the radio link which utilizes spread spectrum communication with very tightly controlled power levels by all participants. There is currently (2/2000) only one commercial system which uses CDMA, covered by the specifications IS-95 and J-STD-008, and thus the term CDMA is often used to refer to that system. In future, other systems will adopt a CDMA air interface. CDMA was designed by Qualcomm in the US.
Cellular is a word used to mean a lot of different things. According to the FCC, cellular refers to any portable phone system which operates in the 800 MHz band allocated for use by portable phone systems. This includes AMPS, IS-136 and IS-95. At one time, only AMPS existed, and in some contexts cellular is used as a synonym for AMPS. (In particular, a "cellular ready modem" usually refers to one which works in AMPS mode, and often only in AMPS mode.) In some contexts it is used generically to refer to any portable phone system which relies on a grid of service provider antennas, and thus the term is used sometimes to include PCS.
Chip in the context of CDMA is distinct from bit and refers to binary digits transmitted over the RF link. The chip rate in IS-95 is 1.2288 MHz (thus allowing adequate guard bands to permit the carriers to be spaced 1.25 MHz apart). Each bit is represented by many chips, and if a majority of the chips get through then the bit can be reconstructed properly. The number of chips representing each bit varies depending on the bit rate. When using an 8K Vocoder (such as EVRC) there are 128 chips for each bit. Chips as such don't contain data because both the sender and receiver know the spreading pattern used to create them from a bit, and as such are not directly subject to the laws of Information Theory. Though there are many phones simultaneously using a single frequency to transmit full chiprate, that means that the channel is not saturated unless the bitrate approaches the bandwidth of the carrier.
Codec (pronounced CO-deck, short for compressor/decompressor) refers to a device inside the phone (and at the cell system) which takes digitized voice and compresses it prior to transmission to the cell, and which takes compressed voice received from the cell and decompresses it prior to playing it out the speaker of the phone. Codec algorithms are extremely sophisticated and are designed specifically around the characteristics of human voices and human ears. There are three in common use in IS-95, called "8K", "13K" and EVRC. GSM and IS-136 have their own codec standards.
Coding gain in CDMA refers to the ability to use digital techniques and redundancy inherent in the chip sequence to reproduce the bit sequence without requiring much absolute power on the RF. Generally speaking, the more coding gain, the less absolute power is needed to get the signal through. CDMA uses very sophisticated error correction methods (such as the Viterbi FEC Encoder/Decoder) to increase the coding gain.
Dual band refers to a phone capable of operating in two different frequency bands, e.g. both at 800 MHz cellular and at 1900 MHz PCS. Not all PCS phones are dual-band. When a CDMA phone is dual-band, most commonly it means it supports CDMA at 1900 MHz and AMPS at 800 MHz. Some phones exist which do both of those and also support CDMA at 800 MHz; these are usually referred to as tri-mode.
Dual mode refers to a phone which operates in a single frequency band but which is capable of supporting two protocols in that band. All 800 MHz CDMA phones are dual-mode, because all of them are also capable of operating in AMPS mode.
EC/I0 (pronounced Eee-See over Eye-Not) in CDMA refers to the portion of the RF signal which is usable. It's the difference between the signal strength and the noise floor.
ESN (Electronic Serial Number) is a unique number assigned to the phone by the phone manufacturer. No two phones will ever have the same ESN. It is against the law to try to change the ESN in a phone.
EVRC (Enhanced Variable Rate Codec) is a new codec being rolled out as this is written (2/2000) for IS-95 and J-STD-008 systems. It uses 8Kbps bandwidth but sounds nearly as good as the standard 13K codec. Because of this, when the majority of phones can use EVRC the cell systems will have more capacity without having to deploy more equipment. This should yield better service.
Forward link refers to the radio link from the cell to the phone.
Frame is the name of a CDMA digital voice packet duration. Frames are 20 milliseconds long. IS-95 transmits 50 frames per second, with each frame containing sufficient information to reproduce 20 milliseconds of sound. It should be pointed out that it may not require the whole 20 milliseconds to transmit the frame. The IS-95 codecs can generate "half-rate", "quarter-rate" and "eighth-rate" packets if the sound in that 20 milliseconds is sufficiently simple to require fewer bits to represent. A half rate packet only requires 10 milliseconds to transmit. An eighth rate packet only requires 2.5 milliseconds to transmit.
GPS stands for Global Positioning System and it is a system where a receiver can capture signals from orbiting satellites which permit it to determine the time very precisely, and also its location very precisely. Originally deployed by and still maintained by the US Navy, it is now in very common use all over the world for a variety of civilian uses. CDMA cell systems use fixed GPS receivers to determine the time very precisely. This is needed to synchronize the long code and short code in the infrastructure.
IDEN is the name of a cellular standard designed by Motorola which isn't supported by any other manufacturer. It uses a TDMA air interface and has not been very successful.
IS-95 is a standard which describes a cell system which uses a CDMA link and operates at 800 MHz. Sometimes the term is also used to describe 1900 MHz CDMA, though that properly is covered by J-STD-008. The two standards are similar and as time has gone on they have been migrating towards each other and have become more similar.
J-STD-008 is a standard which describes a cell system which uses a CDMA link and operates at 1900 MHz. It is similar to, but not identical to, IS-95.
GSM (Global System for Mobile communications) is a sophisticated cellular system used worldwide which was designed in Europe, primarily by Ericsson and Nokia. It uses a TDMA air interface.
AMPS (Advanced Mobile Phone System) is a somewhat ironic name for the original cellular system authorized in the United States. It uses an analog FM radio link and it is very easy to eavesdrop on it. AMPS is particularly inefficient in use of spectrum compared to any of the digital standards. Generally AMPS still has the best coverage of any of the standards (solely due to its ten year head start on buildout), but that's about the only thing it has going for it. Sound quality is generally worse than any of the digital standards.
Bit within the context of CDMA is distinct from chip and refers to a payload binary digit. Each bit is represented by many chips. Bits contain information and are subject to the laws of Information Theory.
CDMA stands for Code Division Multiple Access and refers to a technology for the radio link which utilizes spread spectrum communication with very tightly controlled power levels by all participants. There is currently (2/2000) only one commercial system which uses CDMA, covered by the specifications IS-95 and J-STD-008, and thus the term CDMA is often used to refer to that system. In future, other systems will adopt a CDMA air interface. CDMA was designed by Qualcomm in the US.
Cellular is a word used to mean a lot of different things. According to the FCC, cellular refers to any portable phone system which operates in the 800 MHz band allocated for use by portable phone systems. This includes AMPS, IS-136 and IS-95. At one time, only AMPS existed, and in some contexts cellular is used as a synonym for AMPS. (In particular, a "cellular ready modem" usually refers to one which works in AMPS mode, and often only in AMPS mode.) In some contexts it is used generically to refer to any portable phone system which relies on a grid of service provider antennas, and thus the term is used sometimes to include PCS.
Chip in the context of CDMA is distinct from bit and refers to binary digits transmitted over the RF link. The chip rate in IS-95 is 1.2288 MHz (thus allowing adequate guard bands to permit the carriers to be spaced 1.25 MHz apart). Each bit is represented by many chips, and if a majority of the chips get through then the bit can be reconstructed properly. The number of chips representing each bit varies depending on the bit rate. When using an 8K Vocoder (such as EVRC) there are 128 chips for each bit. Chips as such don't contain data because both the sender and receiver know the spreading pattern used to create them from a bit, and as such are not directly subject to the laws of Information Theory. Though there are many phones simultaneously using a single frequency to transmit full chiprate, that means that the channel is not saturated unless the bitrate approaches the bandwidth of the carrier.
Codec (pronounced CO-deck, short for compressor/decompressor) refers to a device inside the phone (and at the cell system) which takes digitized voice and compresses it prior to transmission to the cell, and which takes compressed voice received from the cell and decompresses it prior to playing it out the speaker of the phone. Codec algorithms are extremely sophisticated and are designed specifically around the characteristics of human voices and human ears. There are three in common use in IS-95, called "8K", "13K" and EVRC. GSM and IS-136 have their own codec standards.
Coding gain in CDMA refers to the ability to use digital techniques and redundancy inherent in the chip sequence to reproduce the bit sequence without requiring much absolute power on the RF. Generally speaking, the more coding gain, the less absolute power is needed to get the signal through. CDMA uses very sophisticated error correction methods (such as the Viterbi FEC Encoder/Decoder) to increase the coding gain.
Dual band refers to a phone capable of operating in two different frequency bands, e.g. both at 800 MHz cellular and at 1900 MHz PCS. Not all PCS phones are dual-band. When a CDMA phone is dual-band, most commonly it means it supports CDMA at 1900 MHz and AMPS at 800 MHz. Some phones exist which do both of those and also support CDMA at 800 MHz; these are usually referred to as tri-mode.
Dual mode refers to a phone which operates in a single frequency band but which is capable of supporting two protocols in that band. All 800 MHz CDMA phones are dual-mode, because all of them are also capable of operating in AMPS mode.
EC/I0 (pronounced Eee-See over Eye-Not) in CDMA refers to the portion of the RF signal which is usable. It's the difference between the signal strength and the noise floor.
ESN (Electronic Serial Number) is a unique number assigned to the phone by the phone manufacturer. No two phones will ever have the same ESN. It is against the law to try to change the ESN in a phone.
EVRC (Enhanced Variable Rate Codec) is a new codec being rolled out as this is written (2/2000) for IS-95 and J-STD-008 systems. It uses 8Kbps bandwidth but sounds nearly as good as the standard 13K codec. Because of this, when the majority of phones can use EVRC the cell systems will have more capacity without having to deploy more equipment. This should yield better service.
Forward link refers to the radio link from the cell to the phone.
Frame is the name of a CDMA digital voice packet duration. Frames are 20 milliseconds long. IS-95 transmits 50 frames per second, with each frame containing sufficient information to reproduce 20 milliseconds of sound. It should be pointed out that it may not require the whole 20 milliseconds to transmit the frame. The IS-95 codecs can generate "half-rate", "quarter-rate" and "eighth-rate" packets if the sound in that 20 milliseconds is sufficiently simple to require fewer bits to represent. A half rate packet only requires 10 milliseconds to transmit. An eighth rate packet only requires 2.5 milliseconds to transmit.
GPS stands for Global Positioning System and it is a system where a receiver can capture signals from orbiting satellites which permit it to determine the time very precisely, and also its location very precisely. Originally deployed by and still maintained by the US Navy, it is now in very common use all over the world for a variety of civilian uses. CDMA cell systems use fixed GPS receivers to determine the time very precisely. This is needed to synchronize the long code and short code in the infrastructure.
IDEN is the name of a cellular standard designed by Motorola which isn't supported by any other manufacturer. It uses a TDMA air interface and has not been very successful.
IS-95 is a standard which describes a cell system which uses a CDMA link and operates at 800 MHz. Sometimes the term is also used to describe 1900 MHz CDMA, though that properly is covered by J-STD-008. The two standards are similar and as time has gone on they have been migrating towards each other and have become more similar.
J-STD-008 is a standard which describes a cell system which uses a CDMA link and operates at 1900 MHz. It is similar to, but not identical to, IS-95.
GSM (Global System for Mobile communications) is a sophisticated cellular system used worldwide which was designed in Europe, primarily by Ericsson and Nokia. It uses a TDMA air interface.