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what causes rfid ghost read

what causes rfid ghost read Ghost data: radio frequencies in reading areas might cause RFID readers to obtain inexistent RFID objects. In general, ghost readings rarely appear in multipositions in supply chains. For example, the object F is inexistent, but it is read as a ghost reading. Get the latest 2024 NFL Playoff Picture seeds and scenarios. See the full NFL conference standings and wild card teams as if the season ended today.
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1 · Processing Uncertain RFID Data in Traceability Supply Chains
2 · Processing Uncertain RFID Data in Trac
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4 · A context‐aware approach to defend against unauthorized
5 · A context‐aware approach to defend ag

下面言归正传: RFID是Radio Frequency IDentification 的缩写,中文普遍翻译为:射频识别。个人觉得这种翻译狭隘了这三个英文单词所组成的含义,也直接导致了后面相关概念的模糊和混淆(起码我之前一直是混淆的)。

Ghost data: radio frequencies in reading areas might cause RFID readers to obtain inexistent RFID objects. In general, ghost readings rarely appear in multipositions in supply chains. For example, the object F is inexistent, but it is read as a ghost reading.In this attack, an adversary, called a “ghost,” relays the information surreptitiously read from a legitimate RFID tag to a colluding entity known as a “leech.” The leech can then relay the . Ghost data: radio frequencies in reading areas might cause RFID readers to obtain inexistent RFID objects. In general, ghost readings rarely appear in multipositions in supply chains. For example, the object F is inexistent, but it is read as a ghost reading.In this attack, an adversary, called a “ghost,” relays the information surreptitiously read from a legitimate RFID tag to a colluding entity known as a “leech.” The leech can then relay the received information to a corresponding legitimate reader and vice versa in the other direction.

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Processing Uncertain RFID Data in Traceability Supply Chains

The two main sources of data collection error are missed RFID tag reads and Ghost tag reads. A missed tag read results in no data, such as the identifier stored on the tag, being collected from a tag by a specific tag reader.way a ghost and leech pair can succeed in impersonating a legitimate RFID tag without actually possessing the device. A more severe form of relay attacks, usually against payment cards, is called a “reader-and-ghost” attack. In this attack, a malicious reader colludes with the ghost [6]1, and can make purchases using a victim’s RFID tag .is called a “ghost read.” Our test revealed that this problem occurs under the condition of 4 m distance between the targeted and non-targeted RF tags. “Ghost reads” will occur even with a distance exceeding 4 m. In factories with more surrounding structures

The two main sources of data collection error are missed RFID tag reads and Ghost tag reads. A missed tag read results in no data, such as the identifier stored on the tag, being collected from a tag by a specific tag reader.

In this paper we have categorised the probable causes of tag read miss into intentional and unintentional causes and proposed solutions to overcome these problems. Intentional causes include malfunctioning of the normal operation of RFID system by .This may be due to many reasons such as bad reading angles, blocked signals, or signal dead zones [7]. As opposite, the ghost reading or simply ghost read, is the receipt by the reader of data that is interpreted as valid but was not communicated by a single tag, i.e. the reader receives incorrect data which it interprets as valid data. RFID technology uses radio waves to transfer data between devices. However, both the tag and the reader must be within the acceptable read range for the exchange to occur. So, what determines the RFID read range? There is a myriad of factors that affect the RFID read range. This article.

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Processing Uncertain RFID Data in Trac

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The RFID technology can be used for item tracking and inventory control. However, the problem such as miss reading and ghost reading usually occur in RFID implementation and has impact on low accuracy of inventory management system. Ghost data: radio frequencies in reading areas might cause RFID readers to obtain inexistent RFID objects. In general, ghost readings rarely appear in multipositions in supply chains. For example, the object F is inexistent, but it is read as a ghost reading.In this attack, an adversary, called a “ghost,” relays the information surreptitiously read from a legitimate RFID tag to a colluding entity known as a “leech.” The leech can then relay the received information to a corresponding legitimate reader and vice versa in the other direction.The two main sources of data collection error are missed RFID tag reads and Ghost tag reads. A missed tag read results in no data, such as the identifier stored on the tag, being collected from a tag by a specific tag reader.

way a ghost and leech pair can succeed in impersonating a legitimate RFID tag without actually possessing the device. A more severe form of relay attacks, usually against payment cards, is called a “reader-and-ghost” attack. In this attack, a malicious reader colludes with the ghost [6]1, and can make purchases using a victim’s RFID tag .

is called a “ghost read.” Our test revealed that this problem occurs under the condition of 4 m distance between the targeted and non-targeted RF tags. “Ghost reads” will occur even with a distance exceeding 4 m. In factories with more surrounding structuresThe two main sources of data collection error are missed RFID tag reads and Ghost tag reads. A missed tag read results in no data, such as the identifier stored on the tag, being collected from a tag by a specific tag reader.In this paper we have categorised the probable causes of tag read miss into intentional and unintentional causes and proposed solutions to overcome these problems. Intentional causes include malfunctioning of the normal operation of RFID system by .

This may be due to many reasons such as bad reading angles, blocked signals, or signal dead zones [7]. As opposite, the ghost reading or simply ghost read, is the receipt by the reader of data that is interpreted as valid but was not communicated by a single tag, i.e. the reader receives incorrect data which it interprets as valid data. RFID technology uses radio waves to transfer data between devices. However, both the tag and the reader must be within the acceptable read range for the exchange to occur. So, what determines the RFID read range? There is a myriad of factors that affect the RFID read range. This article.

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Processing Uncertain RFID Data in Traceability Supply Chains

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