This paper presents the inception and subsequent revisions of an immune-inspired supervised learning algorithm, Artificial Immune Recognition System (AIRS). It presents the immunological components that inspired the algorithm and describes the initial algorithm in detail. The discussion then moves to revisions of the basic algorithm that remove certain unnecessary complications of the original version. Experimental results for both versions of the algorithm are discussed and these results indicate that the revisions to the algorithm do not sacrifice accuracy while increasing the data reduction capabilities of AIRS.</p
The mammalian immune system is a highly complex, inherently parallel, distributed system. The field ...
The biological immune system is a robust, complex, adaptive system that defends the body from foreig...
The last two decades has seen a rapid increase in the application of AIS (Artificial Immune Systems)...
This paper presents the inception and subsequent revisions of an immuneinspired supervised learning ...
This paper revisits the Artificial Immmune Recognition System (AIRS) that has been developed as an i...
This paper presents the inception and subsequent revisions of an immune-inspired supervised learning...
The natural immune system is a robust and powerful information process system that demonstrates feat...
The natural immune system embodies a wealth of information processing capabilities that can be explo...
Artificial Immune Recognition System (AIRS) algorithm offers a promising methodology for data classi...
This chapter introduces a new computational intelligence paradigm to perform pattern recognition, na...
This chapter introduces a new computational intelligence paradigm to perform pattern recognition, na...
In this paper, we have presented a survey on Pattern Recognition technique using a new computational...
This paper presents a new tool for supervised learning, modeled on resource limited Artificial Immun...
The mammalian immune system is a highly complex, inherently parallel, distributed system. The field ...
The immune system is highly distributed, highly adaptive, self-organising in nature, maintains a mem...
The mammalian immune system is a highly complex, inherently parallel, distributed system. The field ...
The biological immune system is a robust, complex, adaptive system that defends the body from foreig...
The last two decades has seen a rapid increase in the application of AIS (Artificial Immune Systems)...
This paper presents the inception and subsequent revisions of an immuneinspired supervised learning ...
This paper revisits the Artificial Immmune Recognition System (AIRS) that has been developed as an i...
This paper presents the inception and subsequent revisions of an immune-inspired supervised learning...
The natural immune system is a robust and powerful information process system that demonstrates feat...
The natural immune system embodies a wealth of information processing capabilities that can be explo...
Artificial Immune Recognition System (AIRS) algorithm offers a promising methodology for data classi...
This chapter introduces a new computational intelligence paradigm to perform pattern recognition, na...
This chapter introduces a new computational intelligence paradigm to perform pattern recognition, na...
In this paper, we have presented a survey on Pattern Recognition technique using a new computational...
This paper presents a new tool for supervised learning, modeled on resource limited Artificial Immun...
The mammalian immune system is a highly complex, inherently parallel, distributed system. The field ...
The immune system is highly distributed, highly adaptive, self-organising in nature, maintains a mem...
The mammalian immune system is a highly complex, inherently parallel, distributed system. The field ...
The biological immune system is a robust, complex, adaptive system that defends the body from foreig...
The last two decades has seen a rapid increase in the application of AIS (Artificial Immune Systems)...