Abstract:
A semantic translation model system is described along with various methods and mechanisms for administering the same. The semantic translation model system proposed herein creates an intermediate representation and a knowledge base in multiple languages, reducing the amount of time and expensive resources typically required for translation and automatic response to written communications. The system also removes the problem of a translation being influenced by a person's writing style and human misinterpretation and provides ongoing translation to keep the system current.
Abstract:
A prioritization and time allocation by customer service is provided, whereby the customer service agents are incentivized to accept those tasks which more closely align with the objectives of a call center. Individual agents will then be able to pursue their own methodology to achieve their own goals and, in the process, pursue an objective of the contact center.
Abstract:
A system can determine a best routing of a customer contact based on analysis of one or more automatically generated answers. A customer may provide an inquiry through a social media contact. The contact center can analyze the inquiry to generate one or more automated answers. The system then analyzes the automated answers. The analysis may include studying various attributes of the answer, either in relation to the inquiry or based in historical data. From the analysis, the system can modify the answers and/or provide a different or improved pool of agents to handle the contact. Thus, an improved set of answers and agents is provided for managing the contact.
Abstract:
A server executing a social media identity and discovery application and method are provided that scan social networking sites for communications. The target content is found with content indicators when communications are put on a social networking site. The content is recorded and evaluated. If the identified content is contextually significant, the alias and the user account data and/or user data from public records are correlated based on keywords and/or events, and a notification of the correlation is sent to an agency, agent, or a contact center system. The agent or agency may verify that the identity of a poster has been accurately correlated with a customer record in the database or with user data from public records. The agent, the agency, or the system has the opportunity to respond to the communication, despite the anonymity of the poster on the social networking site.
Abstract:
A service robot may be autonomous, with respect to a portion of a customer service task, and coordinated, with respect to another portion of a customer service task. A resource, such as another robot or an agent (human or automated), may monitor or interact with the robot and, in such a combination, perform a customer service task. The robot may be instructed to pause or delay initiation of a robot portion to allow for a resource to become available at a common time that the interaction portion is to be performed to minimize delay and promote better customer service. Should the delay be beyond an acceptable threshold, the robot may engage in a delay task (e.g., slow down, pause, etc.). The delay task may include a social interaction with a human at a service location.
Abstract:
The delivery of goods to a customer comprises a substantial portion of human activity. To correct address errors and/or to more precisely locate delivery locations, systems are provided to assist human, human operated vehicle, or autonomous vehicles to locate a delivery point. Often the location of a delivery point is inaccurate or imprecise. GPS and other coordinate systems often fail or are imprecise without an unobstructed view of the sky. Even with coordinates available, the delivery point may be different from the coordinates or, more commonly, coordinates that are different from some standard point within a postal address associated with the coordinates. Providing a delivery system that utilizes a broadcasted identifier, such as an identifier associated with the order of the item, the delivery of the item may be made proximate to the source of the broadcasted identifier or further refined using the broadcasted identifier as a reference.
Abstract:
Automated kiosks are often provided in retail settings to provide a convenient and cost-effective means to assist customers of the retail setting and as an alternative or supplement to human agents. Kiosks may work well for certain customers and actions, however, the customer and/or kiosk may fail to effectively interact with each other and leave the customer dissatisfied with the interaction. By determining a meta-meaning associated with a customer's actions with a kiosk, the kiosk may be able to determine whether an agent should be summoned to assist the customer. For example, a customer may be using the kiosk for an unusually long time. In response, an available agent may be notified and approach the customer to offer their assistance; without the customer explicitly requesting such assistance. As a benefit, the retail setting may appear more in-touch with the needs of the customer.
Abstract:
The delivery of goods to a customer comprises a substantial portion of human activity. To correct address errors and/or to more precisely locate delivery locations, systems are provided to assist human, human operated vehicle, or autonomous vehicles to locate a delivery point. Often the location of a delivery point is inaccurate or imprecise. GPS and other coordinate systems often fail or are imprecise without an unobstructed view of the sky. Even with coordinates available, the delivery point may be different from the coordinates or, more commonly, coordinates that are different from some standard point within a postal address associated with the coordinates. Providing a delivery system that utilizes a broadcasted identifier, such as an identifier associated with the order of the item, the delivery of the item may be made proximate to the source of the broadcasted identifier or further refined using the broadcasted identifier as a reference.
Abstract:
A service robot is provided to communicate with other devices of a service location, such as another robot. A first and second robot may be tasked with performing a customer service task requiring a physical interaction. The first robot may determine that the second robot lacks instructions to perform the customer service task. Upon making the determination, the first robot retrieves physical interaction instructions and causes the second robot to load and execute the physical interaction instructions. The second robot is then transformed, by the first robot, into a configured robot able to perform the customer service task.
Abstract:
A service robot may be autonomous, with respect to a portion of a customer service task, and coordinated, with respect to another portion of a customer service task. A resource, such as another robot or an agent (human or automated), may monitor or interact with the robot and, in such a combination, perform a customer service task. The robot may be instructed to pause or delay initiation of a robot portion to allow for a resource to become available at a common time that the interaction portion is to be performed to minimize delay and promote better customer service. Should the delay be beyond an acceptable threshold, the robot may engage in a delay task (e.g., slow down, pause, etc.). The delay task may include a social interaction with a human at a service location.