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Resumen: Las medidas adoptadas por el Departamento de Seguridad Nacional (DHS, por sus siglas en inglés) y dos de las agencias que lo componen, la Guardia Costera de los Estados Unidos y la Agencia Federal para el Manejo de Emergencias (FEMA, por sus siglas en inglés), así como otras agencias federales, para hacer frente a la seguridad cibernética en el entorno marítimo portuario, han sido limitadas. Reporte disponible (en inglés) en: http://www.gao.gov/assets/670/663828.pdf
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Full review: While the Coast Guard initiated a number of activities and coordinating strategies to improve physical security in specific ports, it has not conducted a risk assessment that fully addresses cyber-related threats, vulnerabilities, and consequences. Coast Guard officials stated that they intend to conduct such an assessment in the future, but did not provide details to show how it would address cybersecurity. Until the Coast Guard completes a thorough assessment of cyber risks in the maritime environment, the ability of stakeholders to appropriately plan and allocate resources to protect ports and other maritime facilities will be limited.
Maritime security plans required by law and regulation generally did not identify or address potential cyber-related threats or vulnerabilities. This was because the guidance issued by Coast Guard for developing these plans did not require cyber elements to be addressed. Officials stated that guidance for the next set of updated plans, due for update in 2014, will include cybersecurity requirements. However, in the absence of a comprehensive risk assessment, the revised guidance may not adequately address cyber-related risks to the maritime environment.
The degree to which information-sharing mechanisms (e.g., councils) were active and shared cybersecurity-related information varied. Specifically, the Coast Guard established a government coordinating council to share information among government entities, but it is unclear to what extent this body has shared information related to cybersecurity. In addition, a sector coordinating council for sharing information among nonfederal stakeholders is no longer active, and the Coast Guard has not convinced stakeholders to reestablish it. Until the Coast Guard improves these mechanisms, maritime stakeholders in different locations are at greater risk of not being aware of, and thus not mitigating, cyber-based threats.
Under a program to provide security-related grants to ports, FEMA identified enhancing cybersecurity capabilities as a funding priority for the first time in fiscal year 2013 and has provided guidance for cybersecurity-related proposals. However, the agency has not consulted cybersecurity-related subject matter experts to inform the multi-level review of cyber-related proposals—partly because FEMA has downsized the expert panel that reviews grants. Also, because the Coast Guard has not assessed cyber-related risks in the maritime risk assessment, grant applicants and FEMA have not been able to use this information to inform funding proposals and decisions. As a result, FEMA is limited in its ability to ensure that the program is effectively addressing cyber-related risks in the maritime environment.
Why GAO Did This Study? U.S. maritime ports handle more than $1.3 trillion in cargo annually. The operations of these ports are supported by information and communication systems, which are susceptible to cyber-related threats. Failures in these systems could degrade or interrupt operations at ports, including the flow of commerce. Federal agencies—in particular DHS—and industry stakeholders have specific roles in protecting maritime facilities and ports from physical and cyber threats. GAO’s objective was to identify the extent to which DHS and other stakeholders have taken steps to address cybersecurity in the maritime port environment. GAO examined relevant laws and regulations; analyzed federal cybersecurity-related policies and plans; observed operations at three U.S. ports selected based on being a high-risk port and a leader in calls by vessel type, e.g. container; and interviewed federal and nonfederal officials.
What GAO Recommends? GAO recommends that DHS direct the Coast Guard to (1) assess cyber-related risks, (2) use this assessment to inform maritime security guidance, and (3) determine whether the sector coordinating council should be reestablished. DHS should also direct FEMA to (1) develop procedures to consult DHS cybersecurity experts for assistance in reviewing grant proposals and (2) use the results of the cyber-risk assessment to inform its grant guidance. DHS concurred with GAO’s recommendations.
Full citation: “MARITIME CRITICAL INFRASTRUCTURE PROTECTION – DHS Needs to Better Address Port Cybersecurity”, Report to the Chairman, Committee on Commerce, Science, and Transportation, U.S. Senate, United States Government Accountability Office, June 2014.
Keywords: Maritime Security, Port Security, Cyber – Security, CBP U.S. – Customs and Border Protection, Coast Guard U.S., DHS-Department of Homeland Security, FEMA-Federal Emergency Management Agency, ISAC-information sharing and analysis center, IT-information technology, MTSA-Maritime Transportation Security Act of 2002, NIPP-National Infrastructure Protection Plan, AFE Port Act-Security and Accountability for Every Port Act of 2006, TSA-Transportation Security Administration
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Resumen: El Código Internacional de para la Protección de Buques e Instalaciones Portuarias (PBIP o ISPS, por sus siglas en inglés) establece nuevos estándares de seguridad para buques en el mar, así como las instalaciones portuarias de todo el mundo. Su objetivo es realizar actividades de transporte marítimo más seguras contra las amenazas del terrorismo, la piratería y el contrabando. La seguridad en el mar ha sido una preocupación para gobiernos, compañías navieras, autoridades portuarias, y exportadores e importadores a lo largo de los años. Los ataques terroristas del 11 de septiembre de 2001, fueron catalizadores para la formalización de nuevas y rigurosas medidas. En diciembre de 2002, la Organización Marítima Internacional (OMI), organización especializada de la Naciones Unidas (UN), realizó una conferencia para discutir temas relacionados con la seguridad en el mar. En este conferencia, los representantes de 150 naciones (los estados miembros), participaron en la redacción de las enmiendas a la Convención Internacional para la Seguridad de la Vida Humana en el Mar (SOLAS, en inglés) y se adoptó el Código PBIP. Los cambios a la Convención SOLAS incluyen enmiendas a los capítulos V y Xi, y el Capítulo XI fue dividido en los Capítulos XI-1 y XI-2. El Código, por su parte, está dividido en dos partes. La Parte A presenta los requisitos obligatorios y la Parte B contiene orientación con respecto a las disposiciones del capítulo XI-2 del Convenio y la Parte A del Código. Reporte disponible (en inglés) en: http://www.un.org/en/sc/ctc/docs/bestpractices/32.pdf
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Full review: The Code aims, among other things, to establish an international framework for co-operation between Contracting Governments, government agencies, local administrations and the shipping and port industries to detect security threats and take preventive measures against security incidents affecting ships or port facilities used in international trade and to establish relevant roles and responsibilities at the national and international level. ISPS provisions relating to port facilities relate solely to the ship/port interface. Also, ISPS provisions do not extend to the actual response to attacks or to any necessary clear-up activities after such an attack. In addition, for each ship and port authority affected, the ISPS Code requires:
Enforcement Date: The ISPS Code went into effect on July 1, 2004.
Full citation: Consideration and Adoption of Amendments to the International Convention for the Safety of Life at Sea, 1974, International Maritime Organization. SOLAS/CONF.5/32. 12 December 2002
Keywords: Maritime Security, Port Security, Ship Security Plan (SSP), Port Facility Security Plan (PFSP), Ship Security Officer (SSO), Port Facility Security Officer (PFSO), International Maritime Organization (IMO), Safety of Life at Sea (SOLAS).
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Resumen: el tráfico ilícito de material fisionable en carga de contenedores es reconocida como una debilidad potencial en seguridad nuclear. Atenuada por los atentados del 11 de septiembre de 2001, se tomaron medidas para mejorar la seguridad marítima en extensión a la Convención Internacional para la Seguridad de la Vida Humana en el Mar (SOLAS, en inglés) y en línea con las iniciativas de seguridad de contenedores de los Estados Unidos. Las técnicas efectivas de detección son necesarias para permitir que el inspector pueda interceptar el tráfico ilícito de componentes de armas nucleares o componentes de otros dispositivos nucleares explosivos. Reporte disponible (en inglés) en: https://www.researchgate.net/publication/38053693_Contributing_to_shipping_container_security_can_passive_sensors_bring_a_solution
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Full review: Many security measures focus on active interrogation of the container content by X-ray scan, which might be extended with the newly developed tagged neutron inspection system. Both active interrogation techniques can, with the current huge volume of container traffic, only be applied to a limited number of selected containers. The question arises whether a passive detection technique can offer an alternative solution.
This study investigates if containers equipped with a small passive detector will register during transport the neutron irradiation by fissionable material such as plutonium in a measurable way. In practice, 4/5 of the containers are about 1/8 filled with hydrogenous material and undergo a typical 2 months route. For this reference case, it was found that the most compatible passive detector would be an activation foil of iridium. Monte-Carlo simulations showed that for the reference case the activity of a 250 μm thin foil with 6 cm2 cross-section would register 1.2 Bq when it is irradiated by a significant quantity of Reactor-Grade PuO2. However this activity drops with almost two orders of magnitude for other fillings and other isotopic compositions and forms of the Pu-source. The procedure of selecting the target material for Pu detection is detailed with the theoretical methods, in order to be useful for other applications. Moreover the value of such additional passive sensors for securing maritime container transport is situated within the global framework of the First, Second and Third Line of Defense against illicit trafficking.
Full citation: G. Janssens-Maenhout a, F. De Roob, W. Janssens (2009). Contributing to shipping container security: can passive sensors bring a solution?” Journal of Environmental Radioactivity 101(2):95-105 · OCTOBER 2009.
Keywords: Nuclear illicit trafficking, Maritime container transport, Passive detection technique
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Resumen
El segundo capítulo del Compendio CASSANDRA brinda una visión general sobre la teoría y práctica de la gestión moderna de la cadena de suministro. Escrito en un lenguaje común, el texto explica una amplia gama de estrategias para la gestión de cadenas de suministro, desde la gestión eficiente a la logística ágil y de rápida reacción. El capítulo también define terminología fundamental de cadena de suministro y discute las tendencias actuales en la logística, incluyendo la “sincro-modalidad”, el uso de los proveedores de servicios logísticos “4PL” (fourth-party logistics) y la logística verde. El capítulo presenta varios marcos de referencia de la cadena de suministro que ilustran una serie de actividades interdependientes y actores de interés involucrados en el transporte internacional de carga. El compendio CASSANDRA está disponible en(disponible solo en inglés).
Revisión por Toni Männistö (CBRA).
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Full review
The compendium summarizes the SCOR and UN/CEFACT supply chain models, that may be the two most used logistics reference frameworks in the world. The document also discusses less known academic conceptual models that seek to simplify the complexity of supply chain management by categorizing and explaining management strategies, activities, stakeholders and their roles and responsibilities. The section on the future trends in logistics offers a great outlook on the most likely changes and driving forces in the logistics industry. The outlook suggests that for example synchromodality (increased flexibility in transport mode selection), green logistics (less emissions), use of 4PL logistics service providers (outsourced supply chain management), and continuously increasing ship and port sizes will reshape the cross-border logistics over the years. The document also explains key CASSANDRA concepts and their impacts on international supply chain management. For instance, the Data Pipeline, a pivotal CASSANDRA concept, seeks to enhance sharing of information across supply chain stakeholders, in particularly from business operators to customs and other border control authorities. Most importantly, the Data Pipeline would allow customs officers to access commercial information, that normally is exchanged only between buyers and sellers, early in the upstream supply chain at the consignment completion point (CCP). This accurate, early commercial information would enable the customs and other border control agencies to assess security and other risks of cargo early on.
All in all, the document provides a crash refresher course on basic and advanced logistics terminology that would be beneficial for many the CORE consortium, especially for those partners whose expertise is mainly outside the logistics industry. The CORE demonstrators benefit from descriptions of CASSANDRA innovations that support information exchange and improve visibility across the supply chain. The demos might choose to reuse some of these CASSANDRA innovations or their components. The CASSANDRA compendium also contains a great deal of material that could be reused for education and training purposes in CORE (WP19). Finally, the chapter concludes with recommendations that are relevant also for CORE. The chapter recommends, for example, that because of broad variety of international supply chains, CASSANDRA solutions should be adaptable for different contexts.
Reference
Hintsa, J. and Uronen, K. (Eds.) (2012), “Common assessment and analysis of risk in global supply chains “, Compendium of FP7-project CASSANDRA, Chapter 2
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Resumen: Esta referencia en la revisión del proyecto se centra en FP7-Eurosky. El autor de la revisión es Konstantinos Vasileiou, ILS. Los archivos originales se codifican como CORE3009a, en la biblioteca electrónica CORE. Más información sobre el proyecto en: http://www.euroskyproject.eu/
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